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j.stem.2025.02.002.pdf6.65 MBAdobe PDF見る/開く
タイトル: Inhibition of PRC2 enables self-renewal of blastoid-competent naive pluripotent stem cells from chimpanzee
著者: Huang, Tao
Radley, Arthur
Yanagida, Ayaka
Ren, Zhili
Carlisle, Francesca
Tahajjodi, Somayyeh
Kim, Dongwan
O'Neill, Paul
Clarke, James
Lancaster, Madeline A.
Heckhausen, Zoe
Zhuo, Jingran
Agostinho de Sousa, João Pedro
Hajkova, Petra
von Meyenn, Ferdinand
Imai, Hiroo
Nakauchi, Hiromitsu
Guo, Ge
Smith, Austin
Masaki, Hideki
キーワード: epiblast
higher primate
pluripotent stem cells
self-renewal
Polycomb
naive pluripotency
stem cell-based embryo model
mammalian early embryo
single-cell transcriptomics
developmental drift
発行日: 3-Apr-2025
出版者: Elsevier BV
誌名: Cell Stem Cell
巻: 32
号: 4
開始ページ: 627
終了ページ: 639. e8
抄録: Naive pluripotent stem cells (PSCs) are counterparts of early epiblast in the mammalian embryo. Mouse and human naive PSCs differ in self-renewal requirements and extraembryonic lineage potency. Here, we investigated the generation of chimpanzee naive PSCs. Colonies generated by resetting or reprogramming failed to propagate. We discovered that self-renewal is enabled by inhibition of Polycomb repressive complex 2 (PRC2). Expanded cells show global transcriptome proximity to human naive PSCs and embryo pre-implantation epiblast, with shared expression of a subset of pluripotency transcription factors. Chimpanzee naive PSCs can transition to multilineage competence or can differentiate into trophectoderm and hypoblast, forming tri-lineage blastoids. They thus provide a higher primate comparative model for studying pluripotency and early embryogenesis. Genetic deletions confirm that PRC2 mediates growth arrest. Further, inhibition of PRC2 overcomes a roadblock to feeder-free propagation of human naive PSCs. Therefore, excess deposition of chromatin modification H3K27me3 is an unexpected barrier to naive PSC self-renewal.
記述: ヒトとチンパンジーにおける多能性維持機構の共通性を解明 --世界初のチンパンジーナイーブ型iPS細胞樹立と胚盤胞モデル作製に成功-- . 京都大学プレスリリース. 2025-02-27.
著作権等: © 2025 The Author(s). Published by Elsevier Inc.
This is an open access article under the CC BY license.
URI: http://hdl.handle.net/2433/293069
DOI(出版社版): 10.1016/j.stem.2025.02.002
PubMed ID: 40015279
関連リンク: https://www.kyoto-u.ac.jp/ja/research-news/2025-02-27
出現コレクション:学術雑誌掲載論文等

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