Rchr
J-GLOBAL ID:202201002934056209   Update date: Feb. 01, 2024

Nakamura Ryohei

Nakamura Ryohei
Affiliation and department:
Research field  (3): Molecular biology ,  Developmental biology ,  Genomics
Research keywords  (8): ゲノム三次元構造 ,  DNA methylation ,  medaka ,  epigenetics ,  reprogramming ,  development ,  chromatin ,  histone modification
Research theme for competitive and other funds  (7):
  • 2021 - 2024 脊椎動物におけるglobal DNAメチル化の機能の解明
  • 2021 - 2023 原腸形成期におけるTAD形成によるクロマチンポテンシャル変化
  • 2018 - 2022 Establishment mechanism of 3D chromatin structure
  • 2016 - 2019 The basic design of post-hatch development of the pallium and examination of its emergent properties
  • 2016 - 2019 Chromatin accessibility dynamics during early embryogenesis
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Papers (19):
  • Yasuko Isoe, Ryohei Nakamura, Shigenori Nonaka, Yasuhiro Kamei, Teruhiro Okuyama, Naoyuki Yamamoto, Hideaki Takeuchi, Hiroyuki Takeda. Epigenetically distinct synaptic architecture in clonal compartments in the teleostean dorsal pallium. eLife. 2023. 12
  • Hiroto S Fukushima, Hiroyuki Takeda, Ryohei Nakamura. Incomplete erasure of histone marks during epigenetic reprogramming in medaka early development. Genome research. 2023
  • Hiroto S. Fukushima, Hiroyuki Takeda, Ryohei Nakamura. Targeted Manipulation of Histone Modification in Medaka Embryos. Methods in Molecular Biology. 2023. 2577. 279-293
  • Hiroto S. Fukushima, Hiroyuki Takeda, Ryohei Nakamura. Histone marks retained during epigenetic reprogramming and their roles essential for fish early development. 2022
  • Ann Kathrin Heilig, Ryohei Nakamura, Atsuko Shimada, Yuka Hashimoto, Yuta Nakamura, Joachim Wittbrodt, Hiroyuki Takeda, Toru Kawanishi. Wnt11 acts on dermomyotome cells to guide epaxial myotome morphogenesis. eLife. 2022. 11
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MISC (2):
  • Hiroto Fukushima, Hiroyuki Takeda, Ryohei Nakamura. Targeted in vivo epigenome editing in medaka fish. MECHANISMS OF DEVELOPMENT. 2017. 145. S136-S136
  • Toru Kawanishi, Yuuta Moriyama, Ryohei Nakamura, Atsuko Shimada, Hiroyuki Takeda. zic1 and zic4 expression in the somite regulates dorsalization of the fish trunk structures. DEVELOPMENTAL BIOLOGY. 2010. 344. 1. 448-448
Books (1):
  • 魚類学の百科事典
    丸善出版 2018 ISBN:9784621303177
Education (2):
  • 2009 - 2014 The University of Tokyo Graduate School of Science
  • 2005 - 2009 The University of Tokyo Faculty of Science Department of Biological Sciences
Work history (3):
  • 2015/04 - 現在 The University of Tokyo Graduate School of Science
  • 2014/04 - 2015/03 The University of Tokyo Graduate School of Science
  • 2012/04 - 2014/03 日本学術振興会 特別研究員(DC2)
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