Rchr
J-GLOBAL ID:202201020055196321   Update date: Sep. 09, 2023

Ishiuchi Takashi

Ishiuchi Takashi | Ishiuchi Takashi
Affiliation and department:
Job title: Associate Professor
Research theme for competitive and other funds  (1):
  • 2019 - 2024 全能性プログラムにおけるエピゲノム再編成の理解とその人為的制御
Papers (18):
  • 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
  • Mizuki Sakamoto, Daiyu Ito, Rei Inoue, Sayaka Wakayama, Yasuyuki Kikuchi, Li Yang, Erika Hayashi, Rina Emura, Hirosuke Shiura, Takashi Kohda, et al. Paternally inherited H3K27me3 affects chromatin accessibility in mouse embryos produced by round spermatid injection. DEVELOPMENT. 2022. 149. 18
  • Seiichi Yano, Takashi Ishiuchi, Shusaku Abe, Satoshi H. Namekawa, Gang Huang, Yoshihiro Ogawa, Hiroyuki Sasaki. Histone H3K36me2 and H3K36me3 form a chromatin platform essential for DNMT3A-dependent DNA methylation in mouse oocytes. Nature Communications. 2022. 13. 1. 4440-4440
  • Wakayama S, Ito D, Hayashi E, Ishiuchi T, Wakayama T. Healthy cloned offspring derived from freeze-dried somatic cells. Nature Communications. 2022. 13. 1. 3666-3666
  • Teppei Inatomi, Shigeru Matsuda, Takashi Ishiuchi, Yura Do, Masunari Nakayama, Shusaku Abe, Kazutoshi Kasho, Sjoerd Wanrooij, Kazuto Nakada, Kenji Ichiyanagi, et al. TFB2M and POLRMT are essential for mammalian mitochondrial DNA replication. BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH. 2022. 1869. 1. 119167-119167
more...
MISC (1):
  • 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
Lectures and oral presentations  (7):
  • Nucleosome organization in the early mouse embryos
    (The International Symposium “Totipotency and Germ Cell Development” 2022)
  • 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)
  • 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)
  • 受精後発生における転写ダイナミクス
    (第44回日本分子生物学会年会 2021)
  • 受精後発生を支えるエピゲノム・転写ネットワーク解明にむけた試み
    (バイオDX キックオフシンポジウム 2021)
more...
Awards (1):
  • 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
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