Rchr
J-GLOBAL ID:201801010571600238   Update date: Mar. 05, 2024

Ryo Ito

Ryo Ito
Affiliation and department:
Research field  (1): Metabolism and endocrinology
Research theme for competitive and other funds  (5):
  • 2021 - 2024 Understanding of sarcopenia obesity by epigenomic regulation
  • 2019 - 2021 Regulatory mechanism of beige adipocyte-differentiation by protein phosphatase.
  • 2016 - 2018 Understanding of molecular mechanism for overgrowth of the cells in adrenal zona glomerulosa
  • 2016 - 2018 Innovation of novel therapeutics against diabetic nephropathy targeting ChREBP
  • 2014 - 2016 Establishment of the isolation-method of adrenal zona gromerulosa and the analysis of CYP11B2 gene regulation.
Papers (28):
  • 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. 2024. 46. 2. e2300084
  • Yuki Ono, Ryo Ito, Kaito Arai, Gurdeep Singh, Tsuyoshi Saitoh, Robert B Russell, Francesco Raimondi, Junken Aoki, Juro Sakai, Asuka Inoue. Chemogenetic activation of G12 signaling enhances adipose tissue browning. Signal transduction and targeted therapy. 2023. 8. 1. 307-307
  • 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
  • Yoshihiro Matsumura, Ryo Ito, Ayumu Yajima, Rei Yamaguchi, Toshiya Tanaka, Takeshi Kawamura, Kenta Magoori, Yohei Abe, Aoi Uchida, Takeshi Yoneshiro, et al. Spatiotemporal dynamics of SETD5-containing NCoR-HDAC3 complex determines enhancer activation for adipogenesis. Nature communications. 2021. 12. 1. 7045-7045
  • Satoshi Saijoh, Mao Nakamura-Shima, Rie Shibuya-Takahashi, Ryo Ito, Akira Sugawara, Tomoko Yamazaki, Takayuki Imai, Yukinori Asada, Kazuto Matsuura, Wataru Iwai, et al. Discovery of a chemical compound that suppresses expression of BEX2, a dormant cancer stem cell-related protein. Biochemical and Biophysical Research Communications. 2021. 537. 132-139
more...
MISC (4):
Professional career (1):
  • PhD (The University of Tokyo)
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