Rchr
J-GLOBAL ID:201401073403504071   Update date: Sep. 19, 2024

Takahashi Kazutoshi

Takahashi Kazutoshi
Affiliation and department:
Job title: Associate Professor
Homepage URL  (1): https://kazutakahashi.cira.kyoto-u.ac.jp/
Research field  (1): Cell biology
Research keywords  (7): Reprogramming ,  Cell Fate ,  Pluripotency ,  Microprotein ,  Circular RNA ,  Translation ,  Stem Cell
Research theme for competitive and other funds  (20):
  • 2024 - 2028 Elucidating the mechanism underlying pluripotency from the angle of cellular context-dependent translational regulation.
  • 2020 - 2026 Expanded understanding of molecular mechanisms governing pluripotency by focusing on non-canonical translation.
  • 2023 - 2024 機能スクリーニングとオミックス解析を用いた分化多能性を規定する翻訳制御機構の解明
  • 2021 - 2024 環状RNAの翻訳機構を理解しその生理的意義を解明する
  • 2022 - 2023 完全な翻訳地図と翻訳予測モデルによる細胞機能の理解
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Papers (74):
  • Chikako Okubo, Michiko Nakamura, Masae Sato, Yuichi Shichino, Mari Mito, Yasuhiro Takashima, Shintaro Iwasaki, Kazutoshi Takahashi. Selective Translation Orchestrates Key Signaling Pathways in Primed Pluripotency. bioRxiv. 2024
  • Renxing Yi, Rina Hashimoto, Ayaka Sakamoto, Yasufumi Matsumura, Miki Nagao, Kazutoshi Takahashi, Kazuo Takayama. Exocyst complex component 2 is a potential host factor for SARS-CoV-2 infection. iScience. 2022. 25. 11. 105427-105427
  • Akira Kunitomi, Ryoko Hirohata, Vanessa Arreola, Mitsujiro Osawa, Tomoaki M. Kato, Masaki Nomura, Jitsutaro Kawaguchi, Hiroto Hara, Kohji Kusano, Yasuhiro Takashima, et al. Improved Sendai viral system for reprogramming to naive pluripotency. Cell Reports Methods. 2022. 100317-100317
  • Mio Iwasaki, Yuka Kawahara, Chikako Okubo, Tatsuya Yamakawa, Michiko Nakamura, Tsuyoshi Tabata, Yohei Nishi, Megumi Narita, Akira Ohta, Hirohide Saito, et al. Multi-omics approach reveals posttranscriptionally regulated genes are essential for human pluripotent stem cells. iScience. 2022. 25. 5. 104289-104289
  • Kazutoshi Takahashi, Chikako Okubo, Michiko Nakamura, Mio Iwasaki, Yuka Kawahara, Tsuyoshi Tabata, Yousuke Miyamoto, Knut Woltjen, Shinya Yamanaka. A stress-reduced passaging technique improves the viability of human pluripotent cells. Cell reports methods. 2022. 2. 2. 100155-100155
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MISC (122):
  • 高橋 和利. iPS細胞までの道のり. 実験医学. 2020. 38. 8-13
  • 個人の組織から分離された線維芽細胞及びそれらから作成されたiPS細胞のエピジェネティッククロック解析. Journal of Nagoya Women’s University. 2019. 65. 27-38
  • Karagiannis P, Takahashi K, Saito M, Yoshida Y, Okita K, Watanabe A, Inoue H, Yamashita JK, Todani M, Nakagawa M, et al. Induced Pluripotent Stem Cells and Their Use in Human Models of Disease and Development. Physiological reviews. 2019. 99. 1. 79-114
  • 高橋 和利, 山中 伸弥. iPS細胞研究最前線. 先進医療NAVIGATOR「今日の再生医療・細胞医療の産業化に向けて」. 2017. 7-17
  • Takahashi, K, Yamanaka, S. A decade of transcription factor-mediated reprogramming to pluripotency. Nature Reviews Molecular Cell Biology. 2016. 17. 3. 183-193
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Books (1):
  • Identification of genes involved in tumor-like properties of ES cells.
    Embryonic Stem Cells-II : Methods and Protocols, in press
Lectures and oral presentations  (97):
  • 分化多能性を規定する翻訳制御機構
    (日本再生医療学会第3回科学シンポジウム 2023)
  • 多能性幹細胞を規定する分子機構
    (医学研究の最先端 (順天堂大学大学院) 2023)
  • iPS細胞
    (東京都医学総合研究所第3回都民講座 2023)
  • Non-canonical mode of translation in pluripotency.
    (2022)
  • 非標準的翻訳の解読から細胞運命決定機構に迫る
    (第185回長浜バイオ大学バイオセミナー 2022)
more...
Professional career (1):
  • Ph.D. (Bioscience) (Nara Institute of Science and Technology)
Work history (10):
  • 2022/05 - 現在 Kyoto University
  • 2019/07 - 2022/04 Kyoto University
  • 2017/01 - 2019/06 J. Davis Glastone Institutes Staff Research Investigator
  • 2014/10 - 2016/12 J. David Gladstone Institutes Visiting Scientist
  • 2011/04 - 2016/12 Kyoto University
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Awards (11):
  • 2020/02 - KODAMA国際教育財団 未来のいしずえ賞
  • 2013/09 - フロンティアサロン財団 フロンティアサロン永瀬賞
  • 2012/10 - 明日の象徴事務局 明日の象徴
  • 2012/10 - The New York Stem Cell Foundation The Robertson Stem Cell Prize
  • 2011/06 - International Society for Stem Cell Research ISSCR McEwen Centre Award for Innovation
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