Details of the Researcher

PHOTO

Shinichi Inoue
Section
Graduate School of Medicine
Job title
Assistant Professor
Degree

Research History 10

  • 2025/04 - Present
    東北大学大学院医学系研究科 遺伝医療学分野 助教

  • 2021/01 - 2025/02
    University of Pennsylvania Perelman School of Medicine Institute for Diabetes, Obesity, and Metabolism Postdoctoral fellow, Mitchell A Lazar Lab

  • 2020/06 - 2021/02
    東北大学大学院医学系研究科 分子代謝生理学分野 助教

  • 2020/03 - 2021/01
    University of California, Irvine Department of Biological Chemistry, Center for Epigenetics and Metabolism Postdoctoral fellow, Paolo Sassone-Corsi Lab

  • 2015/08 - 2020/03
    Tohoku University Graduate School of Medicine

  • 2011/05 - 2015/07
    Tohoku University Graduate School of Medicine

  • 2025/03 - 2025/03
    東北大学大学院医学系研究科 遺伝医療学分野 学術研究員

  • 2024/12 - 2025/03
    東北大学大学院医学系研究科 遺伝医療学分野 大学院非常勤講師

  • 2020/05 - 2020/05
    東北大学大学院医学系研究科

  • 2011/04 - 2011/04
    Tohoku University Graduate School of Medicine

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Education 3

  • 国立大学法人東北大学大学院 薬学研究科

    2008/04 - 2011/03

  • National Fisheries University

    2006/04 - 2008/03

  • National Fisheries University

    2002/04 - 2006/03

Professional Memberships 3

  • 日本肥満学会

  • THE JAPANESE BIOCHEMICAL SOCIETY

  • THE MOLECULAR BIOLOGY SOCIETY OF JAPAN

Research Interests 12

  • Brown adipose tissue

  • C/EBP

  • Nuclear receptor

  • PGC-1a

  • Thermogenesis

  • UCP1

  • HDAC3

  • obesity

  • mitochondria

  • RAS/MAPK

  • energy metabolism

  • RASopathies

Research Areas 4

  • Life sciences / Metabolism and endocrinology /

  • Life sciences / Molecular biology /

  • Life sciences / Medical biochemistry /

  • Life sciences / Fetal medicine/Pediatrics / Molecular genetics

Awards 3

  1. UJA奨励賞

    2025

  2. 日本人類遺伝学会第63回大会 大会最優秀口演賞

    2018 日本人類遺伝学会

  3. 4th International RASopathies Symposium, Finalist, Young Investigator Award

    2015

Papers 28

  1. Short-term cold exposure induces persistent epigenomic memory in brown fat. International-journal Peer-reviewed

    Shin-Ichi Inoue, Matthew J Emmett, Hee-Woong Lim, Mohit Midha, Hannah J Richter, Isaac J Celwyn, Rashid Mehmood, Maria Chondronikola, Samuel Klein, Amy K Hauck, Mitchell A Lazar

    Cell metabolism 2024/06/12

    DOI: 10.1016/j.cmet.2024.05.011  

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    Deficiency of the epigenome modulator histone deacetylase 3 (HDAC3) in brown adipose tissue (BAT) impairs the ability of mice to survive in near-freezing temperatures. Here, we report that short-term exposure to mild cold temperature (STEMCT: 15°C for 24 h) averted lethal hypothermia of mice lacking HDAC3 in BAT (HDAC3 BAT KO) exposed to 4°C. STEMCT restored the induction of the thermogenic coactivator PGC-1α along with UCP1 at 22°C, which is greatly impaired in HDAC3-deficient BAT, and deletion of either UCP1 or PGC-1α prevented the protective effect of STEMCT. Remarkably, this protection lasted for up to 7 days. Transcriptional activator C/EBPβ was induced by short-term cold exposure in mouse and human BAT and, uniquely, remained high for 7 days following STEMCT. Adeno-associated virus-mediated knockdown of BAT C/EBPβ in HDAC3 BAT KO mice erased the persistent memory of STEMCT, revealing the existence of a C/EBPβ-dependent and HDAC3-independent cold-adaptive epigenomic memory.

  2. New Noonan syndrome model mice with RIT1 mutation exhibit cardiac hypertrophy and susceptibility to β-adrenergic stimulation-induced cardiac fibrosis. International-journal Peer-reviewed

    Shingo Takahara, Shin-Ichi Inoue, Sachiko Miyagawa-Tomita, Katsuhisa Matsuura, Yasumi Nakashima, Tetsuya Niihori, Yoichi Matsubara, Yoshikatsu Saiki, Yoko Aoki

    EBioMedicine 42 43-53 2019/04

    DOI: 10.1016/j.ebiom.2019.03.014  

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    BACKGROUND: Noonan syndrome (NS) is a genetic disorder characterized by short stature, a distinctive facial appearance, and heart defects. We recently discovered a novel NS gene, RIT1, which is a member of the RAS subfamily of small GTPases. NS patients with RIT1 mutations have a high incidence of hypertrophic cardiomyopathy and edematous phenotype, but the specific role of RIT1 remains unclear. METHODS: To investigate how germline RIT1 mutations cause NS, we generated knock-in mice that carried a NS-associated Rit1 A57G mutation (Rit1A57G/+). We investigated the phenotypes of Rit1A57G/+ mice in fetal and adult stages as well as the effects of isoproterenol on cardiac function in Rit1A57G/+ mice. FINDINGS: Rit1A57G/+ embryos exhibited decreased viability, edema, subcutaneous hemorrhage and AKT activation. Surviving Rit1A57G/+ mice had a short stature, craniofacial abnormalities and splenomegaly. Cardiac hypertrophy and cardiac fibrosis with increased expression of S100A4, vimentin and periostin were observed in Rit1A57G/+ mice compared to Rit1+/+ mice. Upon isoproterenol stimulation, cardiac fibrosis was drastically increased in Rit1A57G/+ mice. Phosphorylated (at Thr308) AKT levels were also elevated in isoproterenol-treated Rit1A57G/+ hearts. INTERPRETATION: The A57G mutation in Rit1 causes cardiac hypertrophy, fibrosis and other NS-associated features. Biochemical analysis indicates that the AKT signaling pathway might be related to downstream signaling in the RIT1 A57G mutant at a developmental stage and under β-adrenergic stimulation in the heart. FUND: The Grants-in-Aid were provided by the Practical Research Project for Rare/Intractable Diseases from the Japan Agency for Medical Research and Development, the Japan Society for the Promotion of Science KAKENHI Grant.

  3. C-type natriuretic peptide improves growth retardation in a mouse model of cardio-facio-cutaneous syndrome. Peer-reviewed

    Inoue SI, Morozumi N, Yoshikiyo K, Maeda H, Aoki Y

    Human molecular genetics 28 (1) 74-83 2019/01

    DOI: 10.1093/hmg/ddy333  

    ISSN: 0964-6906

  4. Mice with an Oncogenic HRAS Mutation are Resistant to High-Fat Diet-Induced Obesity and Exhibit Impaired Hepatic Energy Homeostasis. International-journal Peer-reviewed

    Daiju Oba, Shin-Ichi Inoue, Sachiko Miyagawa-Tomita, Yasumi Nakashima, Tetsuya Niihori, Seiji Yamaguchi, Yoichi Matsubara, Yoko Aoki

    EBioMedicine 27 138-150 2018/01

    DOI: 10.1016/j.ebiom.2017.11.029  

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    Costello syndrome is a "RASopathy" that is characterized by growth retardation, dysmorphic facial appearance, hypertrophic cardiomyopathy and tumor predisposition. >80% of patients with Costello syndrome harbor a heterozygous germline G12S mutation in HRAS. Altered metabolic regulation has been suspected because patients with Costello syndrome exhibit hypoketotic hypoglycemia and increased resting energy expenditure, and their growth is severely retarded. To examine the mechanisms of energy reprogramming by HRAS activation in vivo, we generated knock-in mice expressing a heterozygous Hras G12S mutation (HrasG12S/+ mice) as a mouse model of Costello syndrome. On a high-fat diet, HrasG12S/+ mice developed a lean phenotype with microvesicular hepatic steatosis, resulting in early death compared with wild-type mice. Under starvation conditions, hypoketosis and elevated blood levels of long-chain fatty acylcarnitines were observed, suggesting impaired mitochondrial fatty acid oxidation. Our findings suggest that the oncogenic Hras mutation modulates energy homeostasis in vivo.

  5. Activated Braf induces esophageal dilation and gastric epithelial hyperplasia in mice. International-journal Peer-reviewed

    Shin-Ichi Inoue, Shingo Takahara, Takeo Yoshikawa, Tetsuya Niihori, Kazuhiko Yanai, Yoichi Matsubara, Yoko Aoki

    Human molecular genetics 26 (23) 4715-4727 2017/12/01

    DOI: 10.1093/hmg/ddx354  

    ISSN: 0964-6906

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    Germline mutations in BRAF are a major cause of cardio-facio-cutaneous (CFC) syndrome, which is characterized by heart defects, characteristic craniofacial dysmorphology and dermatologic abnormalities. Patients with CFC syndrome also commonly show gastrointestinal dysfunction, including feeding and swallowing difficulties and gastroesophageal reflux. We have previously found that knock-in mice expressing a Braf Q241R mutation exhibit CFC syndrome-related phenotypes, such as growth retardation, craniofacial dysmorphisms, congenital heart defects and learning deficits. However, it remains unclear whether BrafQ241R/+ mice exhibit gastrointestinal dysfunction. Here, we report that BrafQ241R/+ mice have neonatal feeding difficulties and esophageal dilation. The esophagus tissues from BrafQ241R/+ mice displayed incomplete replacement of smooth muscle with skeletal muscle and decreased contraction. Furthermore, the BrafQ241R/+ mice showed hyperkeratosis and a thickened muscle layer in the forestomach. Treatment with MEK inhibitors ameliorated the growth retardation, esophageal dilation, hyperkeratosis and thickened muscle layer in the forestomach in BrafQ241R/+ mice. The esophageal dilation with aberrant skeletal-smooth muscle boundary in BrafQ241R/+ mice were recovered after treatment with the histone H3K27 demethylase inhibitor GSK-J4. Our results provide clues to elucidate the pathogenesis and possible treatment of gastrointestinal dysfunction and failure to thrive in patients with CFC syndrome.

  6. Adult mice expressing a Braf Q241R mutation on an ICR/CD-1 background exhibit a cardio-facio-cutaneous syndrome phenotype. International-journal Peer-reviewed

    Mitsuji Moriya, Shin-Ichi Inoue, Sachiko Miyagawa-Tomita, Yasumi Nakashima, Daiju Oba, Tetsuya Niihori, Misato Hashi, Hiroshi Ohnishi, Shigeo Kure, Yoichi Matsubara, Yoko Aoki

    Human molecular genetics 24 (25) 7349-60 2015/12/20

    DOI: 10.1093/hmg/ddv435  

    ISSN: 0964-6906

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    Activation of the RAS pathway has been implicated in oncogenesis and developmental disorders called RASopathies. Germline mutations in BRAF have been identified in 50-75% of patients with cardio-facio-cutaneous (CFC) syndrome, which is characterized by congenital heart defects, distinctive facial features, short stature and ectodermal abnormalities. We recently demonstrated that mice expressing a Braf Q241R mutation, which corresponds to the most frequent BRAF mutation (Q257R) in CFC syndrome, on a C57BL/6J background are embryonic/neonatal lethal, with multiple congenital defects, preventing us from analyzing the phenotypic consequences after birth. Here, to further explore the pathogenesis of CFC syndrome, we backcrossed these mice onto a BALB/c or ICR/CD-1 genetic background. On a mixed (BALB/c and C57BL/6J) background, all heterozygous Braf(Q241R/+) mice died between birth and 24 weeks and exhibited growth retardation, sparse and ruffled fur, liver necrosis and atrial septal defects (ASDs). In contrast, 31% of the heterozygous Braf(Q241R/+) ICR mice survived over 74 weeks. The surviving Braf(Q241R/+) ICR mice exhibited growth retardation, sparse and ruffled fur, a hunched appearance, craniofacial dysmorphism, long and/or dystrophic nails, extra digits and ovarian cysts. The Braf(Q241R/+) ICR mice also showed learning deficits in the contextual fear-conditioning test. Echocardiography indicated the presence of pulmonary stenosis and ASDs in the Braf(Q241R/+) ICR mice, which were confirmed by histological analysis. These data suggest that the heterozygous Braf(Q241R/+) ICR mice show similar phenotypes as CFC syndrome after birth and will be useful for elucidating the pathogenesis and potential therapeutic strategies for RASopathies.

  7. New BRAF knockin mice provide a pathogenetic mechanism of developmental defects and a therapeutic approach in cardio-facio-cutaneous syndrome. International-journal Peer-reviewed

    Shin-Ichi Inoue, Mitsuji Moriya, Yusuke Watanabe, Sachiko Miyagawa-Tomita, Tetsuya Niihori, Daiju Oba, Masao Ono, Shigeo Kure, Toshihiko Ogura, Yoichi Matsubara, Yoko Aoki

    Human molecular genetics 23 (24) 6553-66 2014/12/15

    DOI: 10.1093/hmg/ddu376  

    ISSN: 0964-6906

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    Cardio-facio-cutaneous (CFC) syndrome is one of the 'RASopathies', a group of phenotypically overlapping syndromes caused by germline mutations that encode components of the RAS-MAPK pathway. Germline mutations in BRAF cause CFC syndrome, which is characterized by heart defects, distinctive facial features and ectodermal abnormalities. To define the pathogenesis and to develop a potential therapeutic approach in CFC syndrome, we here generated new knockin mice (here Braf(Q241R/+)) expressing the Braf Q241R mutation, which corresponds to the most frequent mutation in CFC syndrome, Q257R. Braf(Q241R/+) mice manifested embryonic/neonatal lethality, showing liver necrosis, edema and craniofacial abnormalities. Histological analysis revealed multiple heart defects, including cardiomegaly, enlarged cardiac valves, ventricular noncompaction and ventricular septal defects. Braf(Q241R/+) embryos also showed massively distended jugular lymphatic sacs and subcutaneous lymphatic vessels, demonstrating lymphatic defects in RASopathy knockin mice for the first time. Prenatal treatment with a MEK inhibitor, PD0325901, rescued the embryonic lethality with amelioration of craniofacial abnormalities and edema in Braf(Q241R/+) embryos. Unexpectedly, one surviving pup was obtained after treatment with a histone 3 demethylase inhibitor, GSK-J4, or NCDM-32b. Combination treatment with PD0325901 and GSK-J4 further increased the rescue from embryonic lethality, ameliorating enlarged cardiac valves. These results suggest that our new Braf knockin mice recapitulate major features of RASopathies and that epigenetic modulation as well as the inhibition of the ERK pathway will be a potential therapeutic strategy for the treatment of CFC syndrome.

  8. Activated Sterol Regulatory Element-Binding Protein-2 Suppresses Hepatocyte Nuclear Factor-4-Mediated Cyp3a11 Expression in Mouse Liver Peer-reviewed

    Shin-ichi Inoue, Kouichi Yoshinari, Mika Sugawara, Yasushi Yamazoe

    MOLECULAR PHARMACOLOGY 79 (1) 148-156 2011/01

    DOI: 10.1124/mol.110.068577  

    ISSN: 0026-895X

  9. Q241R mutation of Braf causes neurological abnormalities in a mouse model of cardio-facio-cutaneous syndrome, independent of developmental malformations. International-journal

    Akira Moriya, Shin-Ichi Inoue, Fumihito Saitow, Moe Keitoku, Noato Suzuki, Etsumi Oike, Eriko Urano, Eiko Matsumoto, Hidenori Suzuki, Yoko Aoki, Hiroshi Ohnishi

    Human molecular genetics 2025/01/08

    DOI: 10.1093/hmg/ddae196  

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    Constitutively active mutants of BRAF cause cardio-facio-cutaneous (CFC) syndrome, characterized by growth and developmental defects, cardiac malformations, facial features, cutaneous manifestations, and mental retardation. An animal model of human CFC syndrome, the systemic BrafQ241R/+ mutant mouse, has been reported to exhibit multiple CFC syndrome-like phenotypes. In this study, we analyzed the effects of Braf mutations on neural function, separately from their effects on developmental processes. To this end, we generated Braf mutant mice expressing BRAFQ241R specifically in mature excitatory neurons (n-BrafQ241R/+). We found no growth retardation or cardiac malformations in n-BrafQ241R/+ mice, indicating normal development. Behavioral analysis revealed that n-BrafQ241R/+ mice exhibited reduced home cage activity and learning disability, which were similar to those of systemic BrafQ241R/+ mice. The active form of ERK was increased in the hippocampus of n-BrafQ241R/+ mice, whereas basal synaptic transmission and synaptic plasticity in hippocampal Schaffer collateral-CA1 synapses seems to be normal. Transcriptome analysis of the hippocampal tissue revealed significant changes in the expression of genes involved in regulation of the RAS/mitogen-activated protein kinase (MAPK) signaling pathway, synaptic function and memory formation. These data suggest that the neuronal dysfunction observed in the systemic CFC mouse model is due to the disruption of homeostasis of the RAS/MAPK signaling pathway by the activated Braf mutant after maturation, rather than abnormal development of the brain. A similar mechanism may be possible in human CFC syndrome.

  10. Mitochondrial biogenesis in white adipose tissue mediated by JMJD1A-PGC-1 axis limits age-related metabolic disease. International-journal Peer-reviewed

    Ryo Ito, Shiyu Xie, Myagmar Tumenjargal, Yuto Sugahara, Chaoran Yang, Hiroki Takahashi, Makoto Arai, Shin-Ichi Inoue, Aoi Uchida, Kenji Nakano, Hyunmi Choi, Ge Yang, Yanan Zhao, Rei Yamaguchi, Hitomi Jin, Hina Sagae, Youichiro Wada, Toshiya Tanaka, Hiroshi Kimura, Tatsuhiko Kodama, Hiroyuki Aburatani, Kazuhisa Takeda, Takeshi Inagaki, Timothy F Osborne, Takeshi Yoneshiro, Yoshihiro Matsumura, Juro Sakai

    iScience 27 (4) 109398-109398 2024/04/19

    DOI: 10.1016/j.isci.2024.109398  

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    Mitochondria play a vital role in non-shivering thermogenesis in both brown and subcutaneous white adipose tissues (BAT and scWAT, respectively). However, specific regulatory mechanisms driving mitochondrial function in these tissues have been unclear. Here we demonstrate that prolonged activation of β-adrenergic signaling induces epigenetic modifications in scWAT, specifically targeting the enhancers for the mitochondria master regulator genes Pgc1a/b. This is mediated at least partially through JMJD1A, a histone demethylase that in response to β-adrenergic signals, facilitates H3K9 demethylation of the Pgc1a/b enhancers, promoting mitochondrial biogenesis and the formation of beige adipocytes. Disruption of demethylation activity of JMJD1A in mice impairs activation of Pgc1a/b driven mitochondrial biogenesis and limits scWAT beiging, contributing to reduced energy expenditure, obesity, insulin resistance, and metabolic disorders. Notably, JMJD1A demethylase activity is not required for Pgc1a/b dependent thermogenic capacity of BAT especially during acute cold stress, emphasizing the importance of scWAT thermogenesis in overall energy metabolism.

  11. Nuclear receptor corepressors non-canonically drive glucocorticoid receptor-dependent activation of hepatic gluconeogenesis. International-journal Peer-reviewed

    Amy K Hauck, Rashid Mehmood, Bryce J Carpenter, Maxwell T Frankfurter, Michael C Tackenberg, Shin-Ichi Inoue, Maria K Krieg, Fathima N Cassim Bawa, Mohit K Midha, Delaine M Zundell, Kirill Batmanov, Mitchell A Lazar

    Nature metabolism 2024/04/15

    DOI: 10.1038/s42255-024-01029-4  

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    Nuclear receptor corepressors (NCoRs) function in multiprotein complexes containing histone deacetylase 3 (HDAC3) to alter transcriptional output primarily through repressive chromatin remodelling at target loci1-5. In the liver, loss of HDAC3 causes a marked hepatosteatosis largely because of de-repression of genes involved in lipid metabolism6,7; however, the individual roles and contribution of other complex members to hepatic and systemic metabolic regulation are unclear. Here we show that adult loss of both NCoR1 and NCoR2 (double knockout (KO)) in hepatocytes phenocopied the hepatomegalic fatty liver phenotype of HDAC3 KO. In addition, double KO livers exhibited a dramatic reduction in glycogen storage and gluconeogenic gene expression that was not observed with hepatic KO of individual NCoRs or HDAC3, resulting in profound fasting hypoglycaemia. This surprising HDAC3-independent activation function of NCoR1 and NCoR2 is due to an unexpected loss of chromatin accessibility on deletion of NCoRs that prevented glucocorticoid receptor binding and stimulatory effect on gluconeogenic genes. These studies reveal an unanticipated, non-canonical activation function of NCoRs that is required for metabolic health.

  12. Balanced control of thermogenesis by nuclear receptor corepressors in brown adipose tissue. International-journal Peer-reviewed

    Hannah J Richter, Amy K Hauck, Kirill Batmanov, Shin-Ichi Inoue, Bethany N So, Mindy Kim, Matthew J Emmett, Ronald N Cohen, Mitchell A Lazar

    Proceedings of the National Academy of Sciences of the United States of America 119 (33) e2205276119 2022/08/16

    DOI: 10.1073/pnas.2205276119  

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    Brown adipose tissue (BAT) is a key thermogenic organ whose expression of uncoupling protein 1 (UCP1) and ability to maintain body temperature in response to acute cold exposure require histone deacetylase 3 (HDAC3). HDAC3 exists in tight association with nuclear receptor corepressors (NCoRs) NCoR1 and NCoR2 (also known as silencing mediator of retinoid and thyroid receptors [SMRT]), but the functions of NCoR1/2 in BAT have not been established. Here we report that as expected, genetic loss of NCoR1/2 in BAT (NCoR1/2 BAT-dKO) leads to loss of HDAC3 activity. In addition, HDAC3 is no longer bound at its physiological genomic sites in the absence of NCoR1/2, leading to a shared deregulation of BAT lipid metabolism between NCoR1/2 BAT-dKO and HDAC3 BAT-KO mice. Despite these commonalities, loss of NCoR1/2 in BAT does not phenocopy the cold sensitivity observed in HDAC3 BAT-KO, nor does loss of either corepressor alone. Instead, BAT lacking NCoR1/2 is inflamed, particularly with respect to the interleukin-17 axis that increases thermogenic capacity by enhancing innervation. Integration of BAT RNA sequencing and chromatin immunoprecipitation sequencing data revealed that NCoR1/2 directly regulate Mmp9, which integrates extracellular matrix remodeling and inflammation. These findings reveal pleiotropic functions of the NCoR/HDAC3 corepressor complex in BAT, such that HDAC3-independent suppression of BAT inflammation counterbalances stimulation of HDAC3 activity in the control of thermogenesis.

  13. Spatiotemporal dynamics of SETD5-containing NCoR-HDAC3 complex determines enhancer activation for adipogenesis. International-journal Peer-reviewed

    Yoshihiro Matsumura, Ryo Ito, Ayumu Yajima, Rei Yamaguchi, Toshiya Tanaka, Takeshi Kawamura, Kenta Magoori, Yohei Abe, Aoi Uchida, Takeshi Yoneshiro, Hiroyuki Hirakawa, Ji Zhang, Makoto Arai, Chaoran Yang, Ge Yang, Hiroki Takahashi, Hitomi Fujihashi, Ryo Nakaki, Shogo Yamamoto, Satoshi Ota, Shuichi Tsutsumi, Shin-Ichi Inoue, Hiroshi Kimura, Youichiro Wada, Tatsuhiko Kodama, Takeshi Inagaki, Timothy F Osborne, Hiroyuki Aburatani, Koichi Node, Juro Sakai

    Nature communications 12 (1) 7045-7045 2021/12/02

    DOI: 10.1038/s41467-021-27321-5  

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    Enhancer activation is essential for cell-type specific gene expression during cellular differentiation, however, how enhancers transition from a hypoacetylated "primed" state to a hyperacetylated-active state is incompletely understood. Here, we show SET domain-containing 5 (SETD5) forms a complex with NCoR-HDAC3 co-repressor that prevents histone acetylation of enhancers for two master adipogenic regulatory genes Cebpa and Pparg early during adipogenesis. The loss of SETD5 from the complex is followed by enhancer hyperacetylation. SETD5 protein levels were transiently increased and rapidly degraded prior to enhancer activation providing a mechanism for the loss of SETD5 during the transition. We show that induction of the CDC20 co-activator of the ubiquitin ligase leads to APC/C mediated degradation of SETD5 during the transition and this operates as a molecular switch that facilitates adipogenesis.

  14. Activating mutations in BRAF disrupt the hypothalamo-pituitary axis leading to hypopituitarism in mice and humans. International-journal Peer-reviewed

    Angelica Gualtieri, Nikolina Kyprianou, Louise C Gregory, Maria Lillina Vignola, James G Nicholson, Rachael Tan, Shin-Ichi Inoue, Valeria Scagliotti, Pedro Casado, James Blackburn, Fernando Abollo-Jimenez, Eugenia Marinelli, Rachael E J Besser, Wolfgang Högler, I Karen Temple, Justin H Davies, Andrey Gagunashvili, Iain C A F Robinson, Sally A Camper, Shannon W Davis, Pedro R Cutillas, Evelien F Gevers, Yoko Aoki, Mehul T Dattani, Carles Gaston-Massuet

    Nature communications 12 (1) 2028-2028 2021/04/01

    DOI: 10.1038/s41467-021-21712-4  

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    Germline mutations in BRAF and other components of the MAPK pathway are associated with the congenital syndromes collectively known as RASopathies. Here, we report the association of Septo-Optic Dysplasia (SOD) including hypopituitarism and Cardio-Facio-Cutaneous (CFC) syndrome in patients harbouring mutations in BRAF. Phosphoproteomic analyses demonstrate that these genetic variants are gain-of-function mutations leading to activation of the MAPK pathway. Activation of the MAPK pathway by conditional expression of the BrafV600E/+ allele, or the knock-in BrafQ241R/+ allele (corresponding to the most frequent human CFC-causing mutation, BRAF p.Q257R), leads to abnormal cell lineage determination and terminal differentiation of hormone-producing cells, causing hypopituitarism. Expression of the BrafV600E/+ allele in embryonic pituitary progenitors leads to an increased expression of cell cycle inhibitors, cell growth arrest and apoptosis, but not tumour formation. Our findings show a critical role of BRAF in hypothalamo-pituitary-axis development both in mouse and human and implicate mutations found in RASopathies as a cause of endocrine deficiencies in humans.

  15. Costello syndrome model mice with a HrasG12S/+ mutation are susceptible to develop house dust mite-induced atopic dermatitis. International-journal Peer-reviewed

    Yu Katata, Shin-Ichi Inoue, Atsuko Asao, Shuhei Kobayashi, Hitoshi Terui, Aya Inoue-Shibui, Taiki Abe, Tetsuya Niihori, Setsuya Aiba, Naoto Ishii, Shigeo Kure, Yoko Aoki

    Cell death & disease 11 (8) 617-617 2020/08/13

    DOI: 10.1038/s41419-020-02845-8  

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    Costello syndrome is an autosomal dominant disorder that is caused by germline HRAS mutations. Patients with Costello syndrome present craniofacial abnormalities, cardiac defects, and cancer predisposition, as well as skin abnormalities, including papillomas, keratosis pilaris, and eczematous dermatitis. However, the mechanisms underlying the dermatological abnormalities remain unclear. Here, we demonstrated that knock-in mice expressing an Hras G12S mutation (HrasG12S/+ mice) are susceptible to develop atopic dermatitis (AD)-like skin lesions, including eczema, pruritus, elevated serum IgE levels, acanthosis, and the infiltration of mast cells, basophils, and type-2 innate lymphoid cells in the dermis, after stimulation with house dust mite allergens (Dermatophagoides farinae, Dfb). Reduced skin barrier function, increased proliferation of phosphorylated ERK (p-ERK)-positive epidermal cells, and increased Th2-type cytokines as well as epithelial cell-derived cytokines, including IL-33, were observed in the skin tissue of HrasG12S/+ mice compared with Hras+/+ mice. Cultured HrasG12S/+ keratinocytes exhibited increased IL-33 expression after Dfb stimulation. PD0325901, an MEK inhibitor, ameliorated AD-like symptoms in HrasG12S/+ mice, showing decreased proliferation of p-ERK-positive epidermal cells and decreased expression of IL-33. Our findings indicate that the epidermis of HrasG12S/+ mice stimulated by Dfb strongly induced IL-33 expression and type-2 innate lymphoid cells, resulting in AD-like skin lesions. These results suggest that the epidermis of HrasG12S/+ mice are prone to development of eczematous dermatitis stimulated with house dust mite allergens.

  16. The sixth international RASopathies symposium: Precision medicine-From promise to practice. International-journal

    Karen W Gripp, Lisa Schill, Lisa Schoyer, Beth Stronach, Anton M Bennett, Susan Blaser, Amanda Brown, Rebecca Burdine, Emma Burkitt-Wright, Pau Castel, Sandra Darilek, Alwyn Dias, Tuesdi Dyer, Michelle Ellis, Gregg Erickson, Bruce D Gelb, Tamar Green, Andrea Gross, Alan Ho, James Lloyd Holder Jr, Shin-Ichi Inoue, Angie C Jelin, Annie Kennedy, Richard Klein, Maria I Kontaridis, Pilar Magoulas, Darryl B McConnell, Frank McCormick, Benjamin G Neel, Carlos E Prada, Katherine A Rauen, Amy Roberts, Pablo Rodriguez-Viciana, Neal Rosen, Gavin Rumbaugh, Anna Sablina, Maja Solman, Marco Tartaglia, Angelica Thomas, William C Timmer, Kartik Venkatachalam, Karin S Walsh, Pamela L Wolters, Jae-Sung Yi, Martin Zenker, Nancy Ratner

    American journal of medical genetics. Part A 182 (3) 597-606 2020/03

    DOI: 10.1002/ajmg.a.61434  

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    The RASopathies are a group of genetic disorders that result from germline pathogenic variants affecting RAS-mitogen activated protein kinase (MAPK) pathway genes. RASopathies share RAS/MAPK pathway dysregulation and share phenotypic manifestations affecting numerous organ systems, causing lifelong and at times life-limiting medical complications. RASopathies may benefit from precision medicine approaches. For this reason, the Sixth International RASopathies Symposium focused on exploring precision medicine. This meeting brought together basic science researchers, clinicians, clinician scientists, patient advocates, and representatives from pharmaceutical companies and the National Institutes of Health. Novel RASopathy genes, variants, and animal models were discussed in the context of medication trials and drug development. Attempts to define and measure meaningful endpoints for treatment trials were discussed, as was drug availability to patients after trial completion.

  17. LZTR1 facilitates polyubiquitination and degradation of RAS-GTPases. International-journal Peer-reviewed

    Taiki Abe, Ikumi Umeki, Shin-Ichiro Kanno, Shin-Ichi Inoue, Tetsuya Niihori, Yoko Aoki

    Cell death and differentiation 27 (3) 1023-1035 2019/07/23

    DOI: 10.1038/s41418-019-0395-5  

    ISSN: 1350-9047

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    Leucine zipper-like transcriptional regulator 1 (LZTR1) encodes a member of the BTB-Kelch superfamily, which interacts with the Cullin3 (CUL3)-based E3 ubiquitin ligase complex. Mutations in LZTR1 have been identified in glioblastoma, schwannomatosis, and Noonan syndrome. However, the functional role of LZTR1 in carcinogenesis or human development is not fully understood. Here, we demonstrate that LZTR1 facilitates the polyubiquitination and degradation of RAS via the ubiquitin-proteasome pathway, leading to the inhibition of the RAS/MAPK signaling. The polyubiquitination and degradation of RAS was also observed in cells expressing MRAS, HRAS, NRAS, and KRAS as well as oncogenic RAS mutants and inhibited the activation of ERK1/2 and cell growth. In vivo ubiquitination assays showed that MRAS-K127 and HRAS-K170 were ubiquitinated by LZTR1 and that the polyubiquitinated-chains contained mainly Ub-K48, K63, and K33-linked chains, suggesting its possible involvement in autophagy. Immunoprecipitation analyses showed the interaction of LZTR1 and RAS-GTPases with autophagy-related proteins, including LC3B and SQSTM1/p62. Co-expression of LZTR1 and RAS increased the expression of lipidated form of LC3B. However, long-term treatment with chloroquine had little effect on RAS protein levels, suggesting that the contribution of autophagy to LZTR1-mediated RAS degradation is minimal. Taken together, these results show that LZTR1 functions as a "RAS killer protein" mainly via the ubiquitin-proteasome pathway regardless of the type of RAS GTPase, controlling downstream signal transduction. Our results also suggest a possible association of LZTR1 and RAS-GTPases with the autophagy. These findings provide clues for the elucidation of the mechanisms of RAS degradation and regulation of the RAS/MAPK signaling cascade.

  18. Germline-Activating RRAS2 Mutations Cause Noonan Syndrome. International-journal Peer-reviewed

    Tetsuya Niihori, Koki Nagai, Atsushi Fujita, Hirofumi Ohashi, Nobuhiko Okamoto, Satoshi Okada, Atsuko Harada, Hirotaka Kihara, Thomas Arbogast, Ryo Funayama, Matsuyuki Shirota, Keiko Nakayama, Taiki Abe, Shin-Ichi Inoue, I-Chun Tsai, Naomichi Matsumoto, Erica E Davis, Nicholas Katsanis, Yoko Aoki

    American journal of human genetics 104 (6) 1233-1240 2019/06/06

    DOI: 10.1016/j.ajhg.2019.04.014  

    ISSN: 0002-9297

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    Noonan syndrome (NS) is characterized by distinctive craniofacial appearance, short stature, and congenital heart disease. Approximately 80% of individuals with NS harbor mutations in genes whose products are involved in the RAS/mitogen-activating protein kinase (MAPK) pathway. However, the underlying genetic causes in nearly 20% of individuals with NS phenotype remain unexplained. Here, we report four de novo RRAS2 variants in three individuals with NS. RRAS2 is a member of the RAS subfamily and is ubiquitously expressed. Three variants, c.70_78dup (p.Gly24_Gly26dup), c.216A>T (p.Gln72His), and c.215A>T (p.Gln72Leu), have been found in cancers; our functional analyses showed that these three changes induced elevated association of RAF1 and that they activated ERK1/2 and ELK1. Notably, prominent activation of ERK1/2 and ELK1 by p.Gln72Leu associates with the severe phenotype of the individual harboring this change. To examine variant pathogenicity in vivo, we generated zebrafish models. Larvae overexpressing c.70_78dup (p.Gly24_Gly26dup) or c.216A>T (p.Gln72His) variants, but not wild-type RRAS2 RNAs, showed craniofacial defects and macrocephaly. The same dose injection of mRNA encoding c.215A>T (p.Gln72Leu) caused severe developmental impairments and low dose overexpression of this variant induced craniofacial defects. In contrast, the RRAS2 c.224T>G (p.Phe75Cys) change, located on the same allele with p.Gln72His in an individual with NS, resulted in no aberrant in vitro or in vivo phenotypes by itself. Together, our findings suggest that activating RRAS2 mutations can cause NS and expand the involvement of RRAS2 proto-oncogene to rare germline disorders.

  19. Delineation of LZTR1 mutation-positive patients with Noonan syndrome and identification of LZTR1 binding to RAF1-PPP1CB complexes. International-journal Peer-reviewed

    Ikumi Umeki, Tetsuya Niihori, Taiki Abe, Shin-Ichiro Kanno, Nobuhiko Okamoto, Seiji Mizuno, Kenji Kurosawa, Keisuke Nagasaki, Makoto Yoshida, Hirofumi Ohashi, Shin-Ichi Inoue, Yoichi Matsubara, Ikuma Fujiwara, Shigeo Kure, Yoko Aoki

    Human genetics 138 (1) 21-35 2019/01

    DOI: 10.1007/s00439-018-1951-7  

    ISSN: 0340-6717

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    RASopathies are a group of developmental disorders caused by mutations in genes that regulate the RAS/MAPK pathway and include Noonan syndrome (NS), Costello syndrome, cardiofaciocutaneous syndrome and other related disorders. Whole exome sequencing studies recently identified LZTR1, PPP1CB and MRAS as new causative genes in RASopathies. However, information on the phenotypes of LZTR1 mutation-positive patients and functional properties of the mutations are limited. To identify variants of LZTR1, PPP1CB, and MRAS, we performed a targeted next-generation sequencing and reexamined previously analyzed exome data in 166 patients with suspected RASopathies. We identified eight LZTR1 variants, including a de novo variant, in seven probands who were suspicious for NS and one known de novo PPP1CB variant in a patient with NS. One of the seven probands had two compound heterozygous LZTR1 variants, suggesting autosomal recessive inheritance. All probands with LZTR1 variants had cardiac defects, including hypertrophic cardiomyopathy and atrial septal defect. Five of the seven probands had short stature or intellectual disabilities. Immunoprecipitation of endogenous LZTR1 followed by western blotting showed that LZTR1 bound to the RAF1-PPP1CB complex. Cells transfected with a small interfering RNA against LZTR1 exhibited decreased levels of RAF1 phosphorylated at Ser259. These are the first results to demonstrate LZTR1 in association with the RAF1-PPP1CB complex as a component of the RAS/MAPK pathway.

  20. Thermophile-fermented compost as a fish feed additive modulates lipid peroxidation and free amino acid contents in the muscle of the carp, Cyprinus carpio Peer-reviewed

    Ryusuke Tanaka, Hirokuni Miyamoto, Shin-ichi Inoue, Kazuhiro Shigeta, Masakazu Kondo, Toshiyuki Ito, Hiroaki Kodama, Hisashi Miyamoto, Teruo Matsushita

    JOURNAL OF BIOSCIENCE AND BIOENGINEERING 121 (5) 530-535 2016/05

    DOI: 10.1016/j.jbiosc.2015.10.006  

    ISSN: 1389-1723

    eISSN: 1347-4421

  21. Spectrum of mutations and genotype-phenotype analysis in Noonan syndrome patients with RIT1 mutations. International-journal Peer-reviewed

    Masako Yaoita, Tetsuya Niihori, Seiji Mizuno, Nobuhiko Okamoto, Shion Hayashi, Atsushi Watanabe, Masato Yokozawa, Hiroshi Suzumura, Akihiko Nakahara, Yusuke Nakano, Tatsunori Hokosaki, Ayumi Ohmori, Hirofumi Sawada, Ohsuke Migita, Aya Mima, Pablo Lapunzina, Fernando Santos-Simarro, Sixto García-Miñaúr, Tsutomu Ogata, Hiroshi Kawame, Kenji Kurosawa, Hirofumi Ohashi, Shin-Ichi Inoue, Yoichi Matsubara, Shigeo Kure, Yoko Aoki

    Human genetics 135 (2) 209-22 2016/02

    DOI: 10.1007/s00439-015-1627-5  

    ISSN: 0340-6717

    More details Close

    RASopathies are autosomal dominant disorders caused by mutations in more than 10 known genes that regulate the RAS/MAPK pathway. Noonan syndrome (NS) is a RASopathy characterized by a distinctive facial appearance, musculoskeletal abnormalities, and congenital heart defects. We have recently identified mutations in RIT1 in patients with NS. To delineate the clinical manifestations in RIT1 mutation-positive patients, we further performed a RIT1 analysis in RASopathy patients and identified 7 RIT1 mutations, including two novel mutations, p.A77S and p.A77T, in 14 of 186 patients. Perinatal abnormalities, including nuchal translucency, fetal hydrops, pleural effusion, or chylothorax and congenital heart defects, are observed in all RIT1 mutation-positive patients. Luciferase assays in NIH 3T3 cells demonstrated that the newly identified RIT1 mutants, including p.A77S and p.A77T, and the previously identified p.F82V, p.T83P, p.Y89H, and p.M90I, enhanced Elk1 transactivation. Genotype-phenotype correlation analyses of previously reported NS patients harboring RIT1, PTPN11, SOS1, RAF1, and KRAS revealed that hypertrophic cardiomyopathy (56 %) was more frequent in patients harboring a RIT1 mutation than in patients harboring PTPN11 (9 %) and SOS1 mutations (10 %). The rates of hypertrophic cardiomyopathy were similar between patients harboring RIT1 mutations and patients harboring RAF1 mutations (75 %). Short stature (52 %) was less prevalent in patients harboring RIT1 mutations than in patients harboring PTPN11 (71 %) and RAF1 (83 %) mutations. These results delineate the clinical manifestations of RIT1 mutation-positive NS patients: high frequencies of hypertrophic cardiomyopathy, atrial septal defects, and pulmonary stenosis; and lower frequencies of ptosis and short stature.

  22. Recent advances in RASopathies. International-journal Peer-reviewed

    Yoko Aoki, Tetsuya Niihori, Shin-ichi Inoue, Yoichi Matsubara

    Journal of human genetics 61 (1) 33-9 2016/01

    DOI: 10.1038/jhg.2015.114  

    ISSN: 1434-5161

    More details Close

    RASopathies or RAS/mitogen-activated protein kinase (MAPK) syndromes are a group of phenotypically overlapping syndromes caused by germline mutations that encode components of the RAS/MAPK signaling pathway. These disorders include neurofibromatosis type I, Legius syndrome, Noonan syndrome, Noonan syndrome with multiple lentigines (formerly called LEOPARD syndrome), Costello syndrome, cardiofaciocutaneous (CFC) syndrome, Noonan-like syndrome, hereditary gingival fibromatosis and capillary malformation-arteriovenous malformation. Recently, novel gene variants, including RIT1, RRAS, RASA2, A2ML1, SOS2 and LZTR1, have been shown to be associated with RASopathies, further expanding the disease entity. Although further analysis will be needed, these findings will help to better elucidate an understanding of the pathogenesis of these disorders and will aid in the development of potential therapeutic approaches. In this review, we summarize the novel genes that have been reported to be associated with RASopathies and highlight the cardiovascular abnormalities that may arise in affected individuals.

  23. Mutations in MECOM, Encoding Oncoprotein EVI1, Cause Radioulnar Synostosis with Amegakaryocytic Thrombocytopenia. International-journal Peer-reviewed

    Tetsuya Niihori, Meri Ouchi-Uchiyama, Yoji Sasahara, Takashi Kaneko, Yoshiko Hashii, Masahiro Irie, Atsushi Sato, Yuka Saito-Nanjo, Ryo Funayama, Takeshi Nagashima, Shin-Ichi Inoue, Keiko Nakayama, Keiichi Ozono, Shigeo Kure, Yoichi Matsubara, Masue Imaizumi, Yoko Aoki

    American journal of human genetics 97 (6) 848-54 2015/12/03

    DOI: 10.1016/j.ajhg.2015.10.010  

    ISSN: 0002-9297

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    Radioulnar synostosis with amegakaryocytic thrombocytopenia (RUSAT) is an inherited bone marrow failure syndrome, characterized by thrombocytopenia and congenital fusion of the radius and ulna. A heterozygous HOXA11 mutation has been identified in two unrelated families as a cause of RUSAT. However, HOXA11 mutations are absent in a number of individuals with RUSAT, which suggests that other genetic loci contribute to RUSAT. In the current study, we performed whole exome sequencing in an individual with RUSAT and her healthy parents and identified a de novo missense mutation in MECOM, encoding EVI1, in the individual with RUSAT. Subsequent analysis of MECOM in two other individuals with RUSAT revealed two additional missense mutations. These three mutations were clustered within the 8(th) zinc finger motif of the C-terminal zinc finger domain of EVI1. Chromatin immunoprecipitation and qPCR assays of the regions harboring the ETS-like motif that is known as an EVI1 binding site showed a reduction in immunoprecipitated DNA for two EVI1 mutants compared with wild-type EVI1. Furthermore, reporter assays showed that MECOM mutations led to alterations in both AP-1- and TGF-β-mediated transcriptional responses. These functional assays suggest that transcriptional dysregulation by mutant EVI1 could be associated with the development of RUSAT. We report missense mutations in MECOM resulting in a Mendelian disorder that provide compelling evidence for the critical role of EVI1 in normal hematopoiesis and in the development of forelimbs and fingers in humans.

  24. Gain-of-function mutations in RIT1 cause Noonan syndrome, a RAS/MAPK pathway syndrome. International-journal Peer-reviewed

    Yoko Aoki, Tetsuya Niihori, Toshihiro Banjo, Nobuhiko Okamoto, Seiji Mizuno, Kenji Kurosawa, Tsutomu Ogata, Fumio Takada, Michihiro Yano, Toru Ando, Tadataka Hoshika, Christopher Barnett, Hirofumi Ohashi, Hiroshi Kawame, Tomonobu Hasegawa, Takahiro Okutani, Tatsuo Nagashima, Satoshi Hasegawa, Ryo Funayama, Takeshi Nagashima, Keiko Nakayama, Shin-Ichi Inoue, Yusuke Watanabe, Toshihiko Ogura, Yoichi Matsubara

    American journal of human genetics 93 (1) 173-80 2013/07/11

    DOI: 10.1016/j.ajhg.2013.05.021  

    ISSN: 0002-9297

    More details Close

    RAS GTPases mediate a wide variety of cellular functions, including cell proliferation, survival, and differentiation. Recent studies have revealed that germline mutations and mosaicism for classical RAS mutations, including those in HRAS, KRAS, and NRAS, cause a wide spectrum of genetic disorders. These include Noonan syndrome and related disorders (RAS/mitogen-activated protein kinase [RAS/MAPK] pathway syndromes, or RASopathies), nevus sebaceous, and Schimmelpenning syndrome. In the present study, we identified a total of nine missense, nonsynonymous mutations in RIT1, encoding a member of the RAS subfamily, in 17 of 180 individuals (9%) with Noonan syndrome or a related condition but with no detectable mutations in known Noonan-related genes. Clinical manifestations in the RIT1-mutation-positive individuals are consistent with those of Noonan syndrome, which is characterized by distinctive facial features, short stature, and congenital heart defects. Seventy percent of mutation-positive individuals presented with hypertrophic cardiomyopathy; this frequency is high relative to the overall 20% incidence in individuals with Noonan syndrome. Luciferase assays in NIH 3T3 cells showed that five RIT1 alterations identified in children with Noonan syndrome enhanced ELK1 transactivation. The introduction of mRNAs of mutant RIT1 into 1-cell-stage zebrafish embryos was found to result in a significant increase of embryos with craniofacial abnormalities, incomplete looping, a hypoplastic chamber in the heart, and an elongated yolk sac. These results demonstrate that gain-of-function mutations in RIT1 cause Noonan syndrome and show a similar biological effect to mutations in other RASopathy-related genes.

  25. An Assay Method for Determining the Total Lipid Content of Fish Meat Using a 2-Thiobarbituric Acid Reaction Peer-reviewed

    Teruo Matsushita, Shin-ichi Inoue, Ryusuke Tanaka

    JOURNAL OF THE AMERICAN OIL CHEMISTS SOCIETY 87 (9) 963-972 2010/09

    DOI: 10.1007/s11746-010-1578-x  

    ISSN: 0003-021X

  26. Effect of capsaicin, an active ingredient in red peppers, on absorption rates of taurine, ornithine and glycine into the in situ loop of rat small intestines Peer-reviewed

    Teruo Matsushita, Shin-ichi Inoue, Ryusuke Tanaka

    JOURNAL OF PHARMACOLOGICAL SCIENCES 112 253P-253P 2010

    ISSN: 1347-8613

  27. Possible involvement of cyclic AMP as an inhibitory regulator in thrombocyte aggregation induced by collagen in carp Cyprinus carpio Peer-reviewed

    Teruo Matsushita, Shin-Ichi Inoue, Ryusuke Tanaka, Masakazu Kondo, Yukinori Takahashi, Mitsuko Miyamoto, Hajimu Kurumatani, Toshio Nakaki

    FISHERIES SCIENCE 74 (1) 214-216 2008/02

    DOI: 10.1111/j.1444-2906.2007.01514.x  

    ISSN: 0919-9268

  28. Possible involvement of prostaglandin(s) and cAMP, not NO/cGMP, in the mechanism of carp thrombocyte aggregation Peer-reviewed

    Matsushita Teruo, Inoue Shinichi, Tanaka Ryusuke, Kondo Masakazu, Takahashi Yukinori, Miyamoto Mitsuko, Kurumaiani Hajimu, Nakaki Toshio

    Journal of National Fisheries University 56 91-98 2007/11

Show all ︎Show first 5

Misc. 49

  1. Costello症候群モデルマウスにおけるアレルゲンによる皮膚炎の誘発と病態メカニズムの解明

    堅田 有宇, 井上 晋一, 浅尾 敦子, 小林 周平, 照井 仁, 井上 彩, 阿部 太紀, 新堀 哲也, 相場 節也, 石井 直人, 呉 繁夫, 青木 洋子

    日本小児科学会雑誌 125 (2) 292-292 2021/02

    Publisher: (公社)日本小児科学会

    ISSN: 0001-6543

  2. がん原遺伝子産物RASの恒常性維持機構の解明

    阿部 太紀, 梅木 郁美, 菅野 新一郎, 井上 晋一, 新堀 哲也, 青木 洋子

    日本生化学会大会プログラム・講演要旨集 93回 [P-190] 2020/09

    Publisher: (公社)日本生化学会

  3. 成熟神経細胞特異的RAS/MAPK症候群モデル動物の表現型解析

    森谷 晃, 井上 晋一, 青木 洋子, 大西 浩史

    The Kitakanto Medical Journal 70 (3) 296-296 2020/08

    Publisher: 北関東医学会

    ISSN: 1343-2826

    eISSN: 1881-1191

  4. RASサブファミリータンパク質RIT1ノックインマウスにおける心疾患病態解析

    井上 晋一, 高原 真吾, 宮川 幸子[富田], 松浦 勝久, 中嶌 八隅, 新堀 哲也, 松原 洋一, 齋木 佳克, 青木 洋子

    日本生化学会大会プログラム・講演要旨集 92回 [1T02a-01] 2019/09

    Publisher: (公社)日本生化学会

  5. RASサブファミリータンパク質RIT1ノックインマウスにおける心疾患病態解析

    井上 晋一, 高原 真吾, 宮川 幸子[富田], 松浦 勝久, 中嶌 八隅, 新堀 哲也, 松原 洋一, 齋木 佳克, 青木 洋子

    日本生化学会大会プログラム・講演要旨集 92回 [1T02a-01] 2019/09

    Publisher: (公社)日本生化学会

  6. 先天奇形症候群の前脳神経細胞特異的な病態モデル動物の作製

    森谷 晃, 井上 晋一, 青木 洋子, 大西 浩史

    The Kitakanto Medical Journal 69 (3) 299-299 2019/08

    Publisher: 北関東医学会

    ISSN: 1343-2826

    eISSN: 1881-1191

  7. Noonan症候群類縁疾患の網羅的解析とLZTR1の機能解明

    青木 洋子, 梅木 郁美, 阿部 太紀, 岡本 伸彦, 水野 誠司, 黒澤 健司, 長崎 啓祐, 吉田 真, 大橋 博文, 井上 晋一, 松原 洋一, 藤原 幾磨, 呉 繁夫, 新堀 哲也

    日本遺伝カウンセリング学会誌 40 (2) 85-85 2019/07

    Publisher: (一社)日本遺伝カウンセリング学会

    ISSN: 1347-9628

  8. Noonan症候群類縁疾患の網羅的解析とLZTR1の機能解明

    青木 洋子, 梅木 郁美, 阿部 太紀, 岡本 伸彦, 水野 誠司, 黒澤 健司, 長崎 啓祐, 吉田 真, 大橋 博文, 井上 晋一, 松原 洋一, 藤原 幾磨, 呉 繁夫, 新堀 哲也

    日本遺伝カウンセリング学会誌 40 (2) 85-85 2019/07

    Publisher: 日本遺伝カウンセリング学会

    ISSN: 1347-9628

  9. Noonan症候群の原因遺伝子LZTR1 臨床的特徴と結合タンパクRAF1/PPP1CBの同定

    梅木 郁美, 新堀 哲也, 阿部 太紀, 長崎 啓祐, 井上 晋一, 藤原 幾磨, 呉 繁夫, 青木 洋子

    日本内分泌学会雑誌 95 (1) 382-382 2019/04

    Publisher: (一社)日本内分泌学会

    ISSN: 0029-0661

    eISSN: 2186-506X

  10. Noonan症候群の原因遺伝子LZTR1 臨床的特徴と結合タンパクRAF1/PPP1CBの同定

    梅木 郁美, 新堀 哲也, 阿部 太紀, 長崎 啓祐, 井上 晋一, 藤原 幾磨, 呉 繁夫, 青木 洋子

    日本内分泌学会雑誌 95 (1) 382-382 2019/04

    Publisher: (一社)日本内分泌学会

    ISSN: 0029-0661

  11. 新規コステロ症候群モデルマウスを用いたエネルギー代謝変化の病態解明

    大場 大樹, 中嶌 八隅, 新堀 哲也, 山口 清次, 松原 洋一, 青木 洋子, 井上 晋一, 宮川 幸子

    日本小児科学会雑誌 123 (2) 284-284 2019/02

    Publisher: (公社)日本小児科学会

    ISSN: 0001-6543

  12. 新規コステロ症候群モデルマウスを用いたエネルギー代謝変化の病態解明

    大場 大樹, 中嶌 八隅, 新堀 哲也, 山口 清次, 松原 洋一, 青木 洋子, 井上 晋一, 宮川 幸子

    日本小児科学会雑誌 123 (2) 284-284 2019/02

    Publisher: (公社)日本小児科学会

    ISSN: 0001-6543

  13. Noonan症候群原因遺伝子産物LZTR1によるRAS分解促進機構の解明

    阿部太紀, 梅木郁美, 菅野新一郎, 井上晋一, 新堀哲也, 青木洋子

    日本分子生物学会年会プログラム・要旨集(Web) 42nd 2019

  14. Hras G12Sノックインマウスは食餌誘導性肥満の抑制および肝エネルギー代謝異常を示す

    井上 晋一, 大場 大樹, 宮川 幸子, 田, 中嶌 八隅, 新堀 哲也, 山口 清次, 松原 洋一, 青木 洋子

    日本生化学会大会プログラム・講演要旨集 91回 [2T14a-10(2P 2018/09

    Publisher: (公社)日本生化学会

  15. RASopathiesに対する網羅的遺伝子解析

    梅木 郁美, 新堀 哲也, 岡本 伸彦, 水野 誠司, 黒沢 健司, 長崎 啓祐, 吉田 真, 松原 洋一, 藤原 幾磨, 呉 繁夫, 青木 洋子, 阿部 太紀, 井上 晋一

    日本小児科学会雑誌 122 (2) 229-229 2018/02

    Publisher: (公社)日本小児科学会

    ISSN: 0001-6543

  16. Mouse model of Costello syndrome: impaired hepatic energy homeostasis and resistance to high-fat diet induced obesity in mice with a heterozygous Hras G12S mutation

    Daiju Oba, Shin-ichi Inoue, Sachiko Miyagawa-Tomita, Yasumi Nakashima, Tetsuya Niihori, Seiji Yamaguchi, Yoichi Matsubara, Yoko Aoki

    American Society of Human Genetics 2018

  17. Mouse model of Costello syndrome are resistant to high fat diet-induced obesity and exhibit impaired energy homeostasis

    日本人類遺伝学会第63回大会 2018

  18. がん原遺伝子Brafの活性化はマウス食道の拡張と前胃上皮の過増殖をもたらす

    井上 晋一, 高原 真吾, 吉川 雄朗, 新堀 哲也, 谷内 一彦, 松原 洋一, 青木 洋子

    生命科学系学会合同年次大会 2017年度 [1LBA-090] 2017/12

    Publisher: 生命科学系学会合同年次大会運営事務局

  19. MECOM(EVI)遺伝子変異は無巨核球性血小板減少症を伴う橈尺骨癒合症を引き起こす

    新堀 哲也, 内山 芽里, 笹原 洋二, 入江 正寛, 佐藤 篤, 南條 由佳, 呉 繁夫, 松原 洋一, 今泉 益栄, 青木 洋子, 金子 隆, 橋井 佳子, 舟山 亮, 長嶋 剛史, 井上 晋一, 中山 啓子, 大薗 恵一

    日本小児科学会雑誌 121 (2) 300-300 2017/02

    Publisher: (公社)日本小児科学会

    ISSN: 0001-6543

  20. CFC症候群の成獣型モデルマウスの作製と解析

    守谷充司, 守谷充司, 井上晋一, 大場大樹, 宮川(富田)幸子, 中嶌八隅, 新堀哲也, 呉繁夫, 松原洋一, 青木洋子

    日本小児科学会雑誌 121 (2) 301 2017/02/01

    ISSN: 0001-6543

  21. 先天異常症候群の新しい展開 III.日本が貢献した先天異常症候群 RASopathies:Noonan症候群類縁疾患

    青木洋子, 新堀哲也, 井上晋一, 松原洋一

    小児科診療 79 (12) 1777‐1781 2016/12/01

    ISSN: 0386-9806

  22. RASopathies : Noonan症候群類縁疾患 (特集 先天異常症候群の新しい展開) -- (日本が貢献した先天異常症候群)

    青木 洋子, 新堀 哲也, 井上 晋一, 松原 洋一

    小児科診療 79 (12) 1777-1781 2016/12

    Publisher: 診断と治療社

    ISSN: 0386-9806

  23. EVI1遺伝子変異が引き起こす無巨核球性血小板減少症を伴う橈骨尺骨融合症(遺伝性骨髄不全症候群の一型)

    今泉益栄, 新堀哲也, 内山芽里, 内山芽里, 笹原洋二, 金子隆, 橋井佳子, 入江正寛, 入江正寛, 佐藤篤, 南條由佳, 船山亮, 長嶋剛史, 井上晋一, 中山啓子, 大薗恵一, 呉繁夫, 松原洋一, 青木洋子

    日本小児整形外科学会雑誌 25 (3) S23 2016/11/01

    ISSN: 0917-6950

  24. ヌーナン症候群と類縁疾患の遺伝子診断体制の確立とその病態解明

    青木洋子, 梅木郁美, 大場大樹, 西山亜由美, 高原真吾, 矢尾板全子, 井上晋一, 松原洋一, 新堀哲也

    日本遺伝子診療学会大会プログラム・抄録集 23rd 77 2016/10/06

  25. ヌーナン症候群類縁疾患における遺伝子診断の現況

    矢尾板全子, 矢尾板全子, 大場大樹, 梅木郁美, 井上晋一, 呉繁夫, 新堀哲也, 青木洋子

    日本小児科学会雑誌 120 (10) 1552‐1553 2016/10/01

    ISSN: 0001-6543

  26. ヌーナン症候群と類縁疾患の遺伝子診断体制の確立とその病態解明

    青木洋子, 矢尾板全子, 梅木郁美, 大場大樹, 井上晋一, 松原洋一, 新堀哲也

    日本小児科学会雑誌 120 (2) 211 2016/02/01

    ISSN: 0001-6543

  27. ヌーナン症候群類縁疾患におけるRIT1遺伝子解析と臨床的特徴の検討

    矢尾板全子, 矢尾板全子, 大場大樹, 梅木郁美, 水野誠司, 岡本伸彦, 井上晋一, 松原洋一, 呉繁矢, 新堀哲也, 青木洋子

    日本小児科学会雑誌 120 (2) 277 2016/02/01

    ISSN: 0001-6543

  28. がん原遺伝子BRAFの機能獲得性変異は先天性異常を引き起こす

    井上 晋一, 守谷 充司, 宮川 幸子, 田, 中嶌 八隅, 大場 大樹, 新堀 哲也, 橋 美里, 大西 浩史, 呉 繁夫, 松原 洋一, 青木 洋子

    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 [2LBA092]-[2LBA092] 2015/12

    Publisher: (公社)日本生化学会

  29. Cardio‐facio‐cutaneous症候群のモデルマウス作製とその病態解析

    青木洋子, 井上晋一, 守谷充司, 大場大樹, 新堀哲也, 呉繁夫, 松原洋一

    日本小児科学会雑誌 119 (2) 276 2015/02/01

    ISSN: 0001-6543

  30. RASopathiesの新規原因検索とモデルマウス作製

    青木洋子, 井上晋一, 新堀哲也, 松原洋一

    日本生化学会大会(Web) 88th 1W5-P-4 (WEB ONLY) 2015

  31. 当分野におけるヌーナン症候群及び類縁疾患の遺伝子解析の現状

    新堀哲也, 矢尾板全子, 守谷充司, 井泉瑠美子, 大場大樹, 西山亜由美, 井上晋一, 呉繁夫, 松原洋一, 青木洋子

    日本小児科学会雑誌 118 (5) 876-877 2014/05/01

    ISSN: 0001-6543

  32. ヌーナン症候群の新規原因遺伝子RIT1の同定

    青木洋子, 新堀哲也, 岡本伸彦, 水野誠司, 黒澤健司, 緒方勤, 井上晋一, 松原洋一

    日本小児科学会雑誌 118 (2) 209-209 2014/02

    Publisher: (公社)日本小児科学会

    ISSN: 0001-6543

  33. 次世代シークエンサーを用いたヌーナン症候群の遺伝子診断と新規原因遺伝子検索

    青木洋子, 新堀哲也, 井上晋一, 松原洋一

    日本小児科学会雑誌 117 (2) 314 2013/02/01

    ISSN: 0001-6543

  34. エクソームシークエンスによるNoonan症候群新規原因遺伝子RIT1の同定

    新堀哲也, 青木洋子, 番匠俊博, 岡本伸彦, 水野誠司, 黒澤健司, 緒方勤, 高田史男, 長谷川奉延, 舟山亮, 長嶋剛史, 中山啓子, 井上晋一, 渡邊裕介, 小椋利彦, 松原洋一

    日本人類遺伝学会大会プログラム・抄録集 58th 119 2013

  35. SREBP‐2を介したCYP3A4遺伝子の転写抑制機構の解明

    櫻井香織, 井上晋一, 渡邊圭祐, 山添康, 吉成浩一

    日本薬学会東北支部大会講演要旨集 52nd 69 2013

  36. Effect of capsaicin, an active ingredient of red peppers, on absorption rates of taurine, ornithine and glycine into an in situ loop of rat small intestine

    田中 竜介, 井上 晋一, 杉浦 義正

    Medicine and biology 155 (10) 682-690 2011/10

    Publisher: 緒方医学化学研究所医学生物学速報会

    ISSN: 0019-1604

  37. コレステロール欠乏飼料を摂取したマウス肝におけるCyp3a11遺伝子発現の低下とその抑制機構

    吉成浩一, 井上晋一, 菅原実香, 山添康

    J Toxicol Sci 36 (Supplement) S193 2011/06

    ISSN: 0388-1350

  38. 活性型SREBP‐2によるマウス肝Cyp3a11発現抑制

    吉成浩一, 井上晋一, 菅原実香, 山添康

    日本薬学会年会要旨集 131st (3) 173 2011/03/05

    ISSN: 0918-9823

  39. Down-regulation of Cyp3a11 expression in the liver of mice fed cholesterol-free diet.

    Yoshinari Kouichi, Inoue Shin-ichi, Sugawara Mika, Yamazoe Yasushi

    Annual Meeting of the Japanese Society of Toxicology 38 (0) 20141-20141 2011

    Publisher: The Japanese Society of Toxicology

    More details Close

    薬物代謝酵素の発現レベルは栄養状態や生理状態の変化に伴い変動する。最近当研究室で、一般精製飼料(D12450B、Research Diets)を与えたマウスでは、飼育繁殖用一般飼料(CE-2、日本クレア)を与えたマウスに比べて、肝のCyp3a11レベルが低いこと、さらに、精製飼料に2%コレステロールを添加するとCyp3a11レベルが回復することを見出した。これらのことから、飼料中のコレステロール含量と肝Cyp3a11レベルの関連が示唆された。本研究では、この分子機構について、細胞内コレステロールレベルの低下により活性化する転写因子であるSREBP-2に着目して解析した。CE-2、精製飼料または2%コレステロール添加精製飼料を与えたマウスの肝でのSREBP-2標的遺伝子(<I>Ldlr</I>、<I>Hmgcs1</I>、<I>Sqle</I>、<I>Srebf2</I>)のmRNAレベルを調べたところ、精製飼料摂取群で他の2群に比べてこれらmRNAレベルは高かった。レポーターアッセイにおいて、SREBP-2は<I>Cyp3a11</I>プロモーターのHNF-4α結合モチーフ(以下DR1<SUB>3a</SUB>)を含む-1581から-1524 の領域を介して<I>Cyp3a11</I>の転写を抑制した。ゲルシフトアッセイでHNF-4αはDR1<SUB>3a</SUB>に結合したが、SREBP-2は結合しなかった。GSTプルダウンアッセイでは、SREBP-2はHNF-4αとそのコアクチベーターであるPGC-1αと直接結合したが、DR1<SUB>3a</SUB>に結合したHNF-4αには、SREBP-2は結合しなかった。さらに、レポーターアッセイにおいて、DR1<SUB>3a</SUB>への変異導入やPGC-1αの過剰発現を行なうと、SREBP-2依存的な<I>Cyp3a11</I>転写抑制は認められなくなった。ChIPアッセイにより、マウス肝のゲノム上のDR1<SUB>3a</SUB>へのHNF-4αとPGC-1αの結合量を調べたところ、精製飼料を与えた場合には、CE-2を与えた場合に比べてPGC-1αの結合量が低下していたが、HNF-4αの結合には両群間で差は認められなかった。以上の結果より、コレステロール摂取量の低下は、マウス肝でSREBP-2を活性化し、HNF-4αとPGC-1αを介した<I>Cyp3a11</I>の転写を抑制することが示唆され、飼料の違いにより薬物の代謝パターンが異なる可能性が示された。

  40. NActivated Sterol Regulatory Element-Binding Protein-2 Suppresses Hapatocyte Nuclear Factor-4-Mediated Cyp3a11 Expression in Mouse Liver

    Shin-ichi Inoue, Kouichi Yoshinari, Mika Sugawara, Yasushi Yamazoe

    DRUG METABOLISM REVIEWS 42 154-155 2010/08

    ISSN: 0360-2532

  41. ACTIVATED STEROL REGULATORY ELEMENT-BINDING PROTEIN-2 (SREBP-2) SUPPRESSES HAPATOCYTE NUCLEAR FACTOR-4-MEDIATED CYP3A11 GENE EXPRESSION IN MOUSE LIVER

    Inoue Shin-ichi, Yoshinari Kouichi, Sugawara Mika, Yamazoe Yasushi

    Abstracts of JSSX meeting 25 (0) 88-88 2010

    Publisher: The Japanese Society for the Study of Xenobiotics

    DOI: 10.14896/jssxmeeting.25.0.88.0  

  42. TBA反応を利用した魚肉脂質含量の迅速・簡便な新しい測定法

    松下映夫, 井上晋一, 松田知英, 石川和行, 田中竜介

    日本水産学会大会講演要旨集 2009 112 2009/03/27

  43. CHARACTERISTICS OF SREBP-2-MEDIATED DOWN REGULATION OF CYP3A11 GENE EXPRESSION

    Inoue Shinichi, Yoshinari Kouichi, Yamazoe Yasushi

    Abstracts of JSSX meeting 24 (0) 193-193 2009

    Publisher: The Japanese Society for the Study of Xenobiotics

    DOI: 10.14896/jssxmeeting.24.0.193.0  

  44. 病気魚の肝臓におけるアルデヒド類とヒドロキシ脂質との関連について

    重田一弘, 久原礼, 下脇有里子, 井上晋一, 三宅謙嗣, 田中竜介, 松下映夫

    日本水産学会大会講演要旨集 2008 84 2008/03/27

  45. 1,3‐cyclohexanedioneによる魚肉中のアルデヒド類の分析

    田中竜介, 川西亜由美, 中村暢介, 井上晋一, 松下映夫

    日本水産学会大会講演要旨集 2007 147 2007/03/28

  46. 1,3‐cyclohexanedioneによる魚肉中のアルデヒド類の分析

    田中竜介, 杉野直樹, 井上晋一, 松下映夫

    日本水産学会大会講演要旨集 2006 203 2006/03/30

  47. ラットの血液凝固系および血小板凝集に対するイワシ油および綿実油の繰り返し経口投与の効果

    松下映夫, 中道雄司, 井上晋一, 田中竜介

    日本水産学会大会講演要旨集 2006 202 2006/03/30

  48. Effect of Sodium Nitroprusside on Carp Thrombocyte Aggregation

    松下映夫, 井上晋一, 田中竜介, 近藤昌和, 高橋幸則

    水産大学校研究報告 54 (3) 77-81 2006/03/24

    Publisher: 水産大学校

    ISSN: 0370-9361

  49. Effects of Repeated Oral Administration of Sardine Oil and Cotton Seed Oil on Blood Coagulation and Platelet Aggregation in Rats

    松下映夫, 井上晋一, 田中竜介

    水産大学校研究報告 54 (2) 43-53 2006/03/20

    Publisher: 水産大学校

    ISSN: 0370-9361

Show all ︎Show first 5

Books and Other Publications 1

  1. ヌーナン症候群のマネジメント

    ヌーナン症候群のマネジメント, 編集委員会, 緒方 勤

    メディカルレビュー社 2017

    ISBN: 9784779220029

Presentations 42

  1. Metabolic Effects in Mouse Model of Costello syndrome International-presentation Invited

    Shin-ichi Inoue, Daiju Oba, Sachiko Miyagawa-Tomita, Yasumi Nakashima, Tetsuya Niihori, Seiji Yamaguchi, Yoichi Matsubara, Yoko Aoki

    6th International RASopathies Symposium 2019/08

  2. C-type natriuretic peptide improves growth retardation in a mouse model of cardio-facio-cutaneous syndrome associated with a Braf mutation International-presentation

    Shin-ichi Inoue, Naomi Morozumi, Kazunori Yoshikiyo, Hiroaki Maeda, Yoko Aoki

    European Human Genetics Conference Gothenburg 2019/06

  3. Pathogenesis and treatment of esophageal dilation and gastric epithelial hyperplasia in a mouse model for cardio-facio-cutaneous syndrome International-presentation

    Shin-ichi Inoue, Shingo Takahara, Takeo Yoshikawa, Tetsuya Niihori, Kazuhiko Yanai, Yoichi Matsubara, Yoko Aoki

    European Human Genetics Conference Milan 2018/06

  4. The basis of nutritional and metabolic problems in RASopathies: Lessons from mouse models International-presentation Invited

    Shin-ichi Inoue, Yoko Aoki

    7th International Meeting on Rare Disorders of the RAS-MAPK pathway. A workshop preceding the ESHG conference 2018/06

  5. Adult mice expressing a Braf Q241R mutation on an ICR/CD-1 background exhibit a cardio-facio-cutaneous syndrome phenotype International-presentation

    Shin-ichi Inoue, Mitsuji Moriya, Sachiko Miyagawa-Tomita, Yasumi Nakashima, Daiju Oba, Tetsuya Niihori, Misato Hashi, Hiroshi Ohnishi, Shigeo Kure, Yoichi Matsubara, Yoko Aoki

    13th international congress of human genetics 2016

  6. BRAF knock-in mice provide a pathogenetic mechanism of developmental defects and a therapeutic approach in RASopathies (Award, Oral) International-presentation

    Shin-ichi Inoue, Mitsuji Moriya, Tetsuya Niihori, Daiju Oba, Yoichi Matsubara, Yoko Aoki

    4th international RASopathies symposium 2015

  7. Activated Sterol Regulatory Element-Binding Protein-2 Suppresses Hepatocyte Nuclear Factor-4-Mediated Cyp3a11 Expression in Mouse Liver International-presentation

    9 th International Society for the Study of Xenobiotics Meeting 2010

  8. C/EBPβは褐色脂肪組織において寒冷環境記憶因子として働く

    井上晋一, Mitchell A. Lazar

    第98回日本生化学会大会 2025/11/05

  9. C/EBPβは褐色脂肪組織において寒冷環境記憶因子として働く

    井上晋一, Mitchell A. Lazar

    第98回日本生化学会大会 2025/11/03

  10. 褐色脂肪組織における寒冷環境記憶

    井上晋一, Mitchell A. Lazar

    第46回日本肥満学会/第43回日本肥満症治療学会学術集会 2025/10/05

  11. 短期的な寒冷刺激は褐色脂肪組織において持続的なエピゲノム記憶を定着させる

    井上晋一, Mitchell A. Lazar

    第91回日本生化学会東北支部例会・シンポジウム 2025/06/24

  12. Short-term cold exposure induces persistent epigenomic memory in brown fat

    Shin-ichi Inoue

    2025/04/25

  13. 熱産生の生理学 -褐色脂肪細胞が寒冷環境記憶を持つことを発見- Invited

    井上晋一

    フィラデルフィア日本人勉強会 2024/12/21

  14. Short-term cold exposure induces persistent epigenomic memory in brown fat

    Shin-ichi Inoue, Matthew J. Emme, Hee-Woong Lim, Mohit Midha, Hannah J. Richter, Isaac J. Celwyn, Rashid Mehmood, Maria Chondronikola, Samuel Klein, Amy K. Hauck, Mitchell A. Lazar

    2024 Epigenetics Institute Retreat, Pennsylvania 2024/10/29

  15. Short-term cold exposure induces persistent epigenomic memory in brown fat

    Shin-ichi Inoue, Matthew J. Emme, Hee-Woong Lim, Mohit Midha, Hannah J. Richter, Isaac J. Celwyn, Rashid Mehmood, Maria Chondronikola, Samuel Klein, Amy K. Hauck, Mitchell A. Lazar

    2024 Department of Medicine Research Day 2024/06/11

  16. Short-term mild cold exposure promotes HDAC3-independent adaptive thermogenesis in brown adipose tissue

    Shin-ichi Inoue, Matthew J. Emme, Hee-Woong Lim, Hannah J. Richter, Kyoung-Jae Won, Rashid Mehmood, Amy K. Hauck, Mitchell A. Lazar

    2023 Department of Medicine Research Day 2023/06/13

  17. Short-term mild cold exposure promotes HDAC3-independent adaptive thermogenesis in brown adipose tissue

    Shin-ichi Inoue, Matthew J. Emme, Hee-Woong Lim, Hannah J. Richter, Kyoung-Jae Won, Rashid Mehmood, Amy K. Hauck, Mitchell A. Lazar

    Kroc Lecture 2023 2023/03/14

  18. C-type natriuretic peptide provides a new approach for the treatment of short stature in cardio-facio-cutaneous syndrome

    Shin-ichi Inoue, Naomi Morozumi, Kazunori Yoshikiyo, Hiroaki Maeda, Yoko Aoki

    2019/11/07

  19. Rit1 A57G knock-in mice recapitulate features of Noonan syndrome

    Shin-ichi Inoue, Shingo Takahara, Sachiko Miyagawa-Tomita, Katsuhisa Matsuura, Yasumi Nakashima, Tetsuya Niihori, Yoichi Matsubara, Yoshikatsu Saiki, Yoko Aoki

    2019/11/09

  20. RASサブファミリータンパク質RIT1ノックインマウスにおける心疾患病態解析

    井上晋一, 高原真吾, 宮川-富田幸子, 松浦勝久, 中嶌八隅, 新堀哲也, 松原洋一, 齋木佳克, 青木洋子

    第92回日本生化学会大会 2019/09

  21. RASopathiesの病態解明と治療法開発 ―臨床応用に向けて― Invited

    井上晋一

    第4回 東北大学 Networking Evening 2019/07/04

  22. New Noonan syndrome model mice with RIT1 mutation exhibit cardiac hypertrophy and susceptibility to β-adrenergic stimulation-induced cardiac fibrosis

    2019

  23. Gastrointestinal abnormalities and growth retardation in a mouse model for cardio-facio-cutaneous syndrome

    Shin-ichi Inoue

    2018/10

  24. Hras G12Sノックインマウスは食餌誘導性肥満の抑制および肝エネルギー代謝異常を示す

    井上晋一, 大場大樹, 宮川-富田幸子, 中嶌八隅, 新堀哲也, 山口清次, 松原洋一, 青木洋子

    第91回日本生化学会大会 2018/09

  25. Mice with an Oncogenic HRAS Mutation are Resistant to High-Fat Diet-Induced Obesity and Exhibit Impaired Hepatic Energy Homeostasis

    Shin-ichi Inoue

    2018

  26. Cardio-facio-cutaneous症候群モデルマウスを用いた疾患・病態解明と治療法研究

    井上晋一, 守谷充司, 宮川-富田幸子, 大場大樹, 新堀哲也, 中嶌八隅, 橋美里, 大西浩史, 呉繁夫, 松原洋一, 青木洋子

    第6回Multidisciplinary meeting on atherosclerosis 2017

  27. がん原遺伝子Brafの活性化はマウス食道の拡張と前胃上皮の過増殖をもたらす

    井上晋一, 高原真吾, 高原真吾, 吉川雄朗, 新堀哲也, 谷内一彦, 松原洋一, 松原洋一, 青木洋子

    日本生化学会大会(Web) 2017

  28. BRAF knock-in mice provide a pathogenetic mechanism of developmental defects and a therapeutic approach in RASopathies (Poster) International-presentation

    Shin-ichi Inoue, Mitsuji Moriya, Tetsuya Niihori, Daiju Oba, Yoichi Matsubara, Yoko Aoki

    4th international RASopathies symposium 2015

  29. RASopathiesモデルマウスの作製と治療法開発

    井上晋一, 守谷充司, 宮川-富田幸子, 大場大樹, 新堀哲也, 中嶌八隅, 橋美里, 大西浩史, 呉繁夫, 松原洋一, 青木洋子

    第4回Multidisciplinary meeting on atherosclerosis 2015

  30. Cardio‐facio‐cutaneous症候群モデルマウスを用いた治療法研究

    井上晋一, 守谷充司, 渡邉裕介, 宮川(富田)幸子, 宮川(富田, 幸子, 新堀哲也, 大場大樹, 小野栄夫, 呉繁夫, 小椋利彦, 松原洋一, 松原洋一, 青木洋子

    日本人類遺伝学会大会プログラム・抄録集 2015

  31. がん原遺伝子BRAFの機能獲得性変異は先天性異常を引き起こす

    井上晋一, 守谷充司, 守谷充司, 宮川(富田)幸子, 中嶌八隅, 大場大樹, 新堀哲也, 橋美里, 大西浩史, 呉繁夫, 松原洋一, 松原洋一, 青木洋子

    日本生化学会大会(Web) 2015

  32. BRAF knock-in mice provide a pathogenetic mechanism of developmental defects and a therapeutic approach in RASopathies

    井上晋一, 守谷充司, 渡邉裕介, 宮川-富田幸子, 新堀哲也, 大場大樹, 小野栄夫, 呉繁夫, 小椋利彦, 松原洋一, 青木洋子

    第37回分子生物学会年会 2014

  33. BrafQ241Rノックインマウスによるcardio-facio-cutaneous症候群の病態解明と治療法研究

    井上晋一, 守谷充司, 渡邉裕介, 宮川-富田幸子, 新堀哲也, 大場大樹, 小野栄夫, 呉繁夫, 小椋利彦, 松原洋一, 青木洋子

    第13回日本心臓血管発生研究会 2014

  34. BRAFノックインマウス作製によるRASopathiesの病態解明と治療法研究

    井上晋一, 守谷充司, 渡邉裕介, 宮川(富田)幸子, 新堀哲也, 大場大樹, 小野栄夫, 呉繁夫, 小椋利彦, 松原洋一, 青木洋子

    日本分子生物学会年会プログラム・要旨集(Web) 2014

  35. 新規BRAFノックインマウスの作製によるcardio‐facio‐cutaneous症候群の病態解明と治療法研究

    井上晋一, 守谷充司, 渡邊裕介, 宮川(富田)幸子, 新堀哲也, 大場大樹, 小野栄夫, 呉繁夫, 小椋利彦, 松原洋一, 青木洋子

    日本遺伝子診療学会大会プログラム・抄録集 2014

  36. ACTIVATED STEROL REGULATORY ELEMENT-BINDING PROTEIN-2 (SREBP-2) SUPPRESSES HAPATOCYTE NUCLEAR FACTOR-4-MEDIATED CYP3A11 GENE EXPRESSION IN MOUSE LIVER

    Inoue Shin-ichi, Yoshinari Kouichi, Sugawara Mika, Yamazoe Yasushi

    Abstracts of Annual meeting of Japanese Society for the Study of Xenobiotics 2010

  37. Cyp3a11遺伝子発現のsterol regulatory element-binding protein-2を介した制御 (博多)

    井上晋一, 吉成浩一, 山添康

    第2回博多シンポジウム 2009

  38. CHARACTERISTICS OF SREBP-2-MEDIATED DOWN REGULATION OF CYP3A11 GENE EXPRESSION

    Inoue Shinichi, Yoshinari Kouichi, Yamazoe Yasushi

    Abstracts of Annual meeting of Japanese Society for the Study of Xenobiotics 2009

  39. Cyp3a11遺伝子発現のsterol regulatory element‐binding protein‐2を介した制御

    井上晋一, 吉成浩一, 山添康

    日本薬学会東北支部大会講演要旨集 2009

  40. 大豆抽出成分添加により増強・加速される魚肉脂質の酸化・分解反応の解析

    井上晋一, 田中竜介, 松下映夫

    日本水産学会大会講演要旨集 2008/03/27

  41. 大豆抽出成分による魚肉脂質の酸化・分解反応の加速とその制御

    井上晋一, 田中竜介, 松下映夫

    日本水産学会大会講演要旨集 2007/03/28

  42. 褐色脂肪細胞およびベージュ脂肪細胞における環境温度依存的なHDAC3の働きの解明

    井上晋一

    第36回分子糖尿病学シンポジウム 2025/12/06

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Industrial Property Rights 1

  1. CFC症候群モデルマウスの作製とその治療法の確立

    井上 晋一, 青木 洋子, 松原 洋一

    Property Type: Patent

Research Projects 29

  1. 核内シグナルとRAS分解に着目したRASopathiesの分子病態解明と治療法開発

    青木 洋子

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業

    Category: 基盤研究(B)

    Institution: 東北大学

    2026/04/01 - 2029/03/31

  2. 環境温度に順応するしなやかな生命力の解明

    井上晋一

    Offer Organization: 科学技術振興機構(JST)

    System: 戦略的創造研究推進事業 さきがけ

    2025/10 - 2028/03

  3. 骨髄不全を伴う先天性症候群の病態解析

    新堀 哲也, 青木 洋子, 井上 晋一

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業

    Category: 基盤研究(C)

    Institution: 東北大学

    2025/04 - 2028/03

  4. 褐色脂肪組織を活性化する新規因子の肥満2型糖尿病予防に関する研究

    井上晋一

    Offer Organization: 公益財団法人 鈴木万平糖尿病財団

    System: 若手研究者調査研究助成

    2026 - 2028

  5. 褐色脂肪組織活性化によるRASopathies心疾患に対する治療アプローチ

    井上晋一

    Offer Organization: 公益財団法人 宮田心臓病研究振興基金

    System: 公益財団法人 宮田心臓病研究振興基金 未成年心臓血管病の学究等(奨励金)

    2026 - 2027

  6. 熱産生脂肪に高発現する新規寒冷誘導遺伝子の解析

    井上晋一

    Offer Organization: 公益財団法人 アステラス病態代謝研究会

    System: 研究助成金

    2026 - 2027

  7. CFC症候群の心疾患におけるヒストン修飾の役割の解明 Competitive

    井上 晋一, 新堀 哲也, 青木 洋子

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業

    Category: 基盤研究(C)

    Institution: 東北大学

    2024/01/17 - 2026/03/31

    More details Close

    Cardio-facio-cutaneous (CFC)症候群は心疾患、特異的顔貌、皮膚疾患、精神発達遅滞を示す遺伝性難病で、その原因遺伝子は癌原遺伝子BRAFである。我々はこれまでにCFC症候群モデルマウス(Brafノックイン(KI)マウス)を作製しCFC症候群患者同様に心疾患を示すこと、またこの心疾患治療にはヒストンH3K27脱メチル化酵素阻害剤(GSK-J4)、MEK阻害剤が有用であることを報告した。本研究では、なぜGSK-J4がBraf KIマウスの心疾患改善に有用であるのか、RAS/MAPKシグナルとヒストン修飾に焦点をあて解析を行った。本年度はBraf KIマウスの心臓発生期において発現変動する遺伝子を同定するためマイクロアレイ解析を行い、その後、定量的リアルタイムPCRによって再現性の確認を行った。その結果、Braf KIマウス胎仔心臓においてNppa, Nppb, Six1など心疾患・心臓発生に重要な遺伝子が発現変動していることを発見した。さらにBraf KIマウス胎仔の抽出液ではH3K27me1タンパク発現量が変化していることを見出した。 上記の実験に加え、RASサブファミリーであるRit1(RAS-like without CAAX1)遺伝子変異を持つノックインマウス(Rit1 KI: CFC症候群と類似した疾患であるヌーナン症候群モデルマウス)を新たに作製した(Takahara et.al, EBioMedicine, 2019)。RIT1タンパク質はBRAFタンパクの上流にあり、特にBRAFと相互的な関係性が強いとされている。よってRit1 KIマウスを新たに追加し、包括的にRAS/MAPK経路とヒストン修飾との関係性について解析を始めた。

  8. 新規熱産生関連因子による褐色脂肪組織の活性化を介した肥満および2 型糖尿病予防・治療法の開発

    井上晋一

    Offer Organization: 公益財団法人 鈴木謙三記念医科学応用研究財団

    System: 調査研究助成

    2025 - 2026

  9. エピゲノム因子HDAC3制御を介した脂肪のエネルギー消費促進による肥満予防機構の解明

    井上晋一

    Offer Organization: TANITA

    System: 公益信託 タニタ健康体重基金

    2025 - 2026

  10. ヒストン脱アセチル化酵素HDAC3によるエネルギー代謝制御機構の解明

    井上晋一

    Offer Organization: 日本肥満学会・ノボ ノルディスク ファーマ

    System: 研究助成

    2026 -

  11. 褐色脂肪細胞およびベージュ脂肪細胞における環境温度依存的なHDAC3の働きの解明

    井上晋一

    Offer Organization: 分子糖尿病学研究会

    System: 第36回分子糖尿病学シンポジウム Travel Research Grant

    2025/12 - 2025/12

  12. Short-term cold exposure induces persistent epigenomic memory in brown fat

    Offer Organization: United Japanese researchers Around the world (UJA)

    System: Travel Grant

    2025/04 - 2025/04

  13. 熱産生を維持亢進させる寒冷環境記憶メカニズムの解明

    井上晋一

    Offer Organization: 公益財団法人 細胞科学研究財団

    System: 令和5年度育成助成(フェローシップ)

    2023 - 2024

  14. 時計遺伝子による臓器の概日リズム制御とエネルギー代謝調節機構の解明

    井上晋一

    Offer Organization: 公益社団法人 日本生化学会

    System: 早石修記念海外留学助成

    2021 - 2022

  15. 概日リズム制御とエネルギー代謝調節機構の解明

    井上晋一

    Offer Organization: 上原記念生命科学財団

    System: リサーチフェローシップ

    2020 - 2021

  16. RASopathiesの病態解明と治療法開発

    井上晋一

    Offer Organization: 東北大学

    System: 研究大学強化促進事業「若手リーダー研究者海外派遣プログラム」

    2020 - 2021

  17. Functional analysis and modeling in RASopathies

    Aoki Yoko

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Scientific Research (B)

    Institution: Tohoku University

    2017/04/01 - 2020/03/31

    More details Close

    RASopathies are a group of phenotypically overlapping syndromes caused by germline mutations that encode components of the Ras/MAPK signaling pathway. In this project, w provided genetic analysis to patients with RASopathies and identified a novel gene, RRAS2, in Noonan syndrome patients (Niihori et al, Am J Hum Genet, 2019). Detailed clinical manifestations were evaluated in LZTR1 mutation-positive patients (Umeki I et al. Hum Mutat 2019). We demonstrated that LZTR1 associates with PPP1B-RAF1-SHOC2 complex. Although function in LZTR1 has not been clarified, we identified that LZTR1 facilitates polyubiquitination and degradation of RAS (Abe T et al. Cell Death Differ. 2020). We also showed that BrafQ241R/+ mice have neonatal feeding difficulties and esophageal dilation. The esophagus tissues from BrafQ241R/+ mice displayed incomplete replacement of smooth muscle with skeletal muscle and decreased contraction.

  18. Crosstalk between mechanism of metabolic abnormalies in congenital disorders and cancer cell metabolism Competitive

    Aoki Yoko

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Challenging Research (Exploratory)

    Institution: Tohoku University

    2018 - 2020

    More details Close

    Costello syndrome is involved in RASopathies. We have generated Costello syndrome model mice and found that the mutant mice are resistant to high-fat diet-induced obesity. Histology of liver showed microvesicular hepatic steatosis, suggesting abnormal beta-oxidation. In this study, we comprehensively analyzed glycolysis, gluconeogenesis, lipid metabolism, nucleic acid, and amino acid metabolism in addition to the revealed mitochondrial β-oxidation pathway in the liver. In mutant mice, the blood glucose level decreased and the expression of β-oxidation-related genes decreased. In addition, glycolysis and cholesterol synthesis are enhanced with increased glucagon levels, which is a hormone that regulates blood glucose level. Gluconeogenesis is decreased despite high glucagon. Surprisingly, however, changes in the expression of these genes involved in energy metabolism were not observed at all after fasting.

  19. 細胞内シグナル伝達異常による先天性疾患の新しい治療パスウェイ検索と治療法開発

    青木洋子

    System: 国立研究開発法人日本医療研究開発機構(AMED)難治性疾患実用化研究事業

    2017 - 2019

  20. C-type natriuretic peptide improves growth retardation in a mouse model of cardio-facio-cutaneous syndrome associated with a Braf mutation

    2019 -

  21. Metablic alterarion and growth control in congenital anomaly syndrome

    Aoki Yoko, OBA Daiju, NISHIYAMA Ayumi, UMEKI Ikumi, TAKAHARA Shingo

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Challenging Exploratory Research

    Institution: Tohoku University

    2016/04/01 - 2018/03/31

    More details Close

    To examine the mechanisms of energy reprogramming by HRAS activation in vivo, we generated knock-in mice expressing a heterozygous Hras G12S mutation (HrasG12S/+ mice) as a mouse model of Costello syndrome. On a high-fat diet, HrasG12S/+ mice developed a lean phenotype with microvesicular hepatic steatosis, resulting in early death compared with wild-type mice. Under starvation conditions, hypoketosis and elevated blood levels of long-chain fatty acylcarnitines were observed, suggesting impaired mitochondrial fatty acid oxidation. Our findings suggest that the oncogenic Hras mutation modulates energy homeostasis in vivo.

  22. 胃・食道発生におけるがん遺伝子BRAFの働きの解明

    井上晋一

    Offer Organization: 公益財団法人 武田科学振興財団

    System: 医学系研究奨励(基礎)

    2017 - 2018

  23. 先天性心疾患におけるヒストン修飾とRAS/MAPKシグナル連関の解明

    井上晋一

    Offer Organization: 公益財団法人 宮田心臓病研究振興基金

    System: 未成年心臓血管病の学究等(奨励金)

    2017 - 2018

  24. Pathogenesis and treatment of esophageal dilation and gastric epithelial hyperplasia in a mouse model for cardio-facio-cutaneous syndrome

    2018 -

  25. Molecular analysis and pathogenesis of the RAS/MAPK syndromes

    Aoki Yoko

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Scientific Research (B)

    Institution: Tohoku University

    2014/04/01 - 2017/03/31

    More details Close

    We have performed genetic testing in patients with RASopathies and successfully identified a new gene, RIT1, in patients with Noonan syndrome. In this study, we further analyzed clinical manifestations in RIT1 mutation-positive patients and performed functional analysis in cell culture system. We developed comprehensive analysis system using a next generation sequencer to analyze genes for RASopathies. We successfully generated model mice for CFC syndrome. The results would lead to the understanding of the pathogenesis of these disorders and the development of therapeutic means.

  26. The functional role of BRAF in cardiac development and bone formation Competitive

    Inoue Shin-ichi

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Young Scientists (B)

    Institution: Tohoku University

    2015 - 2017

    More details Close

    Germline mutations in BRAF have been identified in 70% of patients with cardio-facio-cutaneous (CFC) syndrome, which is characterized by heart defects, distinctive facial features, short stature and ectodermal abnormalities. We recently demonstrated that mice expressing a Braf Q241R mutation on a C57BL/6J background are embryonic/neonatal lethal, with multiple congenital defects, preventing us from analyzing the phenotypic consequences after birth. Here, to further explore the pathogenesis of CFC syndrome, we backcrossed these mice onto an ICR genetic background. The BrafQ241R/+ ICR mice exhibited growth retardation, sparse and ruffled fur, a hunched appearance, craniofacial dysmorphism and heart defects, including pulmonary stenosis and atrial septal defects. These data suggest that the heterozygous BrafQ241R/+ ICR mice show similar phenotypes as CFC syndrome after birth and will be useful for elucidating the pathogenesis and potential therapeutic strategies for CFC syndrome.

  27. Epigenomic regulation in congenital anomaly syndromes

    Aoki Yoko, MATSUBARA Yoichi, NIIHORI Tetsuya, INOUE Shinichi, YAOITA Masako, OBA Daiju, NISHIYAMA Ayumi, UMEKI Ikumi, TAKAHARA Shingo

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Challenging Exploratory Research

    Institution: Tohoku University

    2014/04/01 - 2016/03/31

    More details Close

    In this study, we analyzed genes that are associated with epigenetic modifications in patients, who are clinically diagnosed as having RASopathies, and identified pathogenic mutations in three affected individuals. We generated a knock-in mice expressing a Braf p.Q241R mutation, as a model mice for CFC syndrome. Treatment with a MEK inhibitor, PD0325901, and a histone H3K27 demethylase inhibitor, GSK-J4, have rescued embryonic lethality in BrafQ241R/+ mice. To explore the mechanisms of efficacy in PD0325901 and GSK-J4 co-treatment, we examined mRNA and protein levels of histone H3K27 methylase and histone H3K27 demethylases in heart tissues from control and BrafQ241R/+ embryos. Further analysis on methylation profiling of H3K27 in each gene will clarify the mechanisms why co-treatment of PD0325901 and GSK-J4 rescued the embryonic lethality in in BrafQ241R/+ mice.

  28. BRAF knock-in mice provide a pathogenetic mechanism of developmental defects in CFC syndrome Competitive

    INOUE SHINICHI

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Young Scientists (B)

    Institution: Tohoku University

    2013 - 2015

    More details Close

    Germline mutations in BRAF cause cardio-facio-cutaneous (CFC) syndrome, which is characterized by heart defects, distinctive facial features and ectodermal abnormalities. To define the pathogenesis and to develop a potential therapeutic approach in CFC syndrome, we generated knock-in mice expressing the Braf Q241R mutation. Knock-in mice manifested embryonic/neonatal lethality, showing liver necrosis, edema, craniofacial abnormalities and multiple heart defects. Prenatal treatment with a MEK inhibitor, PD0325901, or a histone 3 demethylase inhibitor, GSK-J4, rescued the embryonic lethality in knock-in embryos. Combination treatment with PD0325901 and GSK-J4 further increased the rescue from embryonic lethality. These results suggest that Braf knock-in mice recapitulate major features of CFC syndrome and that epigenetic modulation as well as the inhibition of the ERK pathway will be a potential therapeutic strategy for the treatment of CFC syndrome.

  29. BRAF knock-in mice provide a pathogenetic mechanism of developmental defects and a therapeutic approach in RASopathies

    Shin-ichi Inoue

    Offer Organization: NIH

    Category: Young Investigator Award Travel Grant

    2015 -

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Teaching Experience 4

  1. 遺伝医療学

  2. 医学基礎生物学

  3. 臨床遺伝学

  4. 遺伝学