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Reinforcement of STAT3 activity reprogrammes human embryonic stem cells to naive-like pluripotency

机译:STAT3活性的增强将人类胚胎干细胞重编程为幼稚样多能性。

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Leukemia inhibitory factor (LIF)/STAT3 signalling is a hallmark of naive pluripotency in rodent pluripotent stem cells (PSCs), whereas fibroblast growth factor (FGF)-2 and activinodal signalling is required to sustain self-renewal of human PSCs in a condition referred to as the primed state. It is unknown why LIF/STAT3 signalling alone fails to sustain pluripotency in human PSCs. Here we show that the forced expression of the hormone-dependent STAT3-ER (ER, ligand-binding domain of the human oestrogen receptor) in combination with 2i/LIF and tamoxifen allows human PSCs to escape from the primed state and enter a state characterized by the activation of STAT3 target genes and long-term self-renewal in FGF2- and feeder-free conditions. These cells acquire growth properties, a gene expression profile and an epigenetic landscape closer to those described in mouse naive PSCs. Together, these results show that temporarily increasing STAT3 activity is sufficient to reprogramme human PSCs to naive-like pluripotent cells.
机译:白血病抑制因子(LIF)/ STAT3信号是啮齿动物多能干细胞(PSC)中幼稚多能性的标志,而成纤维细胞生长因子(FGF)-2和激活素/节点信号是维持人类PSC自我更新所必需的。条件称为启动状态。尚不清楚为什么仅LIF / STAT3信号不能维持人类PSC中的多能性。在这里,我们显示与2i / LIF和他莫昔芬联合使用的激素依赖性STAT3-ER(ER,人雌激素受体的配体结合域)的强制表达使人PSC可以从启动状态逃逸,并进入具有特征的状态通过激活STAT3靶基因并在FGF2和无饲养层条件下长期自我更新。这些细胞获得的生长特性,基因表达谱和表观遗传学境界与小鼠天然PSC中描述的更接近。在一起,这些结果表明,暂时增加的STAT3活性足以将人类PSC重新编程为幼稚样多能细胞。

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