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细胞周期异质性指导小鼠胚胎干细胞中自发 2C 状态的进入和退出。

Cell cycle heterogeneity directs spontaneous 2C state entry and exit in mouse embryonic stem cells.

机构信息

Center for Stem Cell and Regenerative Medicine, Department of Basic Medical Sciences, and Bone Marrow Transplantation Center of the First Affiliated Hospital, Hangzhou, Zhejiang, China; Zhejiang University-University of Edinburgh Institute, Zhejiang University School of Medicine, Haining, Zhejiang, China.

Center for Stem Cell and Regenerative Medicine, Department of Basic Medical Sciences, and Bone Marrow Transplantation Center of the First Affiliated Hospital, Hangzhou, Zhejiang, China.

出版信息

Stem Cell Reports. 2021 Nov 9;16(11):2659-2673. doi: 10.1016/j.stemcr.2021.09.003. Epub 2021 Oct 7.

Abstract

Mouse embryonic stem cells (ESCs) show cell-to-cell heterogeneity. A small number of two-cell-like cells (2CLCs) marked by endogenous retrovirus activation emerge spontaneously. The 2CLCs are unstable and they are prone to transiting back to the pluripotent state without extrinsic stimulus. To understand how this bidirectional transition takes place, we performed single-cell RNA sequencing on isolated 2CLCs that underwent 2C-like state exit and re-entry, and revealed a step-by-step transitional process between 2C-like and pluripotent states. Mechanistically, we found that cell cycle played an important role in mediating these transitions by regulating assembly of the nucleolus and peri-nucleolar heterochromatin to influence 2C gene Dux expression. Collectively, our findings provide a roadmap of the 2C-like state entry and exit in ESCs and also a causal role of the cell cycle in promoting these transitions.

摘要

小鼠胚胎干细胞 (ESC) 表现出细胞间的异质性。一小部分由内源性逆转录病毒激活标记的两细胞样细胞 (2CLC) 自发出现。2CLC 不稳定,在没有外在刺激的情况下,它们容易返回到多能状态。为了了解这种双向转变是如何发生的,我们对经历了 2C 样状态退出和重新进入的分离 2CLC 进行了单细胞 RNA 测序,并揭示了 2C 样和多能状态之间的逐步过渡过程。从机制上讲,我们发现细胞周期通过调节核仁的组装和核周异染色质来影响 2C 基因 Dux 的表达,在这些转变中起着重要作用。总的来说,我们的研究结果为 ESC 中 2C 样状态的进入和退出提供了一个路线图,并确定了细胞周期在促进这些转变中的因果作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/685c/8580870/5da2f11260d8/gr1.jpg

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