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首页> 外文期刊>Cell stem cell >Metastable pluripotent states in NOD-mouse-derived ESCs.
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Metastable pluripotent states in NOD-mouse-derived ESCs.

机译:NOD小鼠衍生的ESC中的亚稳态多能态。

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Embryonic stem cells (ESCs) are isolated from the inner cell mass (ICM) of blastocysts, whereas epiblast stem cells (EpiSCs) are derived from the postimplantation epiblast and display a restricted developmental potential. Here we characterize pluripotent states in the nonobese diabetic (NOD) mouse strain, which prior to this study was considered "nonpermissive" for ESC derivation. We find that NOD stem cells can be stabilized by providing constitutive expression of Klf4 or c-Myc or small molecules that can replace these factors during in vitro reprogramming. The NOD ESCs and iPSCs appear to be "metastable," as they acquire an alternative EpiSC-like identity after removal of the exogenous factors, while their reintroduction converts the cells back to ICM-like pluripotency. Our findings suggest that stem cells from different genetic backgrounds can assume distinct states of pluripotency in vitro, the stability of which is regulated by endogenous genetic determinants and can be modified by exogenous factors.
机译:胚胎干细胞(ESCs)是从胚泡的内部细胞团(ICM)中分离出来的,而表皮干细胞(EpiSCs)是从植入后的表皮细胞衍生而来,并且显示出有限的发展潜力。在这里,我们描述了非肥胖糖尿病(NOD)小鼠品系中的多能态,在该研究之前,该品系被认为是ESC衍生的“非许可”状态。我们发现,通过提供Klf4或c-Myc或小分子可以在体外重编程过程中替代这些因子的组成型表达,可以稳定NOD干细胞。 NOD ESC和iPSC似乎是“可转移的”,因为它们在去除外源因子后获得了另一种EpiSC样的身份,而它们的重新引入将细胞转换回ICM样的多能性。我们的发现表明,来自不同遗传背景的干细胞可以在体外呈现不同的多能性状态,其稳定性受内源性遗传决定因素调节,并可以被外源性因素修饰。

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