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Aire Promotes the Self-Renewal of Embryonic Stem Cells Through Lin28

机译:Aire通过Lin28促进胚胎干细胞的自我更新

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摘要

Autoimmune regulator (Aire) is one of the most well-characterized molecules in autoimmunity, but its function outside the immune system is largely unknown. The recent discovery of Aire expression in stem cells and early embryonic cells and its function in the self-renewal of embryonic stem (ES) cells highlight the importance of Aire in these cells. In this study, we present evidence that Aire promotes the expression of the pluripotent factor Lin28 and the self-renewal of ES cells. We presented the first evidence that the let-7 microRNA family contributed to the self-renewal promoting effect of Aire on ES cells. Moreover, we showed that Aire and Lin28 are co-expressed in the genital ridge, oocytes, and cleavage-stage embryos, and the expression level of Lin28 is correlated with the expression level of Aire. Although it is widely considered to be a promiscuous gene expression activator, these results indicated that Aire promotes the self-renewal of ES cells through a specific pathway (i.e., the activation of Lin28 and the inhibition of the let-7 microRNA family). The correlation between Aire and Lin28 expression in germ cells and early embryos indicated an in vivo function for Aire in toti- and pluripotent stem cells. This study presents the first molecular pathway that incorporates Aire into the pluripotency network. Moreover, it presents the first evidence that microRNAs contribute to the regulatory function of Aire and highlights a novel function of Aire in stem cell biology and reproduction. These functions reveal novel perspectives for studying the molecular mechanisms behind the establishment and sustenance of pluripotent identity.
机译:自身免疫调节剂(Aire)是自身免疫中特征最充分的分子之一,但在免疫系统之外的功能尚不清楚。 Aire在干细胞和早期胚胎细胞中的表达及其在胚胎干(ES)细胞自我更新中的功能的最新发现凸显了Aire在这些细胞中的重要性。在这项研究中,我们提供证据表明Aire促进多能因子Lin28的表达和ES细胞的自我更新。我们提供了第一个证据,表明let-7 microRNA家族有助于Aire对ES细胞的自我更新促进作用。此外,我们证明了Aire和Lin28在生殖脊,卵母细胞和卵裂期胚胎中共表达,并且Lin28的表达水平与Aire的表达水平相关。尽管它被广泛认为是混杂的基因表达激活剂,但这些结果表明,Aire通过特定途径促进ES细胞的自我更新(即Lin28的激活和let-7 microRNA家族的抑制)。生殖细胞和早期胚胎中Aire和Lin28表达之间的相关性表明,Aire在全能和多能干细胞中具有体内功能。这项研究提出了第一个将Aire纳入多能网络的分子途径。此外,它提供了第一个证据证明microRNA有助于Aire的调节功能,并突出了Aire在干细胞生物学和生殖中的新功能。这些功能揭示了研究多能性身份建立和维持背后的分子机制的新颖观点。

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