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MicroRNA-mediated posttranscriptional regulation is required for maintaining undifferentiated properties of blastoderm and primordial germ cells in chickens

机译:MicroRNA介导的转录后调控是维持鸡胚细胞和原始生殖细胞未分化特性所必需的

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摘要

MicroRNAs (miRNAs) play a critical role in determining the differentiation fate of pluripotent stem cells and germ cells in mammals. However, the mechanism(s) of miRNA-mediated posttranscriptional regulation with regard to lineage specification and differentiation in chick development require further investigation. Therefore, we conducted miRNA expression profiling to explore specific miRNA signatures in undifferentiated blastoderm and primordial germ cells (PGCs). We identified seven miRNAs that are highly expressed in blastoderm and 10 that are highly expressed in PGCs. In this study, miR-302a and miR-456 for blastoderm and miR-181a* for PGCs were analyzed further for their target transcripts and regulatory pathways. Both miR-302a and miR-456 bound directly to the sex-determining region Y box 11 transcript and could act as posttranscriptional coregulators to maintain the undifferentiated state of the chicken blastoderm through the suppression of somatic gene expression and differentiation. Moreover, miR-181a* showed a bifunctional role in PGCs by binding to two different transcripts. miR-181a* inhibited the somatic differentiation of PGCs by silencing homeobox A1 expression. Additionally, miR-181a* prevented PGCs from entering meiosis through the repression of the nuclear receptor subfamily 6, group A, member 1 transcript. Collectively, our data demonstrate that in chickens miRNAs intrinsically regulate the differentiation fate of blastoderms and PGCs and that the specific timing of germ cell meiosis is controlled through miRNA expression.
机译:微小RNA(miRNA)在确定哺乳动物多能干细胞和生殖细胞的分化命运方面起着至关重要的作用。然而,关于小鸡发育中谱系规格和分化的miRNA介导的转录后调控机制尚需进一步研究。因此,我们进行了miRNA表达谱分析,以探索未分化的胚盘和原始生殖细胞(PGC)中的特定miRNA特征。我们鉴定了七个在胚盘中高表达的miRNA和10个在PGC中高表达的miRNA。在这项研究中,针对胚盘的miR-302a和miR-456和针对PGC的miR-181a *进行了进一步分析,以了解其靶转录本和调控途径。 miR-302a和miR-456都直接与性别决定区域Y box 11转录物结合,并可以充当转录后共调节剂,通过抑制体细胞基因表达和分化来维持鸡胚细胞的未分化状态。此外,miR-181a *通过与两种不同的转录本结合,在PGC中显示出双功能作用。 miR-181a *通过沉默同源盒A1表达来抑制PGC的体细胞分化。另外,miR-181a *通过抑制核受体亚家族6,A组成员1的转录本来防止PGC进入减数分裂。总体而言,我们的数据表明,在鸡中,miRNA内在地调控着胚盘和PGC的分化命运,而生殖细胞减数分裂的具体时机是通过miRNA的表达来控制的。

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