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A tight control of Rif1 by Oct4 and Smad3 is critical for mouse embryonic stem cell stability

机译:Oct4和Smad3对Rif1的严格控制对于小鼠胚胎干细胞的稳定性至关重要

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摘要

Prolonged culture of embryonic stem cells (ESCs) leads them to adopt embryonal carcinoma cell features, creating enormous dangers for their further application. The mechanism involved in ESC stability has not, however, been extensively studied. We previously reported that SMAD family member 3 (Smad3) has an important role in maintaining mouse ESC stability, as depletion of Smad3 results in cancer cell-like properties in ESCs and Smad3−/− ESCs are prone to grow large, malignant teratomas. To understand how Smad3 contributes to ESC stability, we performed microarray analysis to compare the transcriptome of wild-type and Smad3−/− ESCs. We found that Rif1 (RAP1-associated protein 1), a factor important for genomic stability, is significantly upregulated in Smad3−/− ESCs. The expression level of Rif1 needs to be tightly controlled in ESCs, as a low level of Rif1 is associated with ESC differentiation, but a high level of Rif1 is linked to ESC transformation. In ESCs, Oct4 activates Rif1, whereas Smad3 represses its expression. Oct4 recruits Smad3 to bind to Rif1 promoter, but Smad3 joining facilitates the loading of a polycomb complex that generates a repressive epigenetic modification on Rif1 promoter, and thus maintains the expression of Rif1 at a proper level in ESCs. Interestingly, Rif1 short hairpin RNA (shRNA)-transduced Smad3−/− ESCs showed less malignant properties than the control shRNA-transduced Smad3−/− ESCs, suggesting a critical role of Rif1 in maintaining the stability of ESCs during proliferation.
机译:胚胎干细胞(ESC)的长时间培养导致它们采用胚胎癌细胞特征,为进一步应用产生了巨大的危险。然而,尚未广泛研究涉及ESC稳定性的机制。我们先前曾报道SMAD家族成员3(Smad3)在维持小鼠ESC稳定性方面具有重要作用,因为Smad3的耗尽导致ESC中具有癌细胞样特性,而Smad3-/-ESC容易长出大的恶性畸胎瘤。为了了解Smad3如何促进ESC的稳定性,我们进行了微阵列分析以比较野生型和Smad3-/-ESC的转录组。我们发现Rif1(RAP1相关蛋白1),一个对基因组稳定性重要的因子,在Smad3-/-ESC中显着上调。 Rif1的表达水平需要在ESC中严格控制,因为Rif1的低水平与ESC分化有关,而Rif1的高水平与ESC转化有关。在ESC中,Oct4激活Rif1,而Smad3抑制其表达。 Oct4募集Smad3使其与Rif1启动子结合,但是Smad3的加入促进了多梳复合物的装载,该复合物在Rif1启动子上产生了抑制性表观遗传修饰,因此使ESC中的Rif1表达维持在适当的水平。有趣的是,Rif1短发夹RNA(shRNA)转导的Smad3-/-ESCs的恶性比对照shRNA转导的Smad3-/-ESC少,这表明Rif1在维持增殖过程中ESC的稳定性方面起着至关重要的作用。

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