具有囊胚样结构形成潜能的全能样干细胞的衍生。

Derivation of totipotent-like stem cells with blastocyst-like structure forming potential.

机构信息

MOE Engineering Research Center of Regenerative Medicine, School of Basic Medical Sciences, State Key Laboratory of Natural and Biomimetic Drugs, Peking University Health Science Center and the MOE Key Laboratory of Cell Proliferation and Differentiation, College of Life Sciences, Peking-Tsinghua Center for Life Sciences, Peking University, Beijing, China.

School of Life Sciences, Center for Bioinformatics, Center for Statistical Science, Peking University, Beijing, China.

出版信息

Cell Res. 2022 Jun;32(6):513-529. doi: 10.1038/s41422-022-00668-0. Epub 2022 May 4.

Abstract

It is challenging to derive totipotent stem cells in vitro that functionally and molecularly resemble cells from totipotent embryos. Here, we report that a chemical cocktail enables the derivation of totipotent-like stem cells, designated as totipotent potential stem (TPS) cells, from 2-cell mouse embryos and extended pluripotent stem cells, and that these TPS cells can be stably maintained long term in vitro. TPS cells shared features with 2-cell mouse embryos in terms of totipotency markers, transcriptome, chromatin accessibility and DNA methylation patterns. In vivo chimera formation assays show that these cells have embryonic and extraembryonic developmental potentials at the single-cell level. Moreover, TPS cells can be induced into blastocyst-like structures resembling preimplantation mouse blastocysts. Mechanistically, inhibition of HDAC1/2 and DOT1L activity and activation of RARγ signaling are important for inducing and maintaining totipotent features of TPS cells. Our study opens up a new path toward fully capturing totipotent stem cells in vitro.

摘要

在体外获得在功能和分子水平上类似于全能胚胎细胞的全能干细胞极具挑战性。在这里,我们报告称,一种化学鸡尾酒能够从 2 细胞期小鼠胚胎和扩展的多能干细胞中衍生出全能样干细胞,称为全能潜能干细胞(TPS 细胞),并且这些 TPS 细胞可以在体外长期稳定维持。TPS 细胞在全能性标记物、转录组、染色质可及性和 DNA 甲基化模式方面与 2 细胞期小鼠胚胎具有相似性。体内嵌合体形成实验表明,这些细胞在单细胞水平上具有胚胎和胚胎外发育潜能。此外,TPS 细胞可以被诱导形成类似于植入前小鼠囊胚的囊胚样结构。从机制上讲,抑制 HDAC1/2 和 DOT1L 活性以及激活 RARγ 信号对于诱导和维持 TPS 细胞的全能特性非常重要。我们的研究为在体外完全捕获全能干细胞开辟了一条新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1f8/9160264/41d823a587db/41422_2022_668_Fig1_HTML.jpg

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