Rchr
J-GLOBAL ID:201001089469832325   Update date: Apr. 28, 2024

Takeuchi Koh

タケウチ コウ | Takeuchi Koh
Affiliation and department:
Homepage URL  (2): https://biophys.f.u-tokyo.ac.jp/https://biophys.f.u-tokyo.ac.jp/en
Research field  (3): Pharmaceuticals - chemistry and drug development ,  Biophysics ,  Pharmaceuticals - analytical and physicochemistry
Research keywords  (4): 相互作用解析 ,  動的構造 ,  NMR ,  構造生物学
Research theme for competitive and other funds  (22):
  • 2022 - 2025 in cell structure-guided drug development by NMR
  • 2021 - 2024 Molecular basis for biosynthetic and degradation systems for tRNA sulfur-modified bases
  • 2023 - 2024 技術集約型オープンイノベーションによるNMR細胞内創薬の実現
  • 2020 - 2023 高活性化合物を創生し創薬標的の枯渇を解消する動的構造創薬技術の確立
  • 2020 - 2023 GTP代謝制御によるウイルス複製阻害技術の開発
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Papers (136):
  • Yutaka Takeda, Takumi Chinen, Shunnosuke Honda, Sho Takatori, Shotaro Okuda, Shohei Yamamoto, Masamitsu Fukuyama, Koh Takeuchi, Taisuke Tomita, Shoji Hata, et al. Molecular basis promoting centriole triplet microtubule assembly. Nature Communications. 2024
  • Marin Yokomine, Jumpei Morimoto, Yasuhiro Fukuda, Takumi Ueda, Koh Takeuchi, Koji Umezawa, Hideo Ago, Hiroaki Matsuura, Go Ueno, Akinobu Senoo, et al. A High-Resolution Structural Characterization and Physicochemical Study of How a Peptoid Binds to an Oncoprotein MDM2. Chemical Science. 2024
  • Yoshiki Ikeda, Mindy I Davis, Kazutaka Sumita, Yuxiang Zheng, Satoshi Kofuji, Mika Sasaki, Yoshihisa Hirota, Rajan Pragani, Min Shen, Matthew B Boxer, et al. Multimodal action of KRP203 on phosphoinositide kinases in vitro and in cells. Biochemical and biophysical research communications. 2023. 679. 116-121
  • Tomoki Yanagi, Hiroaki Kikuchi, Koh Takeuchi, Koichiro Susa, Takayasu Mori, Naohiro Takahashi, Takefumi Suzuki, Yuta Nakano, Tamami Fujiki, Yu Hara, et al. ULK1-regulated AMP sensing by AMPK and its application for the treatment of chronic kidney disease. 2023
  • Jun-ichi Sugiyama, Yuji Tokunaga, Mafumi Hishida, Masahito Tanaka, Koh Takeuchi, Daisuke Satoh, Masahiko Imashimizu. Nonthermal acceleration of protein hydration by sub-terahertz irradiation. Nature Communications. 2023
more...
MISC (28):
  • 上田 卓見, 幸福 裕, 竹内 恒, 今井 駿輔, 白石 勇太郎, 嶋田 一夫. 溶液NMR法によるGPCRの活性と直結する動的構造平衡の解明-Function-Related Conformational Dynamics of GPCRs Revealed by Solution NMR-ミニ特集 生理学的環境での生体高分子の挙動の観察可能性の追求. 日本結晶学会誌 = Journal of the Crystallographic Society of Japan. 2022. 64. 4. 279-284
  • 廣田佳久, 廣田佳久, 佐々木美加, SCHURDAK Jennifer, 河野龍義, 中村能久, 中村能久, 竹内恒, 千田俊哉, 佐々木敦朗, et al. Metabolic regulation by the GTP sensor PI5P4Kβ: towards the treatment of diabetes, cancer cachexia and sarcopenia. 日本分子生物学会年会プログラム・要旨集(Web). 2022. 45th
  • 廣田佳久, 廣田佳久, 佐々木美加, SCHURDAK Jennifer, 河野龍義, 中村能久, 中村能久, TILVE Diego, 竹内恒, 千田俊哉, et al. Metabolic dysregulation by disruption of GTP resilience: a new pathological mechanism for metabolic diseases. 日本分子生物学会年会プログラム・要旨集(Web). 2021. 44th
  • 竹内恒, 池田幸樹, 千田美紀, 原田彩佳, 奥脇弘次, 福澤薫, 中川草, 長瀬里沙, 今井美咲, 廣田佳久, et al. Molecular evolution of PI5P4Kβ that underlies the GTP resilience. 日本分子生物学会年会プログラム・要旨集(Web). 2021. 44th
  • 降旗大岳, 降旗大岳, 原田彩佳, 中川草, 竹内恒, 佐々木敦朗, 千田俊哉, 千田俊哉, 加藤龍一, 加藤龍一. Crystal structural analysis of Branchiostoma floridae PI5P4K for investigation of evolution of GTP sensor. 量子ビームサイエンスフェスタ(Web). 2019. 2018
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Patents (3):
Professional career (1):
  • 薬学(博士) (東京大学薬学系研究科)
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