研究者詳細

顔写真

ヨシタケ ジユン
吉武 淳
Jun Yoshitake
所属
大学院医学系研究科 医科学専攻 生体機能学講座(レドックス分子医学分野)(基礎)
職名
助教
学位
  • 博士(医学) (熊本大学)

e-Rad 研究者番号
70414349

経歴 10

  • 2025年4月 ~ 継続中
    東北大学 大学院医学系研究科 レドックス分子医学分野 助教

  • 2023年9月 ~ 2025年3月
    東北大学 大学院医学系研究科 環境医学分野

  • 2022年4月 ~ 2023年12月
    名古屋大学 大学院生命農学研究科

  • 2018年10月 ~ 2022年3月
    名古屋大学 未来社会創造機構 ナノライフシステム研究所

  • 2016年10月 ~ 2018年9月
    名古屋大学 未来社会創造機構 モビリティー領域

  • 2015年12月 ~ 2016年10月
    国立研究開発法人国立長寿医療研究センター 口腔疾患研究部

  • 2012年12月 ~ 2015年11月
    国立研究開発法人国立長寿医療研究センター 分子基盤研究部

  • 2010年4月 ~ 2012年11月
    熊本大学 大学院生命科学研究部

  • 2008年4月 ~ 2010年3月
    大分大学 医学部

  • 2005年4月 ~ 2008年3月
    山形県産業技術振興機構 研究開発部

︎全件表示 ︎最初の5件までを表示

研究キーワード 4

  • 超硫黄

  • 分析化学

  • 翻訳後修飾

  • 酸化ストレス

論文 44

  1. Autoxidation of ascorbate mediates lysine N-pyrrolation. 国際誌 査読有り

    Jun Yoshitake, Takahiro Shibata, Miho Chikazawa, Koji Uchida

    Free radical research 1-11 2023年2月7日

    DOI: 10.1080/10715762.2023.2174865  

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    Protein N-pyrrolation, which converts lysine residues to Nε-pyrrole-l-lysine (pyrK), is a naturally occurring covalent modification. The pyrrolated proteins have a unique property of binding to DNA-staining agents, such as SYBR Green I (SG), and anti-DNA antibodies, suggesting a physiologically relevant modification that gives rise to DNA mimic protein. These properties of pyrrolated protein are suggested to be associated with innate and autoimmune responses. Short-chain aldehydes derived from lipid peroxidation are thought to be involved in the formation of pyrK. We now report that similar lysine N-pyrrolation also occurs during the metal-catalyzed oxidation of proteins with ascorbate. When human serum albumin (HSA) was incubated with Fe2+/ascorbate in the presence and absence of docosahexaenoic acid, the protein was converted to SG-binding proteins even without the polyunsaturated fatty acid. The formation of SG-binding proteins by Fe2+/ascorbate was accompanied by the formation of pyrK, which was also detected in ascorbate-treated hemoglobin. Moreover, the metal-catalyzed oxidation of ascorbate produced the pyrrolation factors, glycolaldehyde and glyoxal. These results and the observations that sera from autoimmune-prone MRL-lpr mice recognized modified proteins with Fe2+/ascorbate and with glycolaldehyde/glyoxal suggest that the autoxidation of ascorbate, as well as lipid peroxidation, can be a source of autoantigenic N-pyrrolated proteins. Our findings revealed a possible function of ascorbate as an endogenous source of pyrrolated proteins and suggested that the pyrK residues generated in proteins may play a role in the innate and autoimmune responses associated with the oxidative metabolism of ascorbate.

  2. Rapid Isolation of Extracellular Vesicles Using a Hydrophilic Porous Silica Gel-Based Size-Exclusion Chromatography Column. 国際誌 査読有り

    Jun Yoshitake, Mayuko Azami, Haruka Sei, Daisuke Onoshima, Kumiko Takahashi, Akiyoshi Hirayama, Koji Uchida, Yoshinobu Baba, Takahiro Shibata

    Analytical chemistry 2022年9月27日

    DOI: 10.1021/acs.analchem.2c01053  

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    Extracellular vesicles (EVs) are nanoscale lipid bilayer vesicles released by almost all cell types and can be found in biological fluids, such as blood and urine. EVs play an important role in various physiological and pathological processes via cell-cell communication, highlighting their potential applications as diagnostic markers for diseases and therapeutic drug delivery carriers. Although various methods have been developed for the isolation of EVs from biological fluids, most of them exhibit major limitations, including low purity, long processing times, and high cost. In this study, we developed a size-exclusion chromatography (SEC) column device using hydrophilic porous silica gel (PSG). Owing to the resistance to pressure of the device, a rapid system for EV isolation was developed by connecting it to a flash liquid chromatography system furnished with a UV detector and a fraction collector. This system can be used for the real-time monitoring of eluted EVs by UV absorption without further analysis and separation of high-purity EVs from urine samples with high durability, reusability, and reproducibility. In addition, there were no significant differences between the PSG column- and conventional SEC column-isolated EVs in the proteome profiles and cellular uptake activities, suggesting the good quality of the EVs isolated by the PSG column. These findings suggest that the PSG column device offers an effective and rapid method for the isolation of intact EVs from biological fluids.

  3. Glycolaldehyde is an endogenous source of lysine N-pyrrolation. 国際誌 査読有り

    Miho Chikazawa, Jun Yoshitake, Sei-Young Lim, Shiori Iwata, Lumi Negishi, Takahiro Shibata, Koji Uchida

    The Journal of biological chemistry 295 (22) 7697-7709 2020年5月29日

    DOI: 10.1074/jbc.RA120.013179  

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    Lysine N-pyrrolation converts lysine residues to Nϵ-pyrrole-l-lysine (pyrK) in a covalent modification reaction that significantly affects the chemical properties of proteins, causing them to mimic DNA. pyrK in proteins has been detected in vivo, indicating that pyrrolation occurs as an endogenous reaction. However, the source of pyrK remains unknown. In this study, on the basis of our observation in vitro that pyrK is present in oxidized low-density lipoprotein and in modified proteins with oxidized polyunsaturated fatty acids, we used LC-electrospray ionization-MS/MS coupled with a stable isotope dilution method to perform activity-guided separation of active molecules in oxidized lipids and identified glycolaldehyde (GA) as a pyrK source. The results from mechanistic experiments to study GA-mediated lysine N-pyrrolation suggested that the reactions might include GA oxidation, generating the dialdehyde glyoxal, followed by condensation reactions of lysine amino groups with GA and glyoxal. We also studied the functional significance of GA-mediated lysine N-pyrrolation in proteins and found that GA-modified proteins are recognized by apolipoprotein E, a binding target of pyrrolated proteins. Moreover, GA-modified proteins triggered an immune response to pyrrolated proteins, and monoclonal antibodies generated from mice immunized with GA-modified proteins specifically recognized pyrrolated proteins. These findings reveal that GA is an endogenous source of DNA-mimicking pyrrolated proteins and may provide mechanistic insights relevant for innate and autoimmune responses associated with glucose metabolism and oxidative stress.

  4. 2-Alkenal modification of hemoglobin: Identification of a novel hemoglobin-specific alkanoic acid-histidine adduct. 国際誌 査読有り

    Jun Yoshitake, Takahiro Shibata, Chihiro Shimayama, Koji Uchida

    Redox biology 23 101115-101115 2019年5月

    DOI: 10.1016/j.redox.2019.101115  

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    α,β-Unsaturated aldehydes generated during lipid peroxidation, such as 2-alkenals, give rise to protein degeneration in a variety of pathological states. 2-Alkenals are highly reactive toward nucleophilic amino acid residues, such as histidine and lysine, to form Schiff base adducts or Michael addition adducts. In this study, upon the reaction of hemoglobin with 2-octenal, we unexpectedly detected a product corresponding to the reduced form of the 2-octenal-histidine Michael adduct plus 14 mass unit. Based on the LC-ESI-MS/MS analysis of synthetic adduct candidates, the adduct was identified to be Nτ-(1-carboxyheptan-2-yl)-histidine (CHH), a novel alkanoic acid-type histidine adduct. The alkanoic acid-histidine adducts were detected in the 2-alkenal-treated hemoglobin and myoglobin, but not in the 2-alkenal-treated cytochrome c and transferrin. The addition of hemin to the reaction mixture, containing a non-heme protein and 2-alkenals, resulted in the formation of the alkanoic acid-histidine adducts, suggesting that a heme iron may play a role in the oxidation of covalently modified proteins. Moreover, using the stable isotope dilution method, we showed evidence for the endogenous formation of CHH in red blood cells exposed to hydrogen peroxide. Thus, this study establishes a novel mechanism for covalent modification of proteins by 2-alkenals, in which heme iron is involved in the formation of the alkanoic acid-histidine adducts. The potential implications of this novel adduct are discussed.

  5. Modification of Tau by 8-Nitroguanosine 3',5'-Cyclic Monophosphate (8-Nitro-cGMP): EFFECTS OF NITRIC OXIDE-LINKED CHEMICAL MODIFICATION ON TAU AGGREGATION. 国際誌 査読有り

    Jun Yoshitake, Yoshiyuki Soeda, Tomoaki Ida, Akio Sumioka, Misato Yoshikawa, Kenji Matsushita, Takaaki Akaike, Akihiko Takashima

    The Journal of biological chemistry 291 (43) 22714-22720 2016年10月21日

    eISSN:1083-351X

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    Neurofibrillar tangles caused by intracellular hyperphosphorylated tau inclusion and extracellular amyloid β peptide deposition are hallmarks of Alzheimer's disease. Tau contains one or two cysteine residues in three or four repeats of the microtubule binding region following alternative splicing of exon 10, and formation of intermolecular cysteine disulfide bonds accelerates tau aggregation. 8-Nitroguanosine 3',5'-cyclic monophosphate (8-nitro-cGMP) acts as a novel second messenger of nitric oxide (NO) by covalently binding cGMP to cysteine residues by electrophilic properties, a process termed protein S-guanylation. Here we studied S-guanylation of tau and its effects on tau aggregation. 8-Nitro-cGMP exposure induced S-guanylation of tau both in vitro and in tau-overexpressed HEK293T cells. S-guanylated tau inhibited heparin-induced tau aggregation in a thioflavin T assay. Atomic force microscopy observations indicated that S-guanylated tau could not form tau granules and fibrils. Further biochemical analyses showed that S-guanylated tau was inhibited at the step of tau oligomer formation. In P301L tau-expressing Neuro2A cells, 8-nitro-cGMP treatment significantly reduced the amount of sarcosyl-insoluble tau. NO-linked chemical modification on cysteine residues of tau could block tau aggregation, and therefore, increasing 8-nitro-cGMP levels in the brain could become a potential therapeutic strategy for Alzheimer's disease.

  6. Suppression of NO production and 8-nitroguanosine formation by phenol-containing endocrine-disrupting chemicals in LPS-stimulated macrophages: involvement of estrogen receptor-dependent or -independent pathways. 国際誌 査読有り

    Jun Yoshitake, Katsuaki Kato, Daisuke Yoshioka, Yoshimi Sueishi, Tomohiro Sawa, Takaaki Akaike, Tetsuhiko Yoshimura

    Nitric oxide : biology and chemistry 18 (3) 223-8 2008年5月

    DOI: 10.1016/j.niox.2008.01.003  

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    Since the endocrine and immune systems share portions of some intracellular signaling pathways, endocrine-disrupting chemicals (EDCs) are considered potential agents for influencing inflammatory responses. Here, we investigated the effect of EDCs on lipopolysaccharide (LPS)-induced NO production and NF-kappaB activation in the RAW264.7 mouse macrophage cell line. Five phenol-containing EDCs were investigated, namely bisphenol A (BPA), the alkyl phenols p-n-nonylphenol (NP) and p-n-octylphenol (OP), and the chlorinated phenols 2,4-dichlorophenol (DCP) and pentachlorophenol (PCP). Our results revealed that these chemicals dose-dependently suppressed LPS-induced NO production, as reflected by decreased NO(x) content. The suppressive effects of BPA, NP and OP, but not PCP or DCP, were blocked by the estrogen receptor (ER) inhibitor, ICI182780. ELISA-based quantification of the DNA-binding activity of free p65 NF-kappaB showed that LPS-induced NF-kappaB activation was significantly diminished by EDC treatment. Furthermore, immunocytochemical analysis of 8-nitroguanosine, a unique index of NO-mediated signaling, showed that 8-nitroguanosine formation increased in LPS-stimulated cells, but this increase was inhibited by the tested EDCs. These results demonstrate that EDCs suppress NO production and NF-kappaB activation in LPS-stimulated macrophages through ER-dependent (BPA, NP, OP) and -independent (PCP, DCP) pathways. The EDCs further inhibited 8-nitroguanosine formation, suggesting that they interfere with NO-mediated signaling. Thus, EDCs might play important roles in the inflammatory response and host defense system against foreign pathogens.

  7. Nitric oxide as an endogenous mutagen for Sendai virus without antiviral activity. 国際誌 査読有り

    Jun Yoshitake, Takaaki Akaike, Teruo Akuta, Fumio Tamura, Tsutomu Ogura, Hiroyasu Esumi, Hiroshi Maeda

    Journal of virology 78 (16) 8709-19 2004年8月

    ISSN:0022-538X

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    Nitric oxide (NO) may affect the genomes of various pathogens, and this mutagenesis is of particular interest for viral pathogenesis and evolution. Here, we investigated the effect of NO on viral replication and mutation. Exogenous or endogenous NO had no apparent antiviral effect on influenza A virus and Sendai virus. The mutagenic potential of NO was analyzed with Sendai virus fused to a green fluorescent protein (GFP) gene (GFP-SeV). GFP-SeV was cultured in SW480 cells transfected with a vector expressing inducible NO synthase (iNOS). The mutation frequency of GFP-SeV was examined by measuring loss of GFP fluorescence of the viral plaques. GFP-SeV mutation frequency in iNOS-SW480 cells was much higher than that in parent SW480 cells and was reduced to the level of mutation frequency in the parent cells by treatment with an NO synthase (NOS) inhibitor. Immunocytochemistry showed generation of more 8-nitroguanosine in iNOS-SW480 cells than in SW480 cells without iNOS transfection. Authentic 8-nitroguanosine added exogenously to GFP-SeV-infected CV-1 cells increased the viral mutation frequency. Profiles of the GFP gene mutations induced by 8-nitroguanosine appeared to resemble those of mutations occurring in mouse lungs in vivo. A base substitution that was characteristic of both mutants (those induced by 8-nitroguanosine and those occurring in vivo) was a C-to-U transition. NO-dependent oxidative stress in iNOS-SW480 cells was also evident. Together, the results indicate unambiguously that NO has mutagenic potential for RNA viruses such as Sendai virus without affecting viral replication, possibly via 8-nitroguanosine formation and cellular oxidative stress.

  8. Supersulfides contribute to joint homeostasis and bone regeneration. 国際誌

    Miki Maemura, Masanobu Morita, Seiryo Ogata, Yoichi Miyamoto, Tomoaki Ida, Kazuhiro Shibusaka, Soichiro Negishi, Masahiro Hosonuma, Taku Saito, Jun Yoshitake, Tsuyoshi Takata, Tetsuro Matsunaga, Eikan Mishima, Uladzimir Barayeu, Takaaki Akaike, Fumiko Yano

    Redox biology 81 103545-103545 2025年2月11日

    DOI: 10.1016/j.redox.2025.103545  

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    The physiological functions of supersulfides, inorganic and organic sulfides with sulfur catenation, have been extensively studied. Their synthesis is mainly mediated by mitochondrial cysteinyl-tRNA synthetase (CARS2) that functions as a principal cysteine persulfide synthase. This study aimed to investigate the role of supersulfides in joint homeostasis and bone regeneration. Using Cars2AINK/+ mutant mice, in which the KIIK motif of CARS2 essential for supersulfide production was replaced with AINK, we evaluated the role of supersulfides in fracture healing and cartilage homeostasis during osteoarthritis (OA). Tibial fracture surgery was performed on the wild-type (Cars2+/+) and Cars2AINK/+ mice littermates. Bulk RNA-seq analysis for the osteochondral regeneration in the fracture model showed increased inflammatory markers and reduced osteogenic factors, indicative of impaired bone regeneration, in Cars2AINK/+ mice. Destabilization of the medial meniscus (DMM) surgery was performed to produce the mouse OA model. Histological analyses with Osteoarthritis Research Society International and synovitis scores revealed accelerated OA progression in Cars2AINK/+ mice compared with that in Cars2+/+ mice. To assess the effects of supersulfides on OA progression, glutathione trisulfide (GSSSG) or saline was periodically injected into the mouse knee joints after the DMM surgery. Thus, supersulfides derived from CARS2 and GSSSG exogenously administered significantly inhibited inflammation and lipid peroxidation of the joint cartilage, possibly through suppression of ferroptosis, during OA development. This study represents a significant advancement in understanding anti-inflammatory and anti-oxidant functions of supersulfides in skeletal tissues and may have a clinical relevance for the bone healing and OA therapeutics.

  9. Supersulfide metabolome of exhaled breath condensate applied as diagnostic biomarkers for esophageal cancer. 国際誌

    Seji Asamitsu, Yohei Ozawa, Hiroshi Okamoto, Seiryo Ogata, Tetsuro Matsunaga, Jun Yoshitake, Kazuki Fusegawa, Yusuke Taniyama, Chiaki Sato, Hirotaka Ishida, Takaaki Abe, Hozumi Motohashi, Takaaki Akaike, Takashi Kamei

    Cancer science 2025年2月2日

    DOI: 10.1111/cas.16430  

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    Early detection of esophageal cancer is essential for esophagogastroduodenoscopy and histopathological diagnosis. However, endoscopic examinations are sometimes invasive, which limits their clinical application and compliance, and traditional blood tumor markers are unsuitable for cancer screening. The current study aimed to evaluate the usefulness of sulfur metabolites as new biomarkers for esophageal cancer using blood samples and exhaled breath condensate (EBC), which can be readily obtained and is non-invasive. We collected EBC and plasma samples from 50 patients with esophageal cancer and 30 healthy controls. Sulfur metabolome analysis using tandem mass spectrometry was performed to compare the metabolic profile between the two groups. Supersulfide metabolic profiles were different between the two cohorts. Supersulfide metabolome analysis showed that cysteine hydropersulfide (CysSSH) and homocysteine hydropersulfide (HomoCysSSH) were increased in the plasma of patients with esophageal cancer. Elevated levels of HomoCysSSH could distinguish patients with esophageal cancer from healthy subjects (area under the curve [AUC]: 0.93, sensitivity: 89%, specificity: 96%). Interestingly, we also detected an elevation of supersulfides in the EBC analysis. CysSSH levels significantly increased in the EBC recovered from patients with esophageal cancer (AUC: 0.71, sensitivity: 60%, specificity: 96%). In addition, the observed level was correlated with that of HomoCysSSH in the plasma (r = 0.27). Supersulfides, such as CysSSH and HomoCysSSH, are potential biomarkers for detecting esophageal cancer. CysSSH from EBC may serve as a valuable non-invasive biomarker with similar detection ability but with superior precision and convenience compared with the currently available blood biomarkers.

  10. Supersulfide formation in the sinus mucosa of chronic rhinosinusitis. 国際誌 査読有り

    Jun Suzuki, Tomotaka Hemmi, Tomoaki Ida, Seiryo Ogata, Jun Yoshitake, Tetsuro Matsunaga, Tomoyasu Ishida, Yuki Numano, Yusuke Kusano, Ryoukichi Ikeda, Kazuhiro Nomura, Mitsuru Sugawara, Nobuo Ohta, Takaaki Akaike, Yukio Katori

    Laryngoscope Investigative Otolaryngology 9 (4) e1261 2024年8月

    DOI: 10.1002/lio2.1261  

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    OBJECTIVES: Disruption of the oxidative stress defense system is involved in developing various diseases. Sulfur compounds such as glutathione (GSH) and cysteine (CysSH) are representative antioxidants in the body. Recently, supersulfides, including reactive persulfide and polysulfide species, have gained attention as potent antioxidants regulating oxidative stress and redox signaling. However, their involvement in the pathogenesis of chronic rhinosinusitis (CRS) remains unclear. METHODS: To clarify the changes in sulfur compounds within the sinus mucosa of each CRS subtype, we measured sulfur compound levels in the sinus mucosa of control individuals (n = 9), patients with eosinophilic CRS (ECRS) (n = 13), and those with non-ECRS (nECRS) (n = 11) who underwent sinus surgery using mass spectrometry. RESULTS: GSH and CysSH levels were significantly reduced, and the glutathione disulfide (GSSG)/GSH ratio, an oxidative stress indicator, was increased in patients with ECRS. Despite the absence of notable variations in supersulfides, patients with ECRS and nECRS exhibited a significant reduction in glutathione trisulfide (GSSSG), which serves as the precursor for supersulfides. CONCLUSIONS: This study is the first quantitative assessment of supersulfides in normal and inflamed sinus mucosa, suggesting that sulfur compounds contribute to the pathogenesis of CRS. LEVEL OF EVIDENCE: N/A.

  11. New aspects of redox signaling mediated by supersulfides in health and disease. 国際誌 査読有り

    Takaaki Akaike, Masanobu Morita, Seiryo Ogata, Jun Yoshitake, Minkyung Jung, Hiroki Sekine, Hozumi Motohashi, Uladzimir Barayeu, Tetsuro Matsunaga

    Free radical biology & medicine 222 539-551 2024年7月9日

    DOI: 10.1016/j.freeradbiomed.2024.07.007  

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    Oxygen molecules accept electrons from the respiratory chain in the mitochondria and are responsible for energy production in aerobic organisms. The reactive oxygen species formed via these oxygen reduction processes undergo complicated electron transfer reactions with other biological substances, which leads to alterations in their physiological functions and cause diverse biological and pathophysiological consequences (e.g., oxidative stress). Oxygen accounts for only a small proportion of the redox reactions in organisms, especially under aerobic or hypoxic conditions but not under anaerobic and hypoxic conditions. This article discusses a completely new concept of redox biology, which is governed by redox-active supersulfides, i.e., sulfur-catenated molecular species. These species are present in abundance in all organisms but remain largely unexplored in terms of redox biology and life science research. In fact, accumulating evidence shows that supersulfides have extensive redox chemical properties and that they can be readily ionized or radicalized to participate in energy metabolism, redox signaling, and oxidative stress responses in cells and in vivo. Thus, pharmacological intervention and medicinal modulation of supersulfide activities have been shown to benefit the regulation of disease pathogenesis as well as disease control.

  12. Isocitrate dehydrogenase 1 upregulation in urinary extracellular vesicles from proximal tubules of type 2 diabetic rats. 国際誌 査読有り

    Haruka Sei, Naoya Hirade, Kohei Kamiya, Fumie Nakashima, Jun Yoshitake, Keiko Kano, Emi Mishiro-Sato, Ryosuke Kikuchi, Koji Uchida, Takahiro Shibata

    FASEB journal : official publication of the Federation of American Societies for Experimental Biology 38 (10) e23688 2024年5月31日

    DOI: 10.1096/fj.202400371R  

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    Diabetic nephropathy (DN) is a major cause of chronic kidney disease. Microalbuminuria is currently the most common non-invasive biomarker for the early diagnosis of DN. However, renal structural damage may have advanced when albuminuria is detected. In this study, we sought biomarkers for early DN diagnosis through proteomic analysis of urinary extracellular vesicles (uEVs) from type 2 diabetic model rats and normal controls. Isocitrate dehydrogenase 1 (IDH1) was significantly increased in uEVs from diabetic model rats at the early stage despite minimal differences in albuminuria between the groups. Calorie restriction significantly suppressed the increase in IDH1 in uEVs and 24-hour urinary albumin excretion, suggesting that the increase in IDH1 in uEVs was associated with the progression of DN. Additionally, we investigated the origin of IDH1-containing uEVs based on their surface sugar chains. Lectin affinity enrichment and immunohistochemical staining showed that IDH1-containing uEVs were derived from proximal tubules. These findings suggest that the increase in IDH1 in uEVs reflects pathophysiological alterations in the proximal tubules and that IDH1 in uEVs may serve as a potential biomarker of DN in the proximal tubules.

  13. 2H-Thiopyran-2-thione sulfine, a compound for converting H2S to HSOH/H2S2 and increasing intracellular sulfane sulfur levels 査読有り

    Qi Cui, Meg Shieh, Tony W. Pan, Akiyuki Nishimura, Tetsuro Matsunaga, Shane S. Kelly, Shi Xu, Minkyung Jung, Seiryo Ogata, Masanobu Morita, Jun Yoshitake, Xiaoyan Chen, Jerome R. Robinson, Wei-Jun Qian, Motohiro Nishida, Takaaki Akaike, Ming Xian

    Nature Communications 15 (1) 2024年3月19日

    出版者・発行元: Springer Science and Business Media LLC

    DOI: 10.1038/s41467-024-46652-7  

    eISSN:2041-1723

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    Abstract Reactive sulfane sulfur species such as persulfides (RSSH) and H2S2 are important redox regulators and closely linked to H2S signaling. However, the study of these species is still challenging due to their instability, high reactivity, and the lack of suitable donors to produce them. Herein we report a unique compound, 2H-thiopyran-2-thione sulfine (TTS), which can specifically convert H2S to HSOH, and then to H2S2 in the presence of excess H2S. Meanwhile, the reaction product 2H-thiopyran-2-thione (TT) can be oxidized to reform TTS by biological oxidants. The reaction mechanism of TTS is studied experimentally and computationally. TTS can be conjugated to proteins to achieve specific delivery, and the combination of TTS and H2S leads to highly efficient protein persulfidation. When TTS is applied in conjunction with established H2S donors, the corresponding donors of H2S2 (or its equivalents) are obtained. Cell-based studies reveal that TTS can effectively increase intracellular sulfane sulfur levels and compensate for certain aspects of sulfide:quinone oxidoreductase (SQR) deficiency. These properties make TTS a conceptually new strategy for the design of donors of reactive sulfane sulfur species.

  14. Longevity control by supersulfide-mediated mitochondrial respiration and regulation of protein quality. 国際誌 査読有り

    Akira Nishimura, Sunghyeon Yoon, Tetsuro Matsunaga, Tomoaki Ida, Minkyung Jung, Seiryo Ogata, Masanobu Morita, Jun Yoshitake, Yuka Unno, Uladzimir Barayeu, Tsuyoshi Takata, Hiroshi Takagi, Hozumi Motohashi, Albert van der Vliet, Takaaki Akaike

    Redox Biology 69 103018-103018 2024年1月3日

    DOI: 10.1016/j.redox.2023.103018  

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    Supersulfides, which are defined as sulfur species with catenated sulfur atoms, are increasingly being investigated in biology. We recently identified pyridoxal phosphate (PLP)-dependent biosynthesis of cysteine persulfide (CysSSH) and related supersulfides by cysteinyl-tRNA synthetase (CARS). Here, we investigated the physiological role of CysSSH in budding yeast (Saccharomyces cerevisiae) by generating a PLP-binding site mutation K109A in CRS1 (the yeast ortholog of CARS), which decreased the synthesis of CysSSH and related supersulfides and also led to reduced chronological aging, effects that were associated with an increased endoplasmic reticulum stress response and impaired mitochondrial bioenergetics. Reduced chronological aging in the K109A mutant could be rescued by using exogenous supersulfide donors. Our findings indicate important roles for CARS in the production and metabolism of supersulfides-to mediate mitochondrial function and to regulate longevity.

  15. Tetrachloroaurate (III)–induced oxidation increases nonthermal plasma-induced aldehydes 査読有り

    Yasumasa Okazaki, Jun Yoshitake, Nanami Ito, Kanako Sasaki, Hiromasa Tanaka, Masaru Hori, Takahiro Shibata, Shinya Toyokuni

    Advances in Redox Research 9 100074-100074 2023年12月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.arres.2023.100074  

    ISSN:2667-1379

  16. Histone functions as a cell-surface receptor for AGEs. 国際誌 査読有り

    Masanori Itakura, Kosuke Yamaguchi, Roma Kitazawa, Sei-Young Lim, Yusuke Anan, Jun Yoshitake, Takahiro Shibata, Lumi Negishi, Hikari Sugawa, Ryoji Nagai, Koji Uchida

    Nature communications 13 (1) 2974-2974 2022年5月27日

    DOI: 10.1038/s41467-022-30626-8  

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    Reducing sugars can covalently react with proteins to generate a heterogeneous and complex group of compounds called advanced glycation end products (AGEs). AGEs are generally considered as pathogenic molecules, mediating a pro-inflammatory response and contributing to the development of a number of human diseases. However, the intrinsic function of AGEs remains to be elucidated. We now provide multiple lines of evidence showing that AGEs can specifically bind histone localized on the cell surface as an AGE-binding protein, regulate the function of histone as a plasminogen receptor, and result in the regulation of monocytes/macrophage recruitment to the site of inflammation. Our finding of histone as a cell-surface receptor for AGEs suggests that, beside our common concept of AGEs as danger-associated molecular patterns mediating a pro-inflammatory response, they may also be involved in the homeostatic response via binding to histone.

  17. Metabolomics of small extracellular vesicles derived from isocitrate dehydrogenase 1-mutant HCT116 cells collected by semi-automated size exclusion chromatography. 国際誌 査読有り

    Ryosuke Hayasaka, Sho Tabata, Masako Hasebe, Satsuki Ikeda, Tomoya Hikita, Chitose Oneyama, Jun Yoshitake, Daisuke Onoshima, Kumiko Takahashi, Takahiro Shibata, Koji Uchida, Yoshinobu Baba, Tomoyoshi Soga, Masaru Tomita, Akiyoshi Hirayama

    Frontiers in molecular biosciences 9 1049402-1049402 2022年

    DOI: 10.3389/fmolb.2022.1049402  

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    Cancer-derived small extracellular vesicles (sEVs) are multifunctional particles with a lipid bilayer structure that are involved in cancer progression, such as malignant proliferation, distant metastasis, and cancer immunity evasion. The separation protocol used to isolate sEVs is an important process and thus, several have been developed, including ultracentrifugation (UC), size exclusion chromatography (SEC), and affinity purification using antibodies against sEV surface antigens. However, the effects of different separation methods on sEV components have not been adequately examined. Here, we developed a semi-automated system for collecting sEVs by combining SEC and preparative high-performance liquid chromatography and applied it to metabolome analysis. The developed SEC system could recover sEVs more efficiently and non-destructively than UC, suggesting that it is an appropriate recovery method for metabolic analysis and reflects biological conditions. Furthermore, using the developed SEC system, we performed metabolome analysis of sEVs from isocitrate dehydrogenase 1 (IDH)-mutated human colon HCT116 cells, which produce the oncogenic metabolite, 2-hydroxyglutaric acid (2-HG). IDH1-mutated HCT116 cells released significantly more sEVs than wild-type (WT) cells. The metabolomic profiles of IDH1 mutant and WT cells showed distinct differences between the cells and their sEVs. Notably, in IDH mutant cells, large amounts of 2-HG were detected not only in cells, but also in sEVs. These results indicate that the SEC system we developed has wide potential applications in sEVs research.

  18. Low temperature plasma irradiation products of sodium lactate solution that induce cell death on U251SP glioblastoma cells were identified. 国際誌 査読有り

    Hiromasa Tanaka, Yugo Hosoi, Kenji Ishikawa, Jun Yoshitake, Takahiro Shibata, Koji Uchida, Hiroshi Hashizume, Masaaki Mizuno, Yasumasa Okazaki, Shinya Toyokuni, Kae Nakamura, Hiroaki Kajiyama, Fumitaka Kikkawa, Masaru Hori

    Scientific reports 11 (1) 18488-18488 2021年9月16日

    DOI: 10.1038/s41598-021-98020-w  

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    Low-temperature plasma is being widely used in the various fields of life science, such as medicine and agriculture. Plasma-activated solutions have been proposed as potential cancer therapeutic reagents. We previously reported that plasma-activated Ringer's lactate solution exhibited selective cancer-killing effects, and that the plasma-treated L-sodium lactate in the solution was an anti-tumor factor; however, the components that are generated through the interactions between plasma and L-sodium lactate and the components responsible for the selective killing of cancer cells remain unidentified. In this study, we quantified several major chemical products, such as pyruvate, formate, and acetate, in plasma-activated L-sodium lactate solution by nuclear magnetic resonance analysis. We further identified novel chemical products, such as glyoxylate and 2,3-dimethyltartrate, in the solution by direct infusion-electrospray ionization with tandem mass spectrometry analysis. We found that 2,3-dimethyltartrate exhibited cytotoxic effects in glioblastoma cells, but not in normal astrocytes. These findings shed light on the identities of the components that are responsible for the selective cytotoxic effect of plasma-activated solutions on cancer cells, and provide useful data for the potential development of cancer treatments using plasma-activated L-sodium lactate solution.

  19. Extracellular vesicles derived from inflamed murine colorectal tissue induce fibroblast proliferation via epidermal growth factor receptor. 国際誌 査読有り

    Kana Hasegawa, Keiko Kuwata, Jun Yoshitake, Sayako Shimomura, Koji Uchida, Takahiro Shibata

    The FEBS journal 2020年9月7日

    DOI: 10.1111/febs.15557  

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    Inflammatory bowel diseases (IBDs), such as Crohn's disease and ulcerative colitis, are chronic inflammatory disorders of the gastrointestinal tract. Although IBDs increase the risk of colitis-associated colon cancer, the underlying mechanisms are not fully understood. Extracellular vesicles (EVs) are lipid-bound sacs that transport proteins, RNA, and lipids between cells and are key mediators of cellular communication in both physiological and pathological settings. EVs have been implicated in many cancer hallmarks, including uncontrolled tumor growth and metastasis. In this study, we investigated the effects of colon-derived EVs on the proliferation of fibroblasts. We used comparative proteomics to characterize protein profiles of colorectal EVs isolated from healthy mice (Con-EVs) and those with dextran sulfate sodium-induced colitis (IBD-EVs). The results showed that 109 proteins were upregulated in IBD-EVs. Notably, expression of epidermal growth factor receptor (EGFR), which plays important roles in cell proliferation and development, was increased in IBD-EVs. We then examined the effect of EVs on murine NIH3T3 fibroblasts and found that IBD-EVs significantly promoted cell proliferation in EGFR- and ERK-dependent manner. Our findings suggest that inflamed colon-derived EVs promote tumor development thorough activation of fibroblasts.

  20. Apolipoprotein E binds to and reduces serum levels of DNA-mimicking, pyrrolated proteins. 国際誌 査読有り

    Sayumi Hirose, Yusuke Hioki, Hiroaki Miyashita, Naoya Hirade, Jun Yoshitake, Takahiro Shibata, Ryosuke Kikuchi, Tadashi Matsushita, Miho Chikazawa, Masanori Itakura, Mimin Zhang, Koji Nagata, Koji Uchida

    The Journal of biological chemistry 294 (28) 11035-11045 2019年7月12日

    DOI: 10.1074/jbc.RA118.006629  

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    Lysine N-pyrrolation, converting lysine residues to Nϵ-pyrrole-l-lysine, is a recently discovered post-translational modification. This naturally occurring reaction confers electrochemical properties onto proteins that potentially produce an electrical mimic to DNA and result in specificity toward DNA-binding molecules such as anti-DNA autoantibodies. The discovery of this unique covalent protein modification provides a rationale for establishing the molecular mechanism and broad functional significance of the formation and regulation of Nϵ-pyrrole-l-lysine-containing proteins. In this study, we used microbeads coupled to pyrrolated or nonpyrrolated protein to screen for binding activities of human serum-resident nonimmunoglobin proteins to the pyrrolated proteins. This screen identified apolipoprotein E (apoE) as a protein that innately binds the DNA-mimicking proteins in serum. Using an array of biochemical assays, we observed that the pyrrolated proteins bind to the N-terminal domain of apoE and that oligomeric apoE binds these proteins better than does monomeric apoE. Employing surface plasmon resonance and confocal microscopy, we further observed that apoE deficiency leads to significant accumulation of pyrrolated serum albumin and is associated with an enhanced immune response. These results, along with the observation that apoE facilitates the binding of pyrrolated proteins to cells, suggest that apoE may contribute to the clearance of pyrrolated serum proteins. Our findings uncover apoE as a binding target of pyrrolated proteins, providing a key link connecting covalent protein modification, lipoprotein metabolism, and innate immunity.

  21. Structural and functional insights into S-thiolation of human serum albumins. 国際誌 査読有り

    Fumie Nakashima, Takahiro Shibata, Kohei Kamiya, Jun Yoshitake, Ryosuke Kikuchi, Tadashi Matsushita, Isao Ishii, Juan A Giménez-Bastida, Claus Schneider, Koji Uchida

    Scientific reports 8 (1) 932-932 2018年1月17日

    DOI: 10.1038/s41598-018-19610-9  

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    Human serum albumin (HSA) is the most abundant serum protein, contributing to the maintenance of redox balance in the extracellular fluids. One single free cysteine residue at position 34 is believed to be a target of oxidation. However, the molecular details and functions of oxidized HSAs remain obscure. Here we analyzed serum samples from normal subjects and hyperlipidemia patients and observed an enhanced S-thiolation of HSA in the hyperlipidemia patients as compared to the control individuals. Both cysteine and homocysteine were identified as the low molecular weight thiols bound to the HSAs. Intriguingly, S-thiolations were observed not only at Cys34, but also at multiple cysteine residues in the disulfide bonds of HSA. When the serum albumins from genetically modified mice that exhibit high levels of total homocysteine in serum were analyzed, we observed an enhanced S-homocysteinylation at multiple cysteine residues. In addition, the cysteine residues in the disulfide bonds were also thiolated in recombinant HSA that had been treated with the disulfide molecules. These findings and the result that S-homocysteinylation mediated increased surface hydrophobicity and ligand binding activity of HSA offer new insights into structural and functional alternation of serum albumins via S-thiolation.

  22. Degradation of bradykinin by a metalloendopeptidase from Streptococcus pyogenes. 国際誌 査読有り

    Yoichi Miyamoto, Takaaki Akaike, Shigetada Kawabata, Teruo Akuta, Chiho Taruki, Jun Yoshitake, Shigeyuki Hamada, Fusao Ota, Hideo Igarashi, Kentaro Yoshimura, Ryutaro Kamijo, Hiroshi Maeda

    Journal of oral biosciences 58 (4) 167-172 2016年11月

    DOI: 10.1016/j.job.2016.07.003  

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    OBJECTIVES: Streptococcus pyogenes secretes streptococcal pyrogenic exotoxin B (SpeB), which cleaves kininogen to liberate bradykinin. In addition, this bacterium also has cell-associated bradykinin-degrading activity. Here, we characterized the bradykinin-degrading enzyme produced by S. pyogenes. METHODS: The effects of various peptidase inhibitors on bradykinin degradation by intact S. pyogenes and cell lysates were assessed. Cleavage of bradykinin and other peptides by a recombinant putative metalloendopeptidase (Sp-Pep) from S. pyogenes was analyzed by mass spectrometry. The enhancement of vascular permeability induced by bradykinin (before and after treatment with Sp-Pep) was evaluated in guinea pig skin. RESULTS: Various S. pyogenes strains expressed Sp-Pep. Immunoadsorption of S. pyogenes with an anti-Sp-Pep antibody showed that 80% of the bradykinin-degrading activity in S. pyogenes was due to Sp-Pep. Recombinant Sp-Pep cleaved bradykinin, and cleavage caused a loss of its extravasation-inducing potential. Sp-Pep-mediated degradation of bradykinin was 40 times more efficient than degradation of substance P and angiotensin II. While S. pyogenes secreted mature SpeB in stationary phase, this bacterium produced Sp-Pep during all tested growth phases. CONCLUSIONS: S. pyogenes produces a cell-associated metalloendopeptidase that degrades bradykinin.

  23. Promotion of atherosclerosis by Helicobacter cinaedi infection that involves macrophage-driven proinflammatory responses. 国際誌 査読有り

    Shahzada Khan, H N Ashiqur Rahman, Tatsuya Okamoto, Tetsuro Matsunaga, Yukio Fujiwara, Tomohiro Sawa, Jun Yoshitake, Katsuhiko Ono, Khandaker Ahtesham Ahmed, Md Mizanur Rahaman, Kohta Oyama, Motohiro Takeya, Tomoaki Ida, Yoshiaki Kawamura, Shigemoto Fujii, Takaaki Akaike

    Scientific reports 4 4680-4680 2014年4月15日

    DOI: 10.1038/srep04680  

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    Helicobacter cinaedi is the most common enterohepatic Helicobacter species that causes bacteremia in humans, but its pathogenicity is unclear. Here, we investigated the possible association of H. cinaedi with atherosclerosis in vivo and in vitro. We found that H. cinaedi infection significantly enhanced atherosclerosis in hyperlipidaemic mice. Aortic root lesions in infected mice showed increased accumulation of neutrophils and F4/80(+) foam cells, which was due, at least partly, to bacteria-mediated increased expression of proinflammatory genes. Although infection was asymptomatic, detection of cytolethal distending toxin RNA of H. cinaedi indicated aorta infection. H. cinaedi infection altered expression of cholesterol receptors and transporters in cultured macrophages and caused foam cell formation. Also, infection induced differentiation of THP-1 monocytes. These data provide the first evidence of a pathogenic role of H. cinaedi in atherosclerosis in experimental models, thereby justifying additional investigations of the possible role of enterohepatic Helicobacter spp. in atherosclerosis and cardiovascular disease.

  24. Nitrated cyclic GMP modulates guard cell signaling in Arabidopsis. 国際誌 査読有り

    Takahiro Joudoi, Yudai Shichiri, Nobuto Kamizono, Takaaki Akaike, Tomohiro Sawa, Jun Yoshitake, Naotaka Yamada, Sumio Iwai

    The Plant cell 25 (2) 558-71 2013年2月

    DOI: 10.1105/tpc.112.105049  

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    Nitric oxide (NO) is a ubiquitous signaling molecule involved in diverse physiological processes, including plant senescence and stomatal closure. The NO and cyclic GMP (cGMP) cascade is the main NO signaling pathway in animals, but whether this pathway operates in plant cells, and the mechanisms of its action, remain unclear. Here, we assessed the possibility that the nitrated cGMP derivative 8-nitro-cGMP functions in guard cell signaling. Mass spectrometry and immunocytochemical analyses showed that abscisic acid and NO induced the synthesis of 8-nitro-cGMP in guard cells in the presence of reactive oxygen species. 8-Nitro-cGMP triggered stomatal closure, but 8-bromoguanosine 3',5'-cyclic monophosphate (8-bromo-cGMP), a membrane-permeating analog of cGMP, did not. However, in the dark, 8-bromo-cGMP induced stomatal opening but 8-nitro-cGMP did not. Thus, cGMP and its nitrated derivative play different roles in the signaling pathways that lead to stomatal opening and closure. Moreover, inhibitor and genetic studies showed that calcium, cyclic adenosine-5'-diphosphate-ribose, and SLOW ANION CHANNEL1 act downstream of 8-nitro-cGMP. This study therefore demonstrates that 8-nitro-cGMP acts as a guard cell signaling molecule and that a NO/8-nitro-cGMP signaling cascade operates in guard cells.

  25. Identification of and screening for human Helicobacter cinaedi infections and carriers via nested PCR. 国際誌 査読有り

    Kohta Oyama, Shahzada Khan, Tatsuya Okamoto, Shigemoto Fujii, Katsuhiko Ono, Tetsuro Matsunaga, Jun Yoshitake, Tomohiro Sawa, Junko Tomida, Yoshiaki Kawamura, Takaaki Akaike

    Journal of clinical microbiology 50 (12) 3893-900 2012年12月

    DOI: 10.1128/JCM.01622-12  

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    Helicobacter cinaedi is the most frequently reported enterohepatic Helicobacter species isolated from humans. Earlier research suggested that certain patients with H. cinaedi infection may remain undiagnosed or incorrectly diagnosed because of difficulties in detecting the bacteria by conventional culture methods. Here, we report a nested PCR assay that rapidly detects the cytolethal distending toxin gene (cdt) of H. cinaedi with high specificity and sensitivity. Specificity of the assay was validated by using different species of Helicobacter and Campylobacter, as well as known H. cinaedi-positive and -negative samples. The sensitivity of detection for the cdt gene in the assay was 10(2) CFU/ml urine or 10(2) CFU/10(5) infected RAW 264.7 cells. In an H. cinaedi-infected mouse model, the cdt gene of H. cinaedi was effectively detected via the assay with urine (6/7), stool (2/3), and blood (2/6) samples. Importantly, it detected H. cinaedi in blood, urine, and stool samples from one patient with a suspected H. cinaedi infection and three patients with known infections. The assay was further used clinically to follow up two H. cinaedi-infected patients after antibiotic treatment. Stool samples from these two patients evaluated by nested PCR after antibiotic therapy showed clearance of bacterial DNA. Finally, analysis of stool specimens from healthy volunteers showed occasional positive reactions (4/30) to H. cinaedi DNA, which suggests intestinal colonization by H. cinaedi in healthy subjects. In conclusion, this nested PCR assay may be useful for the rapid diagnosis, antimicrobial treatment evaluation, and epidemiological study of H. cinaedi infection.

  26. Nitric oxide promotes recycling of 8-nitro-cGMP, a cytoprotective mediator, into intact cGMP in cells. 国際誌 査読有り

    Yohei Saito, Tomohiro Sawa, Jun Yoshitake, Chiaki Ito, Shigemoto Fujii, Takaaki Akaike, Hirokazu Arimoto

    Molecular bioSystems 8 (11) 2909-15 2012年11月

    DOI: 10.1039/c2mb25189b  

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    8-Nitro-cGMP is an endogenous nucleotide discovered under inflammation conditions as an important mediator of nitric oxide (NO) signaling. Besides cGMP-like behaviour, 8-nitro-cGMP exerts unique cytoprotective effects against oxidative stress. Although the formation of 8-nitro-cGMP from 8-nitro-GTP has previously been proposed, the mechanism by which excess or unused 8-nitro-cGMP is removed from cells remains unknown. In this study, we report a nitric oxide-dependent cellular conversion of 8-nitro-cGMP to intact cGMP in RAW 264.7 macrophage cells. In our experiments, we synthesized isotopically labeled 8-nitro-cGMP as a tool for metabolites analysis and identified 8-amino-cGMP as an initial metabolite of 8-nitro-cGMP using a LC-MS/MS technique. We also proved that endogenous 8-nitro-cGMP can be converted into 8-amino-cGMP by immunocytochemical staining with an antibody that specifically recognizes 8-amino-cGMP. Moreover, we showed that isotopically labeled 8-amino-cGMP is metabolized into cGMP under inflammation conditions. We propose that nitrosylation of 8-amino-cGMP occurs by NO formation under stress conditions and gives putative 8-diazonium-cGMP, which subsequently decomposes into cGMP. To the best of our knowledge, this study is the first to report reductive deamination of aminoguanine nucleotide at the C-8 position. The findings of this study collectively indicate that NO plays a crucial role not only in the production of 8-nitro-cGMP but also in its elimination under oxidative stress or inflammation.

  27. Regulation by mitochondrial superoxide and NADPH oxidase of cellular formation of nitrated cyclic GMP: potential implications for ROS signalling. 国際誌 査読有り

    Khandaker Ahtesham Ahmed, Tomohiro Sawa, Hideshi Ihara, Shingo Kasamatsu, Jun Yoshitake, Md Mizanur Rahaman, Tatsuya Okamoto, Shigemoto Fujii, Takaaki Akaike

    The Biochemical journal 441 (2) 719-30 2012年1月15日

    DOI: 10.1042/BJ20111130  

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    8-Nitro-cGMP (8-nitroguanosine 3',5'-cyclic monophosphate) is a nitrated derivative of cGMP, which can function as a unique electrophilic second messenger involved in regulation of an antioxidant adaptive response in cells. In the present study, we investigated chemical and biochemical regulatory mechanisms involved in 8-nitro-cGMP formation, with particular focus on the roles of ROS (reactive oxygen species). Chemical analyses demonstrated that peroxynitrite-dependent oxidation and myeloperoxidase-dependent oxidation of nitrite in the presence of H2O2 were two major pathways for guanine nucleotide nitration. Among the guanine nucleotides examined, GTP was the most sensitive to peroxynitrite-mediated nitration. Immunocytochemical and tandem mass spectrometric analyses revealed that formation of 8-nitro-cGMP in rat C6 glioma cells stimulated with lipopolysaccharide plus pro-inflammatory cytokines depended on production of both superoxide and H2O2. Using the mitochondria-targeted chemical probe MitoSOX Red, we found that mitochondria-derived superoxide can act as a direct determinant of 8-nitro-cGMP formation. Furthermore, we demonstrated that Nox2 (NADPH oxidase 2)-generated H2O2 regulated mitochondria-derived superoxide production, which suggests the importance of cross-talk between Nox2-dependent H2O2 production and mitochondrial superoxide production. The results of the present study suggest that 8-nitro-cGMP can serve as a unique second messenger that may be implicated in regulating ROS signalling in the presence of NO.

  28. Spontaneous skin damage and delayed wound healing in SOD1-deficient mice. 国際誌 査読有り

    Yoshihito Iuchi, Dipa Roy, Futoshi Okada, Noriko Kibe, Satoshi Tsunoda, Saori Suzuki, Motoko Takahashi, Hidekatsu Yokoyama, Jun Yoshitake, Seiji Kondo, Junichi Fujii

    Molecular and cellular biochemistry 341 (1-2) 181-94 2010年8月

    DOI: 10.1007/s11010-010-0449-y  

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    Superoxide dismutase 1 (SOD1) is an important antioxidative enzyme that protects skin from oxidative stress. SOD1 (-/-) mice with a genetic background of b129Sv mice showed facial skin damage after 15 weeks of age. Eyelid swelling occurred as the initial symptom and caused impairment by triggering self-scratching. The period required for wound healing in the back was markedly delayed in 20-week SOD1 (-/-) mice. Oxidative stress markers, 4-hydroxynonenal and thiobarbituric acid-reactive substances, were unexpectedly lower in SOD1 (-/-) mice at day 1 after wounding. The decay rate of electron paramagnetic resonance signal intensity of intravenously injected nitroxide radical indicated that the half-life of the signal intensity was significantly prolonged in the wounded skin of SOD1 (+/+) mice. However, while the half-life of the signal intensity in control skin was a little longer in SOD1 (-/-) mice, it did not change in wounded skin. Taken together, these data suggest that the skin of SOD1 (-/-) mice is in redox imbalance and prone to damage by wounding.

  29. Nano-scaled particles of titanium dioxide convert benign mouse fibrosarcoma cells into aggressive tumor cells. 国際誌 査読有り

    Kunishige Onuma, Yu Sato, Satomi Ogawara, Nobuyuki Shirasawa, Masanobu Kobayashi, Jun Yoshitake, Tetsuhiko Yoshimura, Masaaki Iigo, Junichi Fujii, Futoshi Okada

    The American journal of pathology 175 (5) 2171-83 2009年11月

    DOI: 10.2353/ajpath.2009.080900  

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    Nanoparticles are prevalent in both commercial and medicinal products; however, the contribution of nanomaterials to carcinogenesis remains unclear. We therefore examined the effects of nano-sized titanium dioxide (TiO(2)) on poorly tumorigenic and nonmetastatic QR-32 fibrosarcoma cells. We found that mice that were cotransplanted subcutaneously with QR-32 cells and nano-sized TiO(2), either uncoated (TiO(2)-1, hydrophilic) or coated with stearic acid (TiO(2)-2, hydrophobic), did not form tumors. However, QR-32 cells became tumorigenic after injection into sites previously implanted with TiO(2)-1, but not TiO(2)-2, and these developing tumors acquired metastatic phenotypes. No differences were observed either histologically or in inflammatory cytokine mRNA expression between TiO(2)-1 and TiO(2)-2 treatments. However, TiO(2)-2, but not TiO(2)-1, generated high levels of reactive oxygen species (ROS) in cell-free conditions. Although both TiO(2)-1 and TiO(2)-2 resulted in intracellular ROS formation, TiO(2)-2 elicited a stronger response, resulting in cytotoxicity to the QR-32 cells. Moreover, TiO(2)-2, but not TiO(2)-1, led to the development of nuclear interstices and multinucleate cells. Cells that survived the TiO(2) toxicity acquired a tumorigenic phenotype. TiO(2)-induced ROS formation and its related cell injury were inhibited by the addition of antioxidant N-acetyl-l-cysteine. These results indicate that nano-sized TiO(2) has the potential to convert benign tumor cells into malignant ones through the generation of ROS in the target cells.

  30. Exogenous luminal nitric oxide exacerbates esophagus tissue damage in a reflux esophagitis model of rats. 国際誌 査読有り

    Fumitake Ishiyama, Katsunori Iijima, Kiyotaka Asanuma, Nobuyuki Ara, Jun Yoshitake, Yasuhiko Abe, Tomoyuki Koike, Akira Imatani, Shuichi Ohara, Tooru Shimosegawa

    Scandinavian journal of gastroenterology 44 (5) 527-37 2009年

    DOI: 10.1080/00365520802699260  

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    OBJECTIVE: Cytotoxic concentrations of nitric oxide are generated luminally at the gastroesophageal junction through the entero-salivary recirculation of dietary nitrate in humans. The site of luminal nitric oxide generation shifts to the lower esophagus when gastric acid is refluxed into the esophagus. The aim of this study was to investigate the influence of persistent administration of exogenous nitric oxide on esophageal damage. MATERIAL AND METHODS: 0.1% sodium nitrite and/or 1% ascorbic acid was administered in an established rat acid-refluxed esophagitis model. Co-administration of both reactants in this model is thought to induce high concentrations of nitric oxide luminally in the esophagus by an acid-catalyzed chemical reaction when refluxed gastric acid is present. The tissue damage was evaluated by a macroscopic lesion index and myeloperoxidase activity. Nitrotyrosin was assessed immunohistochemically as a footprint of peroxynitrite formation. RESULTS: Co-administration of sodium nitrite and ascorbic acid induced a 4- to 5-fold increase in the esophageal damage compared with baseline reflux esophagitis, while the damage was unchanged when either of the reagents alone was given. Nitrotyrosine was strongly stained in the tissue from the co-administration. Treatment of superoxide scavengers efficiently prevented the exacerbation of esophageal damage by exogenous nitric oxide exposure, suggesting an essential role of superoxide in esophageal damage. CONCLUSIONS: Exogenous luminal nitric oxide greatly exacerbated the tissue damage of reflux esophagitis. Diffusion of the luminal nitric oxide into the adjacent superoxide-enriched inflamed tissue of the esophagus could lead to the production of the highly toxic agent peroxynitrite, thus causing exacerbation of the esophageal damage.

  31. Disruption of gastric barrier function by luminal nitrosative stress: a potential chemical insult to the human gastro-oesophageal junction 査読有り

    N Ara, K Iijima, K Asanuma, J Yoshitake, S Ohara, T Shimosegawa, T Yoshimura

    Gut 57 (3) 306-313 2008年3月1日

    出版者・発行元: BMJ

    DOI: 10.1136/gut.2007.128074  

    ISSN:0017-5749

  32. Toll-like receptor (TLR) 2 induced through TLR4 signaling initiated by Helicobacter pylori cooperatively amplifies iNOS induction in gastric epithelial cells. 国際誌 査読有り

    Kaname Uno, Katsuaki Kato, Tomoaki Atsumi, Takehito Suzuki, Jun Yoshitake, Hidetoshi Morita, Shuichi Ohara, Yashige Kotake, Tooru Shimosegawa, Tetsuhiko Yoshimura

    American journal of physiology. Gastrointestinal and liver physiology 293 (5) G1004-12 2007年11月

    ISSN:0193-1857

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    Cell-surface Toll-like receptors (TLRs) initiate innate immune responses, such as inducible nitric oxide synthase (iNOS) induction, to microorganisms' surface pathogens. TLR2 and TLR4 play important roles in gastric mucosa infected with Helicobacter pylori (H. pylori), which contains lipopolysaccharide (LPS) as a pathogen. The present study investigates their physiological roles in the innate immune response of gastric epithelial cells to H. pylori-LPS. Changes in the expression of iNOS, TLR2, and TLR4, as well as downstream activation of mitogen-activated protein kinases and nuclear factor-kappaB (NF-kappaB), were analyzed in normal mouse gastric mucosal GSM06 cells following stimulation with H. pylori-LPS and interferon-gamma. Specific inhibitors for mitogen-activated protein kinases, NF-kappaB, and small interfering RNA for TLR2 or TLR4 were employed. The immunohistochemistry of TLR2 was examined in human gastric mucosa. H. pylori-LPS stimulation induced TLR2 in GSM06 cells, but TLR4 was unchanged. TLR2 induction resulted from TLR4 signaling that propagated through extracellular signal-related kinase and NF-kappaB activation, as corroborated by the decline in TLR4 expression on small interfering RNA treatment and pretreatment with inhibitors. The induction of iNOS and the associated nitric oxide production in response to H. pylori-LPS stimulation were inhibited by declines in not only TLR4 but also TLR2. Increased expression of TLR2 was identified in H. pylori-infected human gastric mucosa. TLR4 signaling initiated by H. pylori-LPS and propagated via extracellular signal-regulated kinase and NF-kappaB activation induced TLR2 expression in gastric epithelial cells. Induced TLR2 cooperated with TLR4 to amplify iNOS induction. This positive correlation may constitute a mechanism for stimulating the innate immune response against various bacterial pathogens, including H. pylori-LPS.

  33. Fe–S cluster proteins are intracellular targets for nitric oxide generated luminally at the gastro-oesophageal junction 査読有り

    K. Asanuma, K. Iijima, N. Ara, T. Koike, J. Yoshitake, S. Ohara, T. Shimosegawa, T. Yoshimura

    Nitric Oxide 16 (4) 395-402 2007年6月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.niox.2007.02.002  

    ISSN:1089-8603

  34. Nitrative stress through formation of 8-nitroguanosine: insights into microbial pathogenesis. 国際誌 査読有り

    Teruo Akuta, Mohammad Hasan Zaki, Jun Yoshitake, Tatsuya Okamoto, Takaaki Akaike

    Nitric oxide : biology and chemistry 14 (2) 101-8 2006年3月

    ISSN:1089-8603

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    Reactive oxygen and nitrogen species, respectively, mediate oxidative and nitrative stresses by means of oxidation and nitration of various biomolecules including proteins, lipids, and nucleic acids. We have observed nitric oxide (NO)-dependent formation of 8-nitroguanosine and 3-nitrotyrosine during microbial infection, and we determined that both 8-nitroguanosine and 3-nitrotyrosine are useful biomarkers of nitrative stress. Of importance, however, is the great difference in biological characteristics of these two nitrated compounds. 8-Nitroguanosine has unique biochemical and pharmacological properties such as redox activity and mutagenic potential, which 3-nitrotyrosine does not. In this review, we discuss the mechanism of nitrative stress occurring during microbial infections, with special emphasis on biological functions of 8-nitroguanosine formed via NO during the host response to pathogens. These findings provide insights into NO-mediated pathogenesis not only of viral infections but also of many other diseases.

  35. Involvement of Salmonella enterica serovar Typhi RpoS in resistance to NO-mediated host defense against serovar Typhi infection. 国際誌 査読有り

    Mohammad Samiul Alam, Mohammad Hasan Zaki, Jun Yoshitake, Teruo Akuta, Takayuki Ezaki, Takaaki Akaike

    Microbial pathogenesis 40 (3) 116-25 2006年3月

    ISSN:0882-4010

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    The involvement of nitric oxide (NO) in host defense and cytoprotective functions in murine salmonellosis has been reported. Salmonella mutants with the altered sigma factor RpoS (sigmaS) are less virulent and are susceptible to various stresses. This study investigated the role of the rpoS gene of Salmonella enterica serovar Typhi in NO-dependent host defense in vitro and in vivo. Wild-type mice and mice deficient in inducible NO synthase (iNOS) were infected intraperitoneally or orally with serovar Typhi strains. iNOS-deficient mice were more susceptible to infection by both wild-type and rpoS mutant strains of serovar Typhi and showed extensive apoptotic liver damage compared with wild-type mice. Intracellular killing of Salmonella was analyzed with RAW 264 macrophage-like cells and primary peritoneal macrophages from wild-type and iNOS-deficient mice after cells were infected with the serovar Typhi parent or rpoS mutant strain. The rpoS mutant was more susceptible to killing by macrophages than was the wild-type strain. Also, the wild-type strain produced more extensive apoptotic changes in macrophages than did rpoS mutant. These effects were nullified in RAW 264 cells treated with an NOS inhibitor and in iNOS-deficient primary macrophages. Peroxynitrite susceptibility assays of these strains were also performed. The rpoS mutant Typhi strain was more sensitive to in vitro peroxynitrite treatment than was the parent strain. Together these data show that NO has a significant host defense function during serovar Typhi infection, and that Salmonella RpoS, because it reacts to the presence of NO or its reactive derivatives, is thought to have a role in the pathogenicity of serovar Typhi.

  36. Real-time monitoring of reactive oxygen species production during differentiation of human monocytic cell lines (THP-1) 査読有り

    Shigenobu Kasai, Hitoshi Shiku, Yu-suke Torisawa, Hiroyuki Noda, Jun Yoshitake, Takuo Shiraishi, Tomoyuki Yasukawa, Toshiaki Watanabe, Tomokazu Matsue, Tetsuhiko Yoshimura

    Analytica Chimica Acta 549 (1-2) 14-19 2005年9月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.aca.2005.06.034  

    ISSN:0003-2670

  37. NOによる微生物遺伝子変異と感染制御異常

    赤池 孝章, 久保田 竜生, 芥 照夫, 田村 文雄, 吉武 淳, 前田 浩

    化学療法の領域 19 (10) 1639-1644 2003年9月

    出版者・発行元: (株)医薬ジャーナル社

    ISSN:0913-2384

    詳細を見る 詳細を閉じる

    nitric oxide(NO)の毒性は,ウイルス感染病態において普遍的に発現され,NOによる酸化・ニトロ化ストレスは,宿主はもちろんのこと,局所で増殖を繰り返すウイルスや病原体ゲノムの変異を促進することがわかってきた.更に興味あることに,最近,著者等は,マウスのピロリ菌感染モデルにおいて,NOが宿主の免疫応答を低下させていることを見出した.即ち,NOは病原体の変異を促進させるだけでなく,宿主の免疫応答を減弱させることにより,病原体の遺伝的多様性を増大させ,ひいては,薬剤耐性化や中和抗体からのエスケープを誘発し,病原体の化学療法やワクチン療法に対する抵抗性の発現に関与することがあきらかにされた

  38. 8-nitroguanosine formation in viral pneumonia and its implication for pathogenesis. 国際誌 査読有り

    Takaaki Akaike, Shinichiro Okamoto, Tomohiro Sawa, Jun Yoshitake, Fumio Tamura, Koji Ichimori, Kiminori Miyazaki, Kazumi Sasamoto, Hiroshi Maeda

    Proceedings of the National Academy of Sciences of the United States of America 100 (2) 685-90 2003年1月21日

    ISSN:0027-8424

    詳細を見る 詳細を閉じる

    For many diseases, mediation of pathogenesis by nitric oxide (NO) has been suggested. In this study, we explored NO-induced viral pathogenesis with a focus on nucleic acid damage as evidenced by 8-nitroguanosine formation in vivo. Wild-type mice and littermate mice deficient in inducible NO synthase (iNOS) were infected with influenza or Sendai virus. Formation of 8-nitroguanosine in virus-infected lungs was assessed immunohistochemically with an antibody specific for 8-nitroguanosine. Extensive nitration of RNA either treated with peroxynitrite or obtained from cultured RAW 264 cells expressing iNOS was readily detected by this antibody. Strong 8-nitroguanosine immunostaining was evident primarily in the cytosol of bronchial and bronchiolar epithelial cells of virus-infected wild-type mice but not iNOS-deficient mice. This staining colocalized with iNOS immunostaining in the lung. 8- Nitroguanosine staining disappeared after addition of exogenous authentic 8-nitroguanosine during the antibody reaction and after pretreatment of tissues with sodium hydrosulfite, which reduces 8-nitroguanosine to 8-aminoguanosine. NO was generated in excess in lungs of wild-type mice but was eliminated in iNOS-deficient mice after virus infection; this result also correlated well with formation of 8-nitroguanosine and 3-nitrotyrosine. One consequence of the lack of iNOS expression was marked improvement in histopathological changes in the lung and the lethality of the infection without effects on cytokine responses and viral clearance. It is intriguing that 8-nitroguanosine markedly stimulated superoxide generation from cytochrome P450 reductase and iNOS in vitro. The present data constitute a demonstration of 8-nitroguanosine formation in vivo and suggest a potential role for NO-induced nitrative stress in viral pathogenesis.

  39. Possible Assessment for Antioxidant Capacity in Alzheimer's Disease by Measuring Lymphocyte Heme Oxygenase-1 Expression with Real-Time RT-PCR 査読有り

    K. ISHIZUKA, T. KIMURA, J. YOSHITAKE, T. AKAIKE, M. SHONO, J. TAKAMATSU, S. KATSURAGI, T. KITAMURA, T. MIYAKAWA

    Annals of the New York Academy of Sciences 977 (1) 173-178 2002年11月

    出版者・発行元: Wiley

    DOI: 10.1111/j.1749-6632.2002.tb04814.x  

    ISSN:0077-8923

    eISSN:1749-6632

  40. Role of nitric oxide in host defense in murine salmonellosis as a function of its antibacterial and antiapoptotic activities. 国際誌 査読有り

    Mohammad Samiul Alam, Takaaki Akaike, Shinichiro Okamoto, Tatsuo Kubota, Jun Yoshitake, Tomohiro Sawa, Yoichi Miyamoto, Fumio Tamura, Hiroshi Maeda

    Infection and immunity 70 (6) 3130-42 2002年6月

    ISSN:0019-9567

    詳細を見る 詳細を閉じる

    Host defense functions of nitric oxide (NO) are known for many bacterial infections. In this study, we investigated the antimicrobial effect of NO in murine salmonellosis by using inducible NO synthase (iNOS)-deficient mice infected with an avirulent or virulent Salmonella enterica serovar Typhimurium strain. All iNOS-deficient mice died of severe septicemia within 6 days after intraperitoneal injection with an avirulent strain (LT2) to which wild-type mice were highly resistant; 50% lethal doses (LD(50)s) of the LT2 strain for iNOS-deficient and wild-type mice were 30 CFU and 7 x 10(4) CFU, respectively. Lack of NO production in iNOS-deficient mice was verified directly by electron spin resonance spectroscopy. Bacterial yields in liver and blood were much higher in iNOS-deficient mice than in wild-type mice throughout the course of infection. Very small amounts of a virulent strain of serovar Typhimurium (a clinical isolate, strain Gifu 12142; LD(50), 50 CFU) given orally caused severe septicemia in iNOS-deficient animals; wild-type mice tolerated higher doses (LD(50), 6 x 10(2) CFU). Histopathology of livers from infected iNOS-deficient mice revealed extensive damage, such as diffuse hepatocellular apoptosis and increased neutrophil infiltration, but livers from infected wild-type mice showed a limited number of microabscesses, consisting of polymorphonuclear cells and macrophages and low levels of apoptotic change. The LT2 strain was much more susceptible to the bactericidal effect of peroxynitrite than the Gifu strain, suggesting that peroxynitrite resistance may contribute to Salmonella pathogenicity. These results indicate that NO has significant host defense functions in Salmonella infections not only because of its direct antimicrobial effect but also via cytoprotective actions for infected host cells, possibly through its antiapoptotic effect.

  41. Matrix metalloproteinases induction by pseudomonal virulence factors and inflammatory cytokines in vitro. 査読有り

    S. Miyajima, T. Akaike, K. Matsumoto, T. Okamoto, J. Yoshitake, K. Hayashida, A. Negi, H. Maeda

    Microbial Pathogenesis 31 (6) 271-281 2001年12月

  42. Protective effect of S-nitroso-1-protease inhibitor on hepatic ischemia-reperfusion injury. 査読有り

    N. Ikebe, T. Akaike, Y. Miyamoto, K. Hayashida, J. Yoshitake, M. Ogawa, H. Maeda

    The journal of pharmacology and experimental therapeutics 295 (3) 904-911 2000年12月

  43. Viral mutation accelerated by nitric oxide production during infection in vivo. 査読有り

    T. Akaike, S. Fujii, A. Kato, J. Yoshitake, Y. Miyamoto, T. Sawa, S. Okamoto, M. Suga, M. Asakawa, Y. Nagai, H. Maeda

    FASEB Journal 14 (10) 1447-1454 2000年7月

  44. Novel functions of human α_1-protease inhibitor after S-nitrosylation : inhibition of cysteine protease and antibacterial activity 査読有り

    MIYAMOTO Y.

    Biochem. Biophys. Res. Commun. 267 (3) 918-923 2000年1月

    出版者・発行元:

    DOI: 10.1006/bbrc.1999.2046  

    ISSN:0006-291X

︎全件表示 ︎最初の5件までを表示

MISC 30

  1. Physiological formation and function of supersulfides, cyclo-octasulfur (S8) in adipocyte

    Zizai Shen, Minkyung Jung, Uladzimir Barayeu, Tsuyoshi Takata, Tetsuro Matsunaga, Seiryo Ogata, Jun Yoshitake, Masanobu Morita, Takaaki Akaike

    FREE RADICAL BIOLOGY AND MEDICINE 233 2025年6月

    DOI: 10.1016/j.freeradbiomed.2025.05.194  

    ISSN: 0891-5849

    eISSN: 1873-4596

  2. 硫化水素キノン酸化還元酵素(SQR)による分裂酵母の寿命制御

    吉武淳, 西村明, 井田智章, 守田匡伸, 松永哲郎, 松永哲郎, 高田剛, JUNG Minkyung, 緒方星陵, 本橋ほづみ, 赤池孝章

    日本酸化ストレス学会学術集会プログラム・抄録集 78th 2025年

  3. 亜硫酸オキシダーゼ(SUOX)のミトコンドリア超硫黄代謝における役割

    吉武淳, XIA Yingchi, 守田匡伸, 緒方星陵, 松永哲郎, 松永哲郎, BARAYEU Uladzimir, BARAYEU Uladzimir, JUNG Minkyung, 高田剛, 本橋ほづみ, 赤池孝章, 赤池孝章

    日本生体防御学会学術総会講演抄録集 36th 2025年

  4. ミトコンドリアの超硫黄代謝における亜硫酸オキシダーゼ(SUOX)の役割

    吉武淳, 夏応馳, 守田匡伸, 緒方星陵, 松永哲郎, BARAYEU Uladzimir, BARAYEU Uladzimir, JUNG Minkyung, 高田剛, 本橋ほづみ, 赤池孝章, 赤池孝章

    日本生化学会大会(Web) 98th 2025年

  5. 出芽酵母における超硫黄分子による寿命制御

    吉武淳, 西村明, 松永哲郎, 井田智章, ジョン ミンキョン, 緒方星陵, バライユ ウラジミール, 守田匡伸, 本橋ほづみ, 赤池孝章

    日本酸化ストレス学会学術集会プログラム・抄録集 77th 2024年

  6. 脂肪細胞における超硫黄分子S8の生成と機能

    JUNG Minkung, BARAYEU Uladzimir, 高田剛, 海野雄加, 緒方星陵, 吉武淳, 守田匡伸, 松永哲郎, 赤池孝章

    日本生体防御学会学術総会講演抄録集 35th (Web) 2024年

  7. 超硫黄セレン化タンパク質のプロテオーム解析法

    緒方星陵, 吉武淳, BARAYEU Uladzimir, 松永哲郎, 松永哲郎, 高田剛, 赤池孝章

    日本生化学会大会(Web) 97th 2024年

  8. 超硫黄分子cyclo-octasulfur(S<span style=text-decoration:overline>8_</span>)の生体内定量法の開発

    吉武淳, バライユ ウラジミール, 高田剛, 緒方星陵, ジョン ミンギョン, 守田匡伸, 松永哲郎, 松永哲郎, 海野雄加, 吉沢道人, 赤池孝章

    日本生化学会大会(Web) 97th 2024年

  9. アスコルビン酸酸化に起因するタンパク質ピロール化

    吉武淳, 柴田貴広, 近澤未歩, 内田浩二

    日本農芸化学会大会講演要旨集(Web) 2022 2022年

    ISSN: 2186-7976

  10. アスコルビン酸の関与するピロール化タンパク質の形成

    吉武淳, 柴田貴広, 内田浩二

    日本農芸化学会大会講演要旨集(Web) 2021 2021年

    ISSN: 2186-7976

  11. 酸化型ビタミンC修飾タンパク質とヒストンH2Bの相互作用メカニズムの解明

    板倉正典, 山口公輔, 佐々木栄太, 吉武淳, 柴田貴広, 大野礼一, 永井竜児, 内田浩二

    日本農芸化学会大会講演要旨集(Web) 2021 2021年

    ISSN: 2186-7976

  12. 生体内におけるピロール化タンパク質の生成と機能

    近澤未歩, 岩田汐里, LIM SeiYoung, 板倉正典, 佐々木栄太, 吉武淳, 柴田貴広, 内田浩二

    日本農芸化学会大会講演要旨集(Web) 2020 2020年

    ISSN: 2186-7976

  13. 高速液体クロマトグラフィー-タンデム質量分析法を用いた硫化水素関連物質の生体内検出システムの開発

    井田智章, 吉武淳, 藤井重元, 澤智裕, 赤池孝章

    日本生化学会大会(Web) 85th 2012年

  14. 鼻咽頭NK/T細胞リンパ腫における酸化ストレスの免疫組織化学的検索

    蓮井和久, 賈心善, 竹屋元裕, 吉武淳, 赤池孝章, 青笹克之, 田代幸恵, 竹内亨, 出雲周二, 河野嘉文, 金蔵拓郎, 榮鶴義人, 松山隆美, 佐藤榮一

    日本リンパ網内系学会会誌 51 116-116 2011年6月10日

    出版者・発行元: (一社)日本リンパ網内系学会

    ISSN: 1342-9248

  15. Estrogen receptor-dependent or -independent suppression of NO production and 8-nitroguanosine formation by endocrine-disrupting chemicals 査読有り

    Yoshitake Jun, Kato Katsuaki, Sawa Tomohiro, Akaike Takaaki, Yoshimura Tetsuhiko

    NITRIC OXIDE-BIOLOGY AND CHEMISTRY 22 S58 2010年6月

    DOI: 10.1016/j.niox.2010.05.167  

    ISSN: 1089-8603

  16. 細胞内における8-nitro-cGMP生成メカニズムの解析

    吉武淳, KHANDAKER Ahtesham Ahmed, 澤智裕, 井田智章, 居原秀, 赤池孝章

    日本酸化ストレス学会学術集会プログラム・抄録集 63rd 2010年

  17. 8-Nitro-cGMPの細胞内生成メカニズム

    吉武淳, 澤智裕, AHTESHAM Ahmed Khandaker, 井田智章, 居原秀, 赤池孝章

    生化学 2010年

    ISSN: 0037-1017

  18. 酸化チタンナノ粒子による良性腫瘍細胞の悪性化進展(Progression of Benign Tumor Cells into Malignant Ones by Nano-scaled Particles of Titanium Dioxide)

    小沼 邦重, 吉武 淳, 飯郷 正明, 小林 正伸, 藤井 順逸, 岡田 太

    日本癌学会総会記事 68回 38-38 2009年8月

    出版者・発行元: 日本癌学会

    ISSN: 0546-0476

  19. フェノール含有内分泌かく乱物質がLPS誘導NO産生経路に及ぼす影響

    吉武淳, 加藤勝章, 吉岡大輔, 末石芳巳, 澤智裕, 赤池孝章, 吉村哲彦

    生化学 2007年

    ISSN: 0037-1017

  20. 8‐ニトログアノシンの生体内生成と細胞保護作用

    芥照夫, 赤池孝章, 吉武淳, 金子一義, 中山仁, 寺崎泰弘, 竹屋元裕, 前田浩

    生化学 76 (11) 1500-1500 2004年11月25日

    出版者・発行元: (公社)日本生化学会

    ISSN: 0037-1017

  21. 8-Nitroguanosine formation induced by NO and its potential cytoptotective effect

    T Akuta, T Akaike, J Yoshitake, K Kaneko, Y Terasaki, H Maeda

    NITRIC OXIDE-BIOLOGY AND CHEMISTRY 11 (1) 98-99 2004年8月

    ISSN: 1089-8603

  22. Matrix metalloproteinases induction by pseudomonal virulence factors and inflammatory cytokines in vitro (vol 31, pg 271, 2001)

    S Miyajima, T Akaike, K Matsumoto, T Okamoto, J Yoshitake, K Hayashida, A Negi, H Maeda

    MICROBIAL PATHOGENESIS 32 (4) 205-205 2002年4月

    DOI: 10.1006/mpat.2002.0493  

    ISSN: 0882-4010

  23. A群レンサ球菌のブラジキニン分解酵素

    宮本洋一, 赤池孝章, 芥照夫, 吉武淳, 川端重忠, 浜田茂幸, 前田浩

    日本細菌学雑誌 57 (1) 144-144 2002年2月28日

    出版者・発行元: 日本細菌学会

    ISSN: 0021-4930

  24. インフルエンザウイルス及びA群レンサ球菌複合感染病態におけるNOの役割

    岡本 真一郎, 赤池 孝章, 吉武 淳, 宮本 洋一, 菅 守隆, 前田 浩

    日本細菌学雑誌 57 (1) 153-153 2002年2月

    出版者・発行元: 日本細菌学会

    ISSN: 0021-4930

  25. ネズミサルモネラ症における酸化窒素の強力な抗菌及び抗アポトーシス性活性(Potent antibacterial and antiapoptotic activities of nitric oxide in murine salmonellosis)

    モハマド・サミュウル・アラム, 赤池 孝章, 岡本 真一郎, 久保田 竜生, 吉武 淳, 澤 智裕, 宮本 洋一, 前田 浩

    日本細菌学雑誌 57 (1) 153-153 2002年2月

    出版者・発行元: 日本細菌学会

    ISSN: 0021-4930

  26. 呼吸器ウイルス感染病態におけるNOの役割

    岡本 真一郎, 赤池 孝章, 吉武 淳, 菅 守隆, 前田 浩

    補体シンポジウム講演集 38 a24-a24 2001年8月

    出版者・発行元: (一社)日本補体学会

    ISSN: 2185-8470

  27. インフルエンザウイルス感染病態におけるNOによるアポトーシス誘導

    吉武 淳, 赤池 孝章, 岡本 真一郎, 前田 浩

    生化学 73 (8) 943-943 2001年8月

    出版者・発行元: (公社)日本生化学会

    ISSN: 0037-1017

  28. NOによる腫瘍増殖及び転移促進のメカニズム

    林田 和之, 赤池 孝章, 岡本 真一郎, 吉武 淳, 前田 浩

    生化学 73 (8) 944-944 2001年8月

    出版者・発行元: (公社)日本生化学会

    ISSN: 0037-1017

  29. マウスウイルス肺炎モデルにおける生体内ニトロチロシン生成の定量的解析

    岡本 真一郎, 赤池 孝章, 西野 博仁, 吉武 淳, 澤 智裕, 前田 浩

    生化学 73 (8) 943-943 2001年8月

    出版者・発行元: (公社)日本生化学会

    ISSN: 0037-1017

  30. 誘導型NO合成酵素欠損マウスを用いたウイルス感染の分子病態解析

    岡本 真一郎, 赤池 孝章, 吉武 淳, 菅 守隆, 安藤 正幸, 前田 浩

    生化学 72 (8) 1010-1010 2000年8月

    出版者・発行元: (公社)日本生化学会

    ISSN: 0037-1017

︎全件表示 ︎最初の5件までを表示

講演・口頭発表等 21

  1. 高濃度酸素吸入による呼気中超硫黄代謝物の動態解析

    吉武淳, 高田剛, 岡崎慶斗, 井田智章, 松永哲郎, 方琦, 大木望, 今井洋輔, 魏范研, 本橋ほづみ, 赤池孝章

    第79回日本酸化ストレス学会学術集会 2026年6月19日

  2. 亜硫酸オキシダーゼ(SUOX)のミトコンドリア超硫黄代謝における役割

    吉武淳, 夏応馳, 守田匡伸, 緒方星陵, 松永哲郎, Barayeu Uladzimir, JUNG Minkyung, 高田剛, 本橋ほづみ, 赤池孝章

    第36回日本生体防御学会学術総会 2025年9月26日

  3. 硫化水素キノン酸化還元酵素(SQR)による分裂酵母の寿命制御

    吉武淳, 西村明, 井田智章, 守田匡伸, 松永哲郎, 高田剛, ジョンミンギョン, 緒方星陵, 本橋ほづみ, 赤池孝章

    第78回日本酸化ストレス学会学術集会 2025年5月

  4. 超硫黄分子による出芽酵母の寿命制御への関与

    吉武淳, 西村明, 井田智章, 守田匡伸, 松永哲郎, 高田剛, ジョンミンギョン, 緒方星陵, 本橋ほづみ, 赤池孝章

    第24回分子予防環境医学研究会 2025年3月2日

  5. 出芽酵母における超硫黄分子による寿命制御

    吉武淳, 西村明, 松永哲郎, 井田智章, Jung Minkyung, 緒方星陵, Barayeu Uladzimir, 守田匡伸, 本橋ほづみ, 赤池孝章

    第77回日本酸化ストレス学会 2024年5月

  6. アスコルビン酸酸化に起因するタンパク質ピロール化

    日本農芸化学会2022年度大会 2022年3月

  7. アスコルビン酸の関与するピロール化タンパク質の生成

    吉武 淳, 柴田貴広, 内田浩二

    日本農芸化学会2021年度大会 2021年3月

  8. ピロール化タンパク質形成における酸化ストレスの関与

    吉武淳, 柴田貴広, 内田浩二

    日本農芸化学会2019年度大会 2019年3月

  9. Tauタンパク質システイン残基の翻訳後修飾(S-グアニル化)が凝集に与える影響

    吉武淳, 吉田裕孝, 赤池孝章, 高島明彦

    第67回日本酸化ストレス学会学術集会 2014年9月

  10. ヘリコバクター・ピロリ菌LPS処理マウス正常胃粘膜細胞における乳酸菌由来リポタイコ酸の作用

    吉武淳, 加藤勝章, 森田英利, 西園晃

    第61回日本細菌学会九州支部会 2008年10月

  11. LPS誘導NO産生および8-ニトログアノシン形成におけるフェノール含有内分泌かく乱物質の影響

    吉武 淳, 吉岡大輔, 末石芳巳, 澤 智裕, 赤池孝章, 吉村哲彦

    第29回日本フリーラジカル学会学術集会 2006年6月

  12. LPS誘導NO産生量および8-ニトログアノシン生成に対する内分泌かく乱物質の影響

    吉武 淳, 澤 智裕, 赤池孝章, 吉村哲彦

    第28回日本フリーラジカル学会学術集会 2006年5月

  13. 感染病態におけるNOの8-ニトログアノシン生成を介する細胞保護作用

    吉武 淳, 芥 照夫, 赤池孝章

    第78回日本細菌学会総会 2005年4月

  14. NOのウイルスゲノム変異原性の解析

    吉武 淳, 芥 照夫, 赤池孝章

    第41回日本ウイルス学会九州支部会 2004年9月

  15. NOによるウイルスゲノム変異促進作用の解析

    吉武 淳, 赤池孝章, 前田 浩

    第40回日本ウイルス学会九州支部会 2003年9月

  16. NOの抗ウイルス活性とウイルスゲノム変異促進の解析

    吉武 淳、赤池孝章、芥 照夫、前田 浩

    第25回日本フリーラジカル学会 2003年6月

  17. 劇症A群レンサ球菌感染モデルにおけるNOの感染防御作用

    吉武 淳, 赤池孝章, 田村文雄, 前田浩

    第55回日本細菌学会九州支部総会 2002年9月

  18. NOによる抗ウイルス活性とウイルスゲノム変異促進作用の検討

    吉武 淳, 赤池孝章, 永井美之, 小倉 勤, 江角浩安, 前田 浩

    第48回日本ウイルス学会学術集会 2000年10月

  19. NOの抗ウイルス作用とウイルスゲノム変異促進作用の解析

    吉武 淳, 赤池孝章, 永井美之, 小倉 勤, 江角浩安, 前田 浩

    第37回日本ウイルス学会九州支部会 2000年9月

  20. 内分泌かく乱物質がLPS誘導NO産生および8-ニトログアノシン形成におよぼす影響の解析

    吉武 淳、澤 智裕、赤池孝章、吉村哲彦

    第14回山形分子生物学セミナー 2006年12月13日

  21. 一酸化窒素によるウイルス遺伝子変異促進作用

    吉武 淳, 吉村哲彦, 赤池孝章

    第13回山形分子生物学セミナー 2005年11月30日

︎全件表示 ︎最初の5件までを表示

共同研究・競争的資金等の研究課題 5

  1. 新規タンパク質翻訳後修飾リジンピロール化を基軸にした健康破綻機序の解明

    吉武 淳

    2021年4月1日 ~ 2024年3月31日

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    タンパク質のリジン残基にピロール環を形成するタンパク質ピロール化は、不飽和脂肪酸(PUFA)の過酸化物に由来する非酵素的な翻訳後修飾として報告され、内因性のピロール化因子としてグリコールアルデヒドが同定された。また、グリコールアルデヒドの酸化体であるグリオキサールがピロール化を促進することが見出されたことから、酸化ストレスとの関連が示唆される。加えてピロール化タンパク質はDNA染色剤との結合能を有するなど、DNA様の性質を獲得することが報告されている。実際に自己免疫疾患モデルマウス血清に対して抗原性を示すことから自己免疫疾患との関連が示唆され、健康維持の視点からも重要な翻訳後修飾であることが予測される。 今回私は脂質過酸化反応を介さなくても、タンパク質の鉄・アスコルビン酸処理によってピロール化リジンが形成されることを見出した。この矛盾を解明するためにアスコルビン酸と鉄イオンをインキュベートしたところ、グリコールアルデヒドとその酸化体であるグリオキサールの形成を確認した。また、鉄キレート剤であるDTPAの添加によるグリオキサール形成の抑制と、グリコールアルデヒドの鉄処理によるグリオキサールの形成を確認した。これらの結果から、鉄触媒を介したアスコルビン酸の自己酸化に由来するグリコールアルデヒドの形成と、それに続くグリオキサールの形成によってピロール化が惹起されることが示された。 これらの結果から、リジンピロール化は脂質過酸化やアスコルビン酸などの還元糖の自己酸化など、グリコールアルデヒド形成に繋がる様々な経路が関与する可能性が示唆されることから、タンパク質ピロール化は生体内で普段から惹起される翻訳後修飾である可能性が示された。短鎖アルデヒド由来の付加体の報告は少なく、老化や疾患形成における短鎖特にC2、C3アルデヒド由来の付加体の生理学的役割の解明が今後重要になると考える。

  2. 血中脂肪酸アミド類のバイオマーカーとしての有用性の解析

    吉武 淳

    提供機関:Japan Society for the Promotion of Science

    制度名:Grants-in-Aid for Scientific Research Grant-in-Aid for Scientific Research (C)

    研究種目:Grant-in-Aid for Scientific Research (C)

    研究機関:Nagoya University

    2018年4月1日 ~ 2021年3月31日

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    脂質メディエーターと呼ばれる様々な生理活性を有する分子に変換されることが知られている脂肪酸の、カルボキシ基がアミド基に変換された脂肪酸アミド類が、様々な生理現象に関与していることが報告されている。しかしながらその代謝メカニズムや生理活性、疾患との関連など不明な点が多い。そこで、Ⅰ)血中脂肪酸アミド類の濃度変化と疾患との相関関係およびその生理学的意義の解明、Ⅱ)脂肪酸アミド類の生体マーカーとしての有用性、Ⅲ)疾患の予防や治療に焦点を置いた脂肪酸アミド類含有食品の有用性の検討を計画した。 平成30年度は生体内の脂肪酸アミド類の高感度な検出・定量法を確立し、血中において脂肪酸アミドの中でもオレアミドの存在量が一番多いことを見出した。そこで本年度ではマウスモデルを用いて血中オレアミド濃度の変化に着目した解析を行った。 LPSの腹腔内投与によるマウスの炎症モデルを作成し、尾静脈より投与前と投与1時間後から経時的に採血し、血中TNF-αならびにオレアミド濃度を定量した。その結果、LPS投与1時間後から炎症のマーカーである血中TNF-α濃度の上昇が認められた。これに対して血中オレアミド濃度はLPS投与1時間後から有意に低下することを見出した。続いてLPS投与1時間後におけるオレアミドの合成酵素であるpeptidylglycine α-amidating monooxygenase (PAM)とオレアミド分解酵素であるfatty acid amide hydrogenase (FAAH)の肝臓での発現量を比較したところ、対照群とLPS投与群の間にFAAH発現量の差が認められなかったのに対して、PAM発現量はLPS投与群において減少する傾向が認められた。 これらの結果からマウスLPS投与炎症モデルにおいて、PAM発現量の減少が血中オレアミド濃度の減少に関与している可能性が示唆された。

  3. 歯周病原菌がアルツハイマー病態形成に及ぼす影響の解析-タウ凝集に着目した解析-

    吉武 淳

    2016年4月1日 ~ 2018年3月31日

  4. 内因性親電子物質を介するレドックスシグナル伝達の制御メカニズム

    澤 智裕, 赤池 孝章, 吉武 淳, 熊谷 嘉人

    提供機関:Japan Society for the Promotion of Science

    制度名:Grants-in-Aid for Scientific Research Grant-in-Aid for Scientific Research (B)

    研究種目:Grant-in-Aid for Scientific Research (B)

    2012年4月1日 ~ 2015年3月31日

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    本研究において、活性酸素やそのシグナル伝達における2次メッセンジャーである8-nitroguanosine 3’,5’-cyclic monophosphate (8-nitro-cGMP)を代謝する新規制御因子として、システインチオール基(Cys-SH)にさらに過剰なイオウ原子が付加したシステインパースルフィド(Cys-SSH)を同定した。システインパースルフィドは、酸化ストレス制御にきわめて重要な役割を担っている可能性があり、今後、その生体内での発現制御機構や生理活性の解析が期待される。

  5. 培養細胞から産生される一酸化窒素を指標とした環境汚染物質および食品成分の評価

    吉武 淳, 吉村 哲彦, 葛西 重信, 末永 智一, 吉武 淳

    提供機関:Japan Society for the Promotion of Science

    制度名:Grants-in-Aid for Scientific Research Grant-in-Aid for Scientific Research (C)

    研究種目:Grant-in-Aid for Scientific Research (C)

    研究機関:Yamagata Promotional Organization for Industrial Technology

    2005年 ~ 2007年

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    内分泌かく乱物質(endocrine disrupting chemicals, EDCs)は主に食品を介して体内に蓄積し、生体に様々な影響を与えることが知られている。そこで今回、EDCsが免疫機能に与える影響を、リポポリサッカライド(LPS)刺激によって産生される一酸化窒素(NO)の産生量を指標として解析した。 EDCs(ビスフェノールA(BPA)、ノニルフェノール(NP)、オクチルフェノール(OP)、2,4-ジクロロフェノール(DCP)、ペンタクロロフェノール(PCP))がRAW264細胞のNO産生に与える影響を調べるために、LPS刺激開始12時間後における単位時間当たりのNO産生量を測定した結果、全てのEDCsにおいて濃度依存的なNO産生の抑制が認められた。さらにエストロゲン受容体阻害剤(ICI182780)の処理により、BPA、NP、OPで処理した系でNO産生量の回復が認められたが、PCP、DCPではNO産生量の回復が認められなかった。iNOSの転写因子であるNF-κB(p65)の活性化をELISA法によって評価したところ、LPS刺激によるNF-κB活性化はEDCs処理によって減弱した。加えて免疫細胞学的解析から、NOシグナルの特徴的なメディエーターとして近年注目される、8-ニトログアノシンの形成量がEDCs処理することで減少することが示された。 これらの結果は、フェノール含有EDCsによるLPS誘導NO産生およびNF-κB活性化の抑制にはエストロゲン受容体依存的・非依存的な経路の両方が存在すること、さらにEDCsは8-ニトログアノシン形成阻害を介してNO由来のシグナルに間接的に干渉し、炎症進展に影響を与える可能性を示唆している。