研究者詳細

顔写真

スズキ アツコ
鈴木 充子
Atsuko Suzuki
所属
大学院農学研究科 動物飼育実験棟
職名
特任助教(研究)
学位
  • 博士(農学)(東北大学)

  • 修士(農学)(山形大学)

e-Rad 研究者番号
90869661

経歴 7

  • 2022年10月 ~ 継続中
    東北大学大学院農学研究科動物実験棟 特任助教

  • 2021年4月 ~ 2022年9月
    東北大学大学院農学研究科 動物生殖学分野 技術補佐員

  • 2019年10月 ~ 2020年9月
    東北大学医学部細胞治療分野 学術研究員

  • 2017年10月 ~ 2019年9月
    東北大学医学部 加齢医学研究所 附属医用細胞資源センター 技術職員(産休代替)

  • 2010年10月 ~ 2012年9月
    東北大学大学院薬学研究科 薬物送達学分野 共同研究員

  • 2002年9月 ~ 2004年9月
    Vanderbilt大学医学部 泌尿器科 Researach assistant III

  • 2000年4月 ~ 2002年8月
    Vanderbilt大学医学部 臨床薬学 Researach assistant I

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研究キーワード 3

  • 減数分裂

  • 生殖細胞

  • 精子幹細胞

研究分野 1

  • ライフサイエンス / 動物生産科学 /

論文 6

  1. Retinal Pigment Epithelium Specific Metabolic Phenotypes Are Regulated by High-Mobility Group Protein N1 査読有り

    Toshiaki Abe, Reiko Daigaku, Xie Yuting, Yasukazu Daigaku, Nobuhiro Nagai, Hirokazu Kaji, Aya Katsuyama, Yuki Katsukura, Yasuko Izumida, Atsuko Suzuki, Shinji Yamada, Yao-Wen Chang, Keiko Terada, Sei-ichi Ishiguro, Noriko Osumi, Hiroshi Kunikata, Toru Nakazawa

    Investigative Ophthalmology & Visual Science volume66 (4) 70 2025年4月

    DOI: 10.1167/iovs.66.4.70  

  2. Age‐Dependent Clonal Expansion of Non–Sperm‐Forming Spermatogonial Stem Cells in Mouse Testes 査読有り

    Terumichi Kawahara, Shinnosuke Suzuki, Toshinori Nakagawa, Yuki Kamo, Miki Kanouchi, Miyako Fujita, Maki Hattori, Atsuko Suzuki, Kentaro Tanemura, Shosei Yoshida, Kenshiro Hara

    Aging Cell 2025年2月22日

    出版者・発行元: Wiley

    DOI: 10.1111/acel.70019  

    ISSN:1474-9718

    eISSN:1474-9726

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    ABSTRACT In male mammals, spermatogonial stem cells (SSCs) are essential for sustaining lifelong spermatogenesis within the testicular open niche, a unique environment that allows SSC migration over an extended niche area. As SSCs undergo continuous mitotic division, mutations accumulate and are transmitted to the descendant SSC clones. Therefore, SSC clonal fate behaviors, in terms of their efficiencies in completing spermatogenesis and undergoing expansion within the niche, influence sperm genomic diversity. We aimed to elucidate the effects of physiological aging on SSC clonal fate behavior within the testicular open niche. We used single‐cell RNA sequencing, lineage tracing, and intravital live imaging to investigate SSC behavior in aged mouse testes, where spermatogenesis, although reduced, persists. We found that undifferentiated spermatogonia maintained gene expression heterogeneity during aging. Among these, GFRα1+ cells, which exhibited state heterogeneity, showed accelerated proliferation and persistent motility, continuing to function as SSCs in older mice. In contrast, a subset of SSCs characterized by low Egr4 and Cops5 expression did not contribute to spermatid formation. These non–sperm‐forming SSC clones increased in proportion among the total SSC clones and expanded spatially within the testicular open niche in old mice, a phenomenon not observed in young mice. The expansion of non–sperm‐forming SSC clones in aged testes suggests that they occupy a niche space, limiting the availability of functional SSCs and potentially reducing sperm production and genetic diversity. These findings highlight age‐specific clonal characteristics as hallmarks of stem cell aging within the testicular open niche and provide novel insights into the mechanisms governing reproductive aging.

  3. Prolyl isomerase Pin1 is required sperm production by promoting mitosis progression of spermatogonial stem cells. 国際誌 査読有り

    Atsuko Kurita-Suzuki, Yuki Kamo, Chiyoko Uchida, Kentaro Tanemura, Kenshiro Hara, Takafumi Uchida

    Biochemical and biophysical research communications 497 (1) 388-393 2018年2月26日

    DOI: 10.1016/j.bbrc.2018.02.090  

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    A prolyl isomerase Pin1 deficient (Pin1-/-) male mice had severe testicular atrophy. We investigated the function of Pin1 in spermatogenesis by analyzing the Pin1-/- mice at reproductive age. Pin1-/- mice had lessαPLZF positive spermatogonia (undifferentiated spermatogonia) than wild type (WT). Nevertheless, the Pin1-/- testis contained approximately the same number of GFRα1 positive spermatogonia (SSCs in steady state) as the WT testis. Furthermore, degeneration of the spermatogenia appeared in seminiferous tubules of 10 months old Pin1-/- mouse testis, and abnormal shape GFRα1 positive spermatogonia were observed. In Pin1-/- spermatogonia, the ratio of the phospho-histone H3 positive cells (mitotic cells) in GFRα1-positive spermatogonia was higher than that of WT. These results suggest that Pin1 promotes the progression of the mitotic cell cycle of SSC in steady-state, which is required for the sperm production from SSCs.

  4. Brown Algae Polyphenol, a Prolyl Isomerase Pin1 Inhibitor, Prevents Obesity by Inhibiting the Differentiation of Stem Cells into Adipocytes. 国際誌 査読有り

    Atsuko Suzuki, Toshiyuki Saeki, Hiroko Ikuji, Chiyoko Uchida, Takafumi Uchida

    PloS one 11 (12) e0168830 2016年

    DOI: 10.1371/journal.pone.0168830  

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    BACKGROUND: While screening for an inhibitor of the peptidyl prolyl cis/trans isomerase, Pin1, we came across a brown algae polyphenol that blocks the differentiation of fibroblasts into adipocytes. However, its effectiveness on the accumulation of fat in the body has never been studied. METHODOLOGY/PRINCIPAL FINDINGS: Oral administration of brown algae polyphenol to mice fed with a high fat diet, suppressed the increase in fat volume to a level observed in mice fed with a normal diet. We speculate that Pin1 might be required for the differentiation of stem cell to adipocytes. We established wild type (WT) and Pin1-/- (Pin1-KO) adipose-derived mesenchymal stem cell (ASC) lines and found that WT ASCs differentiate to adipocytes but Pin1-KO ASCs do not. CONCLUSION AND SIGNIFICANCE: Oral administration of brown algae polyphenol, a Pin1 inhibitor, reduced fat buildup in mice. We showed that Pin1 is required for the differentiation of stem cells into adipocytes. We propose that oral intake of brown algae polyphenol is useful for the treatment of obesity.

  5. Identification of novel functional organic anion-transporting polypeptide 1B3 polymorphisms and assessment of substrate specificity. 国際誌 査読有り

    Ute I Schwarz, Henriette E Meyer zu Schwabedissen, Rommel G Tirona, Atsuko Suzuki, Brenda F Leake, Younes Mokrab, Kenji Mizuguchi, Richard H Ho, Richard B Kim

    Pharmacogenetics and genomics 21 (3) 103-14 2011年3月

    DOI: 10.1097/FPC.0b013e328342f5b1  

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    OBJECTIVE: The uptake carrier organic anion-transporting polypeptide 1B3 (OATP1B3, gene SLCO1B3) is involved in the hepatic clearance of xenobiotics including statins, taxanes, and mycophenolic acid. We thought to assess the SLCO1B3 coding region for yet unidentified polymorphisms and to analyze their functional relevance. METHODS: We used DNA of ethnically diverse individuals for polymerase chain reaction, and determined polymorphisms by sequencing or temperature-dependent capillary electrophoresis. We then created variant OATP1B3 expression plasmids by site-directed mutagenesis, which were transiently expressed and functionally characterized in human cervical carcinoma (HeLa) cells using radiolabeled substrates. RESULTS: We identified six nonsynonymous polymorphisms including novel variants such as 439A>G (Thr147Ala), 767G>C (Gly256Ala), 1559A>C (His520Pro), and 1679T>C (Val560Ala). Allelic frequencies occurred to be ethnicity-dependent, with the latter observed only in African-Americans (3.6%). After expression in HeLa cells, His520Pro, Val560Ala, and Met233Ile or Met233Ile_Ser112Ala haplotype variants showed decreased uptake activity compared with wild type for cholecystokinin-8 and rosuvastatin, but not for atorvastatin. Kinetic cholecystokinin-8 analysis showed reduced Vmax without altering Km. His520Pro and Val560Ala exhibited decreased total and plasma membrane protein expressions. Val560 mapped onto a structural model of OATP1B3 showed that this is a key region for substrate-transporter interaction. His520 resides in a predicted extracellular region thought to be critical to the pH-dependent component of OATP1B3 activity. Loss of activity at pH 7.4 and 8.0 relative to pH 6.5 was significantly greater for the Pro520 variant. CONCLUSION: OATP1B3 polymorphisms that result in altered expression, substrate specificity, and pH-dependent activity may be of potential relevance to hepatic clearance of substrate drugs in vivo.

  6. Identification, cloning, and initial characterization of a novel mouse testicular germ cell-specific antigen. 国際誌 査読有り

    A Kurita, T Takizawa, T Takayama, K Totsukawa, S Matsubara, H Shibahara, M C Orgebin-Crist, F Sendo, Y Shinkai, Y Araki

    Biology of reproduction 64 (3) 935-45 2001年3月

    ISSN:0006-3363

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    A monoclonal antibody, designated TES101, was raised by immunizing BALB/c mice with an allogenic mouse testicular homogenate followed by immunohistochemical selection as the initial screening method. By searching the expressed sequence tag (EST) database with the N-terminal amino acid sequence of TES101 reactive protein, we found that the predicted amino acid sequence encoded by a mouse testicular EST clone matched the TES101 protein sequence. Sequence analysis of the clone revealed no homologous molecule in the DNA/protein database. Based on data obtained from N-terminal amino acid analysis of the TES101 protein, the derived amino acid sequence contained a signal peptide region of 25 amino acids and a mature protein region of 225 amino acids, which translated into a protein with a molecular weight of 24 093. Northern blot analysis showed that mRNA of the TES101 protein was found in testis but not in any other mouse tissues examined. Western blot analysis revealed that TES101 reacted with a 38-kDa band on SDS-PAGE under nonreducing conditions, and this reactivity was abrogated under reducing conditions. Immunoelectron microscopic studies demonstrated that the molecule was predominantly located on the plasma membrane of spermatocytes and spermatids but not in Sertoli cells or interstitial cells, including Leydig cells. Thus, the TES101 protein is a novel molecule present primarily on the surface of developing male germ cells. TES101 protein may play a role in the processes underlying male germ cell formation.

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MISC 3

  1. Pin1阻害剤である褐藻ポリフェノールによる脂肪由来間葉系幹細胞の脂肪細胞への分化抑制

    鈴木 充子, 佐伯 俊之, 内田 千代子, 内田 隆史

    日本生化学会大会プログラム・講演要旨集 89回 [2P-259] 2016年9月

    出版者・発行元: (公社)日本生化学会

  2. Pin1は脂肪由来間葉系幹細胞の分化を促進させた

    鈴木 寿弥, 鈴木 充子, 宮下 拓也, 佐伯 俊幸, 阿部 素子, 内田 隆史

    日本生化学会大会・日本分子生物学会年会合同大会講演要旨集 88回・38回 [1P0975]-[1P0975] 2015年12月

    出版者・発行元: (公社)日本生化学会

  3. 海藻ポリフェノールはPin1活性を阻害しマウスの脂肪量を低下させた

    鈴木 充子, 宮下 拓也, 秋吉 皓太, 鈴木 寿弥, 日高 将文, 内田 隆史, 内田 千代子

    日本生化学会大会・日本分子生物学会年会合同大会講演要旨集 88回・38回 [1P0984]-[1P0984] 2015年12月

    出版者・発行元: (公社)日本生化学会