Rchr
J-GLOBAL ID:202201020055196321
Update date: Sep. 11, 2024
Ishiuchi Takashi
Ishiuchi Takashi | Ishiuchi Takashi
Affiliation and department:
Job title:
Associate Professor
Research theme for competitive and other funds (6):
Papers (22):
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Zhuoran Xu, Yuka Fujimoto, Mizuki Sakamoto, Daiyu Ito, Masahito Ikawa, Takashi Ishiuchi. Kdm4d mutant mice show impaired sperm motility and subfertility. The Journal of reproduction and development. 2024
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Mizuki Sakamoto, Aoi Ito, Sayaka Wakayama, Hiroyuki Sasaki, Teruhiko Wakayama, Takashi Ishiuchi. Detection of newly synthesized RNA reveals transcriptional reprogramming during ZGA and a role of Obox3 in totipotency acquisition. Cell reports. 2024. 43. 4. 114118-114118
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Mizuki Sakamoto, Takashi Ishiuchi. YY1-dependent transcriptional regulation manifests at the morula stage. microPublication biology. 2024. 2024
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Takashi Ishiuchi, Mizuki Sakamoto. Molecular mechanisms underlying totipotency. Life science alliance. 2023. 6. 11
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Mizuki Sakamoto, Shusaku Abe, Yuka Miki, Yusuke Miyanari, Hiroyuki Sasaki, Takashi Ishiuchi. Dynamic nucleosome remodeling mediated by YY1 underlies early mouse development. Genes & development. 2023. 37. 13-14. 590-604
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MISC (2):
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Takashi Ishiuchi, Rocio Enriquez-Gasca, Eiji Mizutani, Teruhiko Wakayama, Juan M. Vaquerizas, Maria Elena Torres-Padilla. Totipotent-like features are induced by downregulating replication-dependent chromatin assembly. GENES & GENETIC SYSTEMS. 2015. 90. 6. 369-369
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Takashi Ishiuchi, Kazuyo Misaki, Shigenobu Yonemura, Masatoshi Takeichi, Takuji Tanoue. Fat4 and Dachsous1 regulate the apical membrane organization in the mouse cerebral cortex. MECHANISMS OF DEVELOPMENT. 2009. 126. S102-S102
Lectures and oral presentations (9):
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受精卵1細胞期での転写制御
(第42回日本受精着床学会総会・学術講演会 2024)
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Transcriptional reprogramming during ZGA in the early mouse embryo
(57th Annual Meeting of the Japanese Society of Developmental Biologists 2024)
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Nucleosome organization in the early mouse embryos
(The International Symposium “Totipotency and Germ Cell Development” 2022)
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受精後発生における転写ダイナミクス
(第74回日本細胞生物学会大会 2022)
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マウス初期発生における転写ダイナミクス
(2021年度幹細胞研究会 2021)
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Awards (2):
- 2021/03 - 日本エピジェネティクス研究会 日本エピジェネティクス研究会奨励賞 哺乳類の初期発生の基盤となるエピゲノム制御機構
- 2012/04 - Human Frontier Science Program long-term fellowship
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