研究者詳細

顔写真

イナガキ リヨウ
稻垣 良
Ryo Inagaki
所属
大学院薬学研究科 附属医薬品開発研究センター
職名
特任助教(研究)
学位
  • 薬科学 (東北大学)

e-Rad 研究者番号
40887072

経歴 6

  • 2021年10月 ~ 継続中
    東北大学 大学院薬学研究科 特任助教

  • 2020年11月 ~ 2021年9月
    東北大学 大学院薬学研究科 学術研究員

  • 2020年2月 ~ 2020年11月
    ブレインイノベーション株式会社 創薬・臨床開発部 研究員

  • 2020年2月 ~ 2020年10月
    東北大学 大学院薬学研究科 分野研究員

  • 2019年4月 ~ 2020年1月
    大阪大学 医学系研究科特任研究員

  • 2018年10月 ~ 2019年3月
    東北大学 医学系研究科 学術研究員

︎全件表示 ︎最初の5件までを表示

所属学協会 3

  • 日本神経精神薬理学会

  • 日本神経化学会

  • 日本薬理学会

研究キーワード 5

  • カルシウム

  • 学習

  • 包括脳ネットワーク

  • 神経可塑性

  • 精神疾患

研究分野 2

  • ライフサイエンス / 神経科学一般 /

  • ライフサイエンス / 薬理学 /

論文 15

  1. EFA6A, a Guanine Nucleotide Exchange Factor for Arf6, Regulates Developmental Stage-Dependent Spine Morphogenesis, Synaptic Plasticity, and Long-Term Memory in the Hippocampus

    Takeyuki Sugawara, Hikaru Matsu-ura, Ryo Inagaki, Taichi Kawamura, Manabu Tanaka, Yoshinobu Hara, Koji Saito, Masahiro Fukaya, Shigeki Moriguchi, Hiroyuki Sakagami

    Molecular Neurobiology 62 (9) 11904-11919 2025年5月8日

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

    DOI: 10.1007/s12035-025-05009-x  

    ISSN:0893-7648

    eISSN:1559-1182

  2. Aberrant extracellular dopamine clearance in the prefrontal cortex exhibits ADHD-like behavior in NCX3 heterozygous mice 査読有り

    Ryo Inagaki, Satomi Kita, Nozomu Niwa, Kohji Fukunaga, Takahiro Iwamoto, Shigeki Moriguchi

    The FEBS Journal 2024年12月

  3. Preventive effect of propolis on cognitive decline in Alzheimer's disease model mice. 国際誌 査読有り

    Ryo Inagaki, Tohru Yamakuni, Takashi Saito, Takaomi C Saido, Shigeki Moriguchi

    Neurobiology of aging 139 20-29 2024年7月

    DOI: 10.1016/j.neurobiolaging.2024.03.002  

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    Brazilian green propolis (propolis) is a chemically complex resinous substance that is a potentially viable therapeutic agent for Alzheimer's disease. Herein, propolis induced a transient increase in intracellular Ca2+ concentration ([Ca2+]i) in Neuro-2A cells; moreover, propolis-induced [Ca2+]i elevations were suppressed prior to 24-h pretreatment with amyloid-β. To reveal the effect of [Ca2+]i elevation on impaired cognition, we performed memory-related behavioral tasks in APP-KI mice relative to WT mice at 4 and 12 months of age. Propolis, at 300-1000 mg/kg/d for 8 wk, significantly ameliorated cognitive deficits in APP-KI mice at 4 months, but not at 12 months of age. Consistent with behavioral observations, injured hippocampal long-term potentiation was markedly ameliorated in APP-KI mice at 4 months of age following repeated propolis administration. In addition, repeated administration of propolis significantly activated intracellular calcium signaling pathway in the CA1 region of APP-KI mice. These results suggest a preventive effect of propolis on cognitive decline through the activation of intracellular calcium signaling pathways in CA1 region of AD mice model.

  4. Propolis Promotes Memantine-Dependent Rescue of Cognitive Deficits in APP-KI Mice. 国際誌 査読有り

    Shigeki Moriguchi, Ryo Inagaki, Takashi Saito, Takaomi C Saido, Kohji Fukunaga

    Molecular neurobiology 2022年5月19日

    DOI: 10.1007/s12035-022-02876-6  

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    Propolis is a complex resinous substance that is relevant as a therapeutic target for Alzheimer's disease (AD) and other neurodegenerative diseases. In this study, we confirmed that propolis (Brazilian green propolis) further enhances the rescue of cognitive deficits by the novel AD drug memantine in APP-KI mice. In memory-related behavior tasks, administration of a single dose of propolis at 1-100 mg/kg p.o. significantly enhanced the rescue of cognitive deficits by memantine at 1 mg/kg p.o. in APP-KI mice. In in vitro studies, propolis significantly increased intracellular Ca2+ concentration and calcium/calmodulin-dependent protein kinase II (CaMKII) autophosphorylation in Kir6.2-overexpressed N2A cells treated with memantine. Propolis also significantly increased adenosine 5'-triphosphate (ATP) contents and CaMKII autophosphorylation, which was impaired in Aβ-treated Kir6.2-overexpressed N2A cells. Similarly, repeated administration of propolis at 100 mg/kg p.o. for 8 weeks further enhanced the rescue of cognitive deficits by memantine in APP-KI mice. Consistent with the rescued cognitive deficits in APP-KI mice, repeated administration of propolis markedly ameliorated memantine-dependent rescue of injured long-term potentiation (LTP) in APP-KI mice, concomitant with increased CaMKII autophosphorylation and calcium/calmodulin-dependent protein kinase IV (CaMKIV) phosphorylation in the hippocampal CA1 region. Furthermore, repeated administration of both memantine and propolis significantly restored the decreased ATP contents in the CA1 region of APP-KI mice. Finally, we confirmed that repeated administration of memantine at 1 mg/kg p.o. and propolis at 100 mg/kg p.o. for 8 weeks failed to restore the cognitive deficits in Kir6.2-/- mice. Our study demonstrates that propolis increases ATP contents and promotes the amelioration of cognitive deficits rescued by memantine via Kir6.2 channel inhibition in the CA1 region.

  5. Memantine improves cognitive deficits via KATP channel inhibition in olfactory bulbectomized mice 査読有り

    Shigeki Moriguchi, Ryo Inagaki, Kohji Fukunaga

    Molecular and Cellular Neuroscience 2021年

  6. Schizophrenia-Like Behavioral Impairments in Mice with Suppressed Expression of Piccolo in the Medial Prefrontal Cortex 国際誌 査読有り

    Atsumi Nitta, Naotaka Izuo, Kohei Hamatani, Ryo Inagaki, Yuka Kusui, Kequan Fu, Takashi Asano, Youta Torii, Chikako Habuchi, Hirotaka Sekiguchi, Shuji Iritani, Shin-ichi Muramatsu, Norio Ozaki, Yoshiaki Miyamoto

    Journal of Personalized Medicine 11 (7) 607 2021年

    DOI: 10.3390/jpm11070607  

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    Piccolo, a presynaptic cytomatrix protein, plays a role in synaptic vesicle trafficking in the presynaptic active zone. Certain single-nucleotide polymorphisms of the Piccolo-encoding gene PCLO are reported to be associated with mental disorders. However, a few studies have evaluated the relationship between Piccolo dysfunction and psychotic symptoms. Therefore, we investigated the neurophysiological and behavioral phenotypes in mice with Piccolo suppression in the medial prefrontal cortex (mPFC). Downregulation of Piccolo in the mPFC reduced regional synaptic proteins, accompanied with electrophysiological impairments. The Piccolo-suppressed mice showed an enhanced locomotor activity, impaired auditory prepulse inhibition, and cognitive dysfunction. These abnormal behaviors were partially ameliorated by the antipsychotic drug risperidone. Piccolo-suppressed mice received mild social defeat stress showed additional behavioral despair. Furthermore, the responses of these mice to extracellular glutamate and dopamine levels induced by the optical activation of mPFC projection in the dorsal striatum (dSTR) were inhibited. Similarly, the Piccolo-suppressed mice showed decreased depolarization-evoked glutamate and -aminobutyric acid elevations and increased depolarization-evoked dopamine elevation in the dSTR. These suggest that Piccolo regulates neurotransmission at the synaptic terminal of the projection site. Reduced neuronal connectivity in the mPFC-dSTR pathway via suppression of Piccolo in the mPFC may induce behavioral impairments observed in schizophrenia.

  7. Nicotine Rescues Depressive-like Behaviors via α7-type Nicotinic Acetylcholine Receptor Activation in CaMKIV Null Mice. 国際誌 査読有り

    Shigeki Moriguchi, Ryo Inagaki, Lusha Yi, Mikako Shibata, Hiroyuki Sakagami, Kohji Fukunaga

    Molecular neurobiology 57 (12) 4929-4940 2020年12月

    DOI: 10.1007/s12035-020-02077-z  

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    The nicotinic acetylcholine receptors (nAChRs) are essential for acetylcholine-mediated signaling. Two major functional subtypes of nAChR in the brain, α7-type and α4β2-type, have a high affinity for nicotine. Here, we demonstrated that chronic exposure to nicotine at 0.03-0.3 mg/kg for 14 days rescued depressive-like behavior in calcium/calmodulin-dependent protein kinase IV (CaMKIV) null mice. Chronic exposure to nicotine together with methyllycaconitine, an α7-type nAChR antagonist, but not with dihydro-β-erythroidine, an α4β2-type nAChR antagonist, failed to rescue the depressive-like behavior and restore the reduced number of BrdU-positive cells in the dentate gyrus (DG) of CaMKIV null mice. Furthermore, chronic exposure to nicotine enhanced the PI3K/Akt and ERK/CREB pathways and increased BDNF expression in the DG of CaMKIV null mice. Similar to chronic exposure to nicotine, both PNU-282987 and GTS-21, α7-type nAChR agonists, significantly rescued depressive-like behavior, with a reduction in the number of BrdU-positive cells in the DG of CaMKIV null mice. Both PNU-282987 and GTS-21 also enhanced the PI3K/Akt and ERK/CREB pathways and increased brain-derived neurotrophic factor (BDNF) expression in the DG of CaMKIV null mice. Taken together, we demonstrated that chronic exposure to nicotine rescues depressive-like behavior via α7-type nAChR through the activation of both PI3K/Akt and ERK/CREB pathways in CaMKIV null mice.

  8. Enhanced Retrieval of Taste Associative Memory by Chemogenetic Activation of Locus Coeruleus Norepinephrine Neurons. 国際誌 査読有り

    Ryoji Fukabori, Yoshio Iguchi, Shigeki Kato, Kazumi Takahashi, Satoshi Eifuku, Shingo Tsuji, Akihiro Hazama, Motokazu Uchigashima, Masahiko Watanabe, Hiroshi Mizuma, Yilong Cui, Hirotaka Onoe, Keigo Hikishima, Yasunobu Yasoshima, Makoto Osanai, Ryo Inagaki, Kohji Fukunaga, Takuma Nishijo, Toshihiko Momiyama, Richard Benton, Kazuto Kobayashi

    The Journal of neuroscience : the official journal of the Society for Neuroscience 40 (43) 8367-8385 2020年10月21日

    DOI: 10.1523/JNEUROSCI.1720-20.2020  

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    The ability of animals to retrieve memories stored in response to the environment is essential for behavioral adaptation. Norepinephrine (NE)-containing neurons in the brain play a key role in the modulation of synaptic plasticity underlying various processes of memory formation. However, the role of the central NE system in memory retrieval remains unclear. Here, we developed a novel chemogenetic activation strategy exploiting insect olfactory ionotropic receptors (IRs), termed "IR-mediated neuronal activation," and used it for selective stimulation of NE neurons in the locus coeruleus (LC). Drosophila melanogaster IR84a and IR8a subunits were expressed in LC NE neurons in transgenic mice. Application of phenylacetic acid (a specific ligand for the IR84a/IR8a complex) at appropriate doses induced excitatory responses of NE neurons expressing the receptors in both slice preparations and in vivo electrophysiological conditions, resulting in a marked increase of NE release in the LC nerve terminal regions (male and female). Ligand-induced activation of LC NE neurons enhanced the retrieval process of conditioned taste aversion without affecting taste sensitivity, general arousal state, and locomotor activity. This enhancing effect on taste memory retrieval was mediated, in part, through α1- and β-adrenergic receptors in the basolateral nucleus of the amygdala (BLA; male). Pharmacological inhibition of LC NE neurons confirmed the facilitative role of these neurons in memory retrieval via adrenergic receptors in the BLA (male). Our findings indicate that the LC NE system, through projections to the BLA, controls the retrieval process of taste associative memory.SIGNIFICANCE STATEMENT Norepinephrine (NE)-containing neurons in the brain play a key role in the modulation of synaptic plasticity underlying various processes of memory formation, but the role of the NE system in memory retrieval remains unclear. We developed a chemogenetic activation system based on insect olfactory ionotropic receptors and used it for selective stimulation of NE neurons in the locus coeruleus (LC) in transgenic mice. Ligand-induced activation of LC NE neurons enhanced the retrieval of conditioned taste aversion, which was mediated, in part, through adrenoceptors in the basolateral amygdala. Pharmacological blockade of LC activity confirmed the facilitative role of these neurons in memory retrieval. Our findings indicate that the LC-amygdala pathway plays an important role in the recall of taste associative memory.

  9. Memantine Improves Depressive-like Behaviors via Kir6.1 Channel Inhibition in Olfactory Bulbectomized Mice. 国際誌 査読有り

    Shigeki Moriguchi, Ryo Inagaki, Hirotsugu Shimojo, Yoshihiko Sugimura, Kohji Fukunaga

    Neuroscience 442 264-273 2020年8月21日

    DOI: 10.1016/j.neuroscience.2020.06.002  

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    Aberrant depressive-like behaviors in olfactory bulbectomized (OBX) mice have been documented by previous studies. Here, we show that memantine enhances adult neurogenesis in the subgranular zone of the hippocampal dentate gyrus (DG) and improves depressive-like behaviors via inhibition of the ATP-sensitive potassium (KATP) channel in OBX mice. Treatment with memantine (1-3 mg/kg; per os (p.o.)) for 14 days significantly improved depressive-like behaviors in OBX mice, as assessed using the tail-suspension and forced-swim tests. Treatment with memantine also increased the number of BrdU-positive neurons in the DG of OBX mice. In the immunoblot analysis, memantine significantly increased phosphorylation of CaMKIV (Thr-196) and Akt (Ser-473), but not ERK (Thr-202/Tyr-204), in the DG of OBX mice. Furthermore, phosphorylation of GSK3β (Ser-9) and CREB (Ser-133), and BDNF protein expression levels increased in the DG of OBX mice, possibly accounting for the increased adult neurogenesis owing to Akt activation. In contrast, both the improvement of depressive-like behaviors and increase in BrdU-positive neurons in the DG following treatment with memantine were unapparent in OBX-treated Kir6.1 heterozygous (+/-) mice but not OBX-treated Kir6.2 heterozygous (+/-) mice. Furthermore, the increase in CaMKIV (Thr-196) and Akt (Ser-473) phosphorylation and BDNF protein expression levels was not observed in OBX-treated Kir6.1 +/- mice. Overall, our study shows that memantine improves OBX-induced depressive-like behaviors by increasing adult neurogenesis in the DG via Kir6.1 channel inhibition.

  10. Kir6.1 Heterozygous Mice Exhibit Aberrant Amygdala-Dependent Cued Fear Memory. 国際誌 査読有り

    Ryo Inagaki, Shigeki Moriguchi, Kohji Fukunaga

    Molecular neurobiology 57 (3) 1622-1635 2020年3月

    DOI: 10.1007/s12035-019-01840-1  

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    ATP-sensitive K+ (KATP) channels are predominantly expressed in the brain and consist of four identical inward-rectifier potassium ion channel subunits (Kir6.1 or Kir6.2) and four identical high-affinity sulfonylurea receptor subunits (SUR1, SUR2A, or SUR2B). We previously observed that chronic corticosterone-treated (CORT) mice exhibited enhanced anxiety-like behaviors and cued fear memory. In the present study, the protein and mRNA expression levels of Kir6.1, but not Kir6.2, were decreased in the lateral amygdala (LA) of CORT mice. Heterozygous Kir6.1-null (Kir6.1+/-) mice also showed enhanced tone (cued) fear memory and long-term potentiation (LTP) in the cortico-LA pathway compared to those in wild-type mice. However, LTP was not enhanced in the hippocampal CA1 regions of Kir6.1+/- mice. Consistent with increased cued fear memory, both Ca2+/calmodulin-dependent protein kinase II (CaMKII) and extracellular signal-regulated kinase (ERK) activities were significantly elevated in the LAs of Kir6.1+/- mice after tone stimulation. Our results indicate that increased CaMKII and ERK activities may induce LTP in the LA in Kir6.1+/- mice, leading to aberrant cued fear memory. The changes in neural plasticity in the LA of Kir6.1+/- mice were associated with anxiety-like behaviors and may be related to the pathogenic mechanisms of anxiety disorders in human patients.

  11. Enhanced emotional memory retrieval by chemogenetic activation of locus coeruleus norepinephrine neurons

    Fukabori, R, Iguchi, Y, Kato,S, Takahashi, K, Eifuku,S, Tsuji, S, Hazama, A, Uchigashima, M, Watanabe, M, Mizuma, H, Cui, Y, Onoe, H, Hikishima, K, Yasoshima, Y, Osanai, M, Inagaki, R, Fukunaga, K, Nishijo, T, Momiyama, T, Benton, R, Kobayashi, K

    BioRxive 2019年11月

    DOI: 10.1101/831313  

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    The ability to retrieve memory store in response to the environment is essential for animal behavioral adaptation. Norepinephrine (NE)-containing neurons in the brain play a key role in the modulation of synaptic plasticity underlying various processes of memory formation. However, the role of the central NE system in memory retrieval remains unclear. In this study we developed a neural chemogenetic activation strategy using insect olfactory Ionotropic Receptors (IRs), which we used it for selective stimulation of NE neurons in the locus coeruleus (LC) in transgenic mice. Ligand-induced activation of LC NE neurons resulted in enhancement of the retrieval process of conditioned taste aversion, which was mediated through at least partly adrenergic receptors in the amygdala. Pharmacological blockade of LC activity confirmed the facilitative role of these neurons in memory retrieval. Our findings indicate that the LC-amygdalar pathway is required and sufficient for enhancing the recall of taste associative memory

  12. Aberrant Amygdala-Dependent Cued Fear Memory in Na+/Ca2+ Exchanger 1 Heterozygous Mice. 国際誌 査読有り

    Shigeki Moriguchi, Satomi Kita, Ryo Inagaki, Yasushi Yabuki, Yuzuru Sasaki, Shun Ishikawa, Hiroyuki Sakagami, Takahiro Iwamoto, Kohji Fukunaga

    Molecular neurobiology 56 (6) 4381-4394 2019年6月

    DOI: 10.1007/s12035-018-1384-2  

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    Na+/Ca2+ exchangers (NCXs) are mainly expressed in the plasma membrane and exchange one Ca2+ for three Na+, depending on the electrochemical gradients across the plasma membrane. NCXs have three isoforms, NCX1-3, encoded by distinct genes in mammals. Here, we report that heterozygous mice lacking NCX1 (NCX1+/-) exhibit impaired amygdala-dependent cued fear memory. NCX1+/- mice showed significant impairment in fear-related behaviors measured with the elevated-plus maze, light-dark, open-field, and marble-burying tasks. In addition, NCX1+/- mice showed abnormality in cued fear memory but not in contextual fear memory in a fear-conditioning task. In immunohistochemical analyses, NCX1+/- mice had significantly increased number of c-Fos-positive cells in the lateral amygdala (LA) but not in the central amygdala following fear-related tone stimuli. c-Fos expression peaked at 1 h. In concordance with the aberrant fear-related behaviors in NCX1+/- mice, enhanced long-term potentiation was also observed in the LA of these mice. Furthermore, enhancement of CaMKII or CaMKIV activity in the LA was observed in NCX1+/- mice by immunoblot analyses. In contrast, CaMKII+/- but not CaMKIV-/- mice insufficiently exhibited tone-induced cued fear memory and there was no increase in the number of c-Fos-positive cells in the LA. Altogether, the increased CaMKII activity and consequent c-Fos expression likely account for the dysregulation of amygdala-dependent cued fear memory in NCX1+/- mice.

  13. Aberrant Amygdala-dependent Fear Memory in Corticosterone-treated Mice. 国際誌 査読有り

    Ryo Inagaki, Shigeki Moriguchi, Kohji Fukunaga

    Neuroscience 388 448-459 2018年9月15日

    DOI: 10.1016/j.neuroscience.2018.08.004  

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    Anxiety disorder is a major psychiatric disorder characterized by fear, worry, and excessive rumination. However, the molecular mechanisms underlying neural plasticity and anxiety remain unclear. Here, we utilized a mouse model of anxiety-like behaviors induced by the chronic administration of corticosterone (CORT) to determine the exact mechanism of each region of the fear circuits in the anxiety disorders. Chronic CORT-treated mice showed a significant increase in anxiety-related behaviors as assessed by the elevated plus maze, light-dark, open-field, and marble-burying tasks. In addition, chronic CORT-treated mice exhibited abnormal amygdala-dependent tone-induced fear memory but normal hippocampus-dependent contextual memory. Consistent with amygdala hyperactivation, chronic CORT-treated mice showed significantly increased numbers of c-Fos-positive cells in the basolateral amygdala (BLA) after tone stimulation. Long-term potentiation (LTP) was markedly enhanced in the BLA of chronic CORT-treated mice compared to that of vehicle-treated mice. Immunoblot analyses revealed that autophosphorylation of Ca2+/calmodulin-dependent protein kinase (CaMK) IIα at threonine 286 and phosphorylation of cyclic-adenosine-monophosphate response-element-binding protein (CREB) at serine 133 were markedly increased in the BLA of chronic CORT-treated mice after tone stimulation. The protein and mRNA levels of brain-derived neurotrophic factor (BDNF) also significantly increased. Our findings suggest that increased CaMKII activity and synaptic plasticity in the BLA likely account for the aberrant amygdala-dependent fear memory in chronic CORT-treated mice.

  14. Reduced CaM Kinase II and CaM Kinase IV Activities Underlie Cognitive Deficits in NCKX2 Heterozygous Mice. 国際誌 査読有り

    Shigeki Moriguchi, Satomi Kita, Yasushi Yabuki, Ryo Inagaki, Hisanao Izumi, Yuzuru Sasaki, Hideaki Tagashira, Kyoji Horie, Junji Takeda, Takahiro Iwamoto, Kohji Fukunaga

    Molecular neurobiology 55 (5) 3889-3900 2018年5月

    DOI: 10.1007/s12035-017-0596-1  

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    Among five members of the K+-dependent Na+/Ca2+ exchanger (NCKX) family (NCKX1-5), only NCKX2 is highly expressed in mouse brain. NCKX2 in plasma membranes mediates cytosolic calcium excretion through electrogenic exchange of 4 Na+ for 1 Ca2+ and 1 K+. Here, we observed significantly decreased levels of NCKX2 protein and mRNA in the CA1 region of APP23 mice, a model of Alzheimer's disease. We also found that, like APP23 mice, heterozygous NCKX2-mutant mice exhibit mildly impaired hippocampal LTP and memory acquisition, the latter based on novel object recognition and passive avoidance tasks. When we addressed underlying mechanisms, we found that both CaMKII autophosphorylation and CaMKIV phosphorylation significantly decreased in CA1 regions of NCKX2+/- relative to control mice. Likewise, phosphorylation of GluA1 (Ser-831) and CREB (Ser-133), respective downstream targets of CaMKII and CaMKIV, also significantly decreased in the CA1 region. BDNF protein and mRNA levels significantly decreased in CA1 of NCKX2+/- relative to control mice. Finally, CaN activity increased in CA1 of NCKX2+/- mice. Our findings suggest that like APP23 mice, NCKX2+/- mice may exhibit impaired learning and hippocampal LTP due to decreased CaM kinase II and CaM kinase IV activities.

  15. Reduced expression of Na+/Ca2+ exchangers is associated with cognitive deficits seen in Alzheimer's disease model mice. 国際誌 査読有り

    Shigeki Moriguchi, Satomi Kita, Masahiro Fukaya, Makoto Osanai, Ryo Inagaki, Yuzuru Sasaki, Hisanao Izumi, Kyoji Horie, Junji Takeda, Takashi Saito, Hiroyuki Sakagami, Takaomi C Saido, Takahiro Iwamoto, Kohji Fukunaga

    Neuropharmacology 131 291-303 2018年3月15日

    DOI: 10.1016/j.neuropharm.2017.12.037  

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    Na+/Ca2+ exchangers (NCXs) are expressed primarily in the plasma membrane of most cell types, where they mediate electrogenic exchange of one Ca2+ for three Na+ ions, depending on Ca2+ and Na+ electrochemical gradients across the membrane. Three mammalian NCX isoforms (NCX1, NCX2, and NCX3) are each encoded by a distinct gene. Here, we report that NCX2 and NCX3 protein and mRNA levels are relatively reduced in hippocampal CA1 of APP23 and APP-KI mice. Likewise, NCX2+/- or NCX3+/- mice exhibited impaired hippocampal LTP and memory-related behaviors. Moreover, relative to controls, calcium/calmodulin-dependent protein kinase II (CaMKII) autophosphorylation significantly decreased in NCX2+/- mouse hippocampus but increased in hippocampus of NCX3+/- mice. NCX2 or NCX3 heterozygotes displayed impaired maintenance of hippocampal LTP, a phenotype that in NCX2+/- mice was correlated with elevated calcineurin activity and rescued by treatment with the calcineurin (CaN) inhibitor FK506. Likewise, FK506 treatment significantly restored impaired hippocampal LTP in APP-KI mice. Moreover, Ca2+ clearance after depolarization following high frequency stimulation was slightly delayed in hippocampal CA1 regions of NCX2+/- mice. Electron microscopy revealed relatively decreased synaptic density in CA1 of NCX2+/- mice, while the number of spines with perforated synapses in CA1 significantly increased in NCX3+/- mice. We conclude that memory impairment seen in NCX2+/- and NCX3+/- mice reflect dysregulated hippocampal CaMKII activity, which alters dendritic spine morphology, findings with implications for memory deficits seen in Alzheimer's disease model mice.

︎全件表示 ︎最初の5件までを表示

MISC 3

  1. 青斑核ノルアドレナリン神経細胞の活動亢進による情動記憶の想起の促進 新規神経活動活性化ツールによる検討

    井口 善生, 深堀 良二, 加藤 成樹, 高橋 和巳, 永福 智志, 辻 真伍, 挾間 章博, 内ヶ島 基政, 渡辺 雅彦, 水間 広, 崔 翼龍, 尾上 浩隆, 疋島 啓吾, 八十島 安伸, 小山内 実, 稲垣 良, 福永 浩司, 西條 琢真, 籾山 俊彦, リチャード・ベントン, 小林 和人

    日本生理学雑誌 83 (2) 39-39 2021年5月

    出版者・発行元: (一社)日本生理学会

    ISSN: 0031-9341

  2. 青斑核ノルアドレナリン神経細胞の活動亢進による情動記憶の想起の促進 新規神経活動活性化ツールによる検討

    井口 善生, 深堀 良二, 加藤 成樹, 高橋 和巳, 永福 智志, 辻 真伍, 挾間 章博, 内ヶ島 基政, 渡辺 雅彦, 水間 広, 崔 翼龍, 尾上 浩隆, 疋島 啓吾, 八十島 安伸, 小山内 実, 稲垣 良, 福永 浩司, 西條 琢真, 籾山 俊彦, リチャード・ベントン, 小林 和人

    日本生理学雑誌 83 (2) 39-39 2021年5月

    出版者・発行元: (一社)日本生理学会

    ISSN: 0031-9341

  3. Presynaptic protein Piccolo knockdown in the prefrontal cortex induces cognitive and emotional impairment in mice.

    Yoshiaki Miyamoto, Ryo Inagaki, Keiji Sato, Shin-ichi Muramatsu, Toshitaka Nabeshima, Kyosuke Uno, Atsumi Nitta

    INTERNATIONAL JOURNAL OF NEUROPSYCHOPHARMACOLOGY 19 226-226 2016年6月

    ISSN: 1461-1457

    eISSN: 1469-5111

共同研究・競争的資金等の研究課題 1

  1. KATPチャネルを標的とした新規パーキンソン病治療法の確立

    稲垣 良

    2021年4月1日 ~ 2024年3月31日

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    本研究では、1) パーキンソン病既存薬amantadineのKATP(Kir6.1/Kir6.2) チャネルを介したメカニズム検討、2) KATPチャネル欠損(Kir6.1+/-、Kir6.2-/-)マウスに神経毒 MPTP投与によってパーキンソン病(PD)を誘発させ行動薬理学的アプローチによるパーキンソン病発症機序解明を行った。 「研究課題1」: 申請者は、既存のPD治療薬であるamantadineの新規作用機序として、KATP (Kir6.1/Kir6.2) チャネルの閉口を介した細胞内Ca2+濃度の上昇による神経細胞の興奮性亢進作用を見出した。さらに、Ca2+イメージング法を用い、amantadineのEC50が100uM前後であることを同定した。 「研究課題2」:KATP チャネル欠損マウスに神経毒 MPTP投与によってパーキンソン病を誘発させると、Kir6.1欠損マウスではPD様症状(運動機能障害)の重症化が野生型マウスと比較して顕著であった一方で、Kir6.2欠損マウスでは発症が認められなかった。次に、免疫組織化学染色法による黒質緻密部におけるドーパミン神経細胞の発現を観察したところ、MPTPを投与したKir6.1欠損マウスではドーパミン神経細胞の著しい脱落が確認されたが、MPTPを投与したKir6.2欠損マウスではドーパミン神経細胞の脱落は認められなかった。さらに、MPTPを投与したKir6.1欠損マウスでは、amantadine投与によるPD様症状の改善効果は認められなかった。今後は、amantadineによるKATPチャネル閉口作用について詳細に検証するとともに、PD様症状を惹起したKATP チャネル欠損マウスの病態関連脳領域における細胞内シグナル伝達経路について解析する。