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J-GLOBAL ID:201801007643887757   Update date: Oct. 31, 2024

Matsumura Yoshihiro

マツムラ ヨシヒロ | Matsumura Yoshihiro
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Affiliation and department:
Research field  (3): Metabolism and endocrinology ,  Systems genomics ,  Cell biology
Research keywords  (5): Lipid metabolism ,  Glucose metabolism ,  Adipocyte ,  Chromatin ,  Epigenome
Research theme for competitive and other funds  (10):
  • 2024 - 2029 A Study on Elucidating Obesity and Lifestyle Diseases through the Epigenome-RNA Modification Axis
  • 2022 - 2025 Elucidation of epigenome dynamics that determines adipocyte differentiation
  • 2021 - 2024 シグナル感知エピゲノム酵素による世代を超えた環境適応機構の解明
  • 2019 - 2022 Elucidation of epigenetic mechanisms that memorize inter-tissue communication
  • 2016 - 2021 Elucidation of lifestyle-related diseases development due to environmental factors and epigenetic memory
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Papers (43):
  • Ryo Ito, Shiyu Xie, Myagmar Tumenjargal, Yuto Sugahara, Chaoran Yang, Hiroki Takahashi, Makoto Arai, Shin-Ichi Inoue, Aoi Uchida, Kenji Nakano, et al. Mitochondrial biogenesis in white adipose tissue mediated by JMJD1A-PGC-1 axis limits age-related metabolic disease. iScience. 2024. 27. 4. 109398-109398
  • Hiroki Takahashi, Ryo Ito, Yoshihiro Matsumura, Juro Sakai. Environmental factor reversibly determines cellular identity through opposing Integrators that unify epigenetic and transcriptional pathways. BioEssays : news and reviews in molecular, cellular and developmental biology. 2023. e2300084
  • Ryuichi Nakahara, Sho Aki, Maki Sugaya, Haruka Hirose, Miki Kato, Keisuke Maeda, Daichi M Sakamoto, Yasuhiro Kojima, Miyuki Nishida, Ritsuko Ando, et al. Hypoxia activates SREBP2 through Golgi disassembly in bone marrow-derived monocytes for enhanced tumor growth. The EMBO journal. 2023. e114032
  • Yoshihiro Matsumura, Fan-Yan Wei, Juro Sakai. Epitranscriptomics in metabolic disease. Nature metabolism. 2023. 5. 3. 370-384
  • Hiroki Takahashi, Ge Yang, Takeshi Yoneshiro, Yohei Abe, Ryo Ito, Chaoran Yang, Junna Nakazono, Mayumi Okamoto-Katsuyama, Aoi Uchida, Makoto Arai, et al. MYPT1-PP1β phosphatase negatively regulates both chromatin landscape and co-activator recruitment for beige adipogenesis. Nature communications. 2022. 13. 1. 5715-5715
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MISC (18):
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Professional career (1):
  • Ph.D. (Tohoku University)
Work history (7):
  • 2023/11 - 現在 Akita University Graduate School of Medicine Professor
  • 2022/04 - 2023/11 Tohoku University Graduate School of Medicine Associate Professor
  • 2017/04 - 2022/03 The University of Tokyo Research Center for Advanced Science and Technology, Division of Metabolic Medicine Associate Professor
  • 2012/04 - 2017/03 The University of Tokyo Research Center for Advanced Science and Technology, Division of Metabolic Medicine Research Associate
  • 2011/09 - 2012/03 The University of Tokyo Research Center for Advanced Science and Technology, Division of Metabolic Medicine Project Research Associate
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