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首页> 外文期刊>Nature Communications >The deubiquitinase USP21 maintains the stemness of mouse embryonic stem cells via stabilization of Nanog
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The deubiquitinase USP21 maintains the stemness of mouse embryonic stem cells via stabilization of Nanog

机译:去泛素酶USP21通过稳定Nanog来维持小鼠胚胎干细胞的干性

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摘要

Nanog is a master pluripotency factor of embryonic stem cells (ESCs). Stable expression of Nanog is essential to maintain the stemness of ESCs. However, Nanog is a short-lived protein and quickly degraded by the ubiquitin-dependent proteasome system. Here we report that the deubiquitinase USP21 interacts with, deubiquitinates and stabilizes Nanog, and therefore maintains the protein level of Nanog in mouse ESCs (mESCs). Loss of USP21 results in Nanog degradation, mESCs differentiation and reduces somatic cell reprogramming efficiency. USP21 is a transcriptional target of the LIF/STAT3 pathway and is downregulated upon differentiation. Moreover, differentiation cues promote ERK-mediated phosphorylation and dissociation of USP21 from Nanog, thus leading to Nanog degradation. In addition, USP21 is recruited to gene promoters by Nanog to deubiquitinate histone H2A at K119 and thus facilitates Nanog-mediated gene expression. Together, our findings provide a regulatory mechanism by which extrinsic signals regulate mESC fate via deubiquitinating Nanog.
机译:Nanog是胚胎干细胞(ESC)的主要多能性因子。 Nanog的稳定表达对于维持ESC的干性至关重要。然而,Nanog是一种短暂的蛋白质,并会被泛素依赖性蛋白酶体系统迅速降解。在这里,我们报告去泛素酶USP21与Nanog相互作用,去泛素化和稳定,因此维持了小鼠ESC(mESCs)中Nanog的蛋白质水平。 USP21的丢失会导致Nanog降解,mESCs分化并降低体细胞重编程效率。 USP21是LIF / STAT3途径的转录靶标,在分化后会下调。此外,分化提示促进ERK介导的USP21从Nanog磷酸化和解离,从而导致Nanog降解。此外,Nanog将USP21募​​集到基因启动子,以在K119处泛素化组蛋白H2A,从而促进Nanog介导的基因表达。在一起,我们的研究结果提供了一种外在信号通过去泛素化Nanog调节mESC命运的调节机制。

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