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A Novel YY1-miR-1 Regulatory Circuit in Skeletal Myogenesis Revealed by Genome-Wide Prediction of YY1-miRNA Network

机译:YY1-miRNA网络的全基因组预测揭示了骨骼肌新生中的新型YY1-miR-1调控电路。

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摘要

microRNAs (miRNAs) are non-coding RNAs that regulate gene expression post-transcriptionally, and mounting evidence supports the prevalence and functional significance of their interplay with transcription factors (TFs). Here we describe the identification of a regulatory circuit between muscle miRNAs (miR-1, miR-133 and miR-206) and Yin Yang 1 (YY1), an epigenetic repressor of skeletal myogenesis in mouse. Genome-wide identification of potential down-stream targets of YY1 by combining computational prediction with expression profiling data reveals a large number of putative miRNA targets of YY1 during skeletal myoblasts differentiation into myotubes with muscle miRs ranking on top of the list. The subsequent experimental results demonstrate that YY1 indeed represses muscle miRs expression in myoblasts and the repression is mediated through multiple enhancers and recruitment of Polycomb complex to several YY1 binding sites. YY1 regulating miR-1 is functionally important for both C2C12 myogenic differentiation and injury-induced muscle regeneration. Furthermore, we demonstrate that miR-1 in turn targets YY1, thus forming a negative feedback loop. Together, these results identify a novel regulatory circuit required for skeletal myogenesis and reinforce the idea that regulatory circuitries involving miRNAs and TFs are prevalent mechanisms.
机译:microRNA(miRNA)是非编码RNA,可在转录后调节基因表达,越来越多的证据支持它们与转录因子(TF)相互作用的普遍性和功能重要性。在这里,我们描述了肌肉miRNA(miR-1,miR-133和miR-206)与小鼠骨骼肌生成的表观遗传抑制因子Yin Yang 1(YY1)之间的调控电路的鉴定。通过将计算预测与表达概况分析数据相结合,全基因组范围内对YY1潜在下游靶标的识别揭示了在骨骼成肌细胞分化为肌管且肌肉miR位居首位的过程中,YY1的大量推定miRNA靶标。随后的实验结果表明,YY1确实抑制了成肌细胞中的肌肉miRs表达,并且该抑制作用是通过多种增强子和将Polycomb复合物募集到几个YY1结合位点来介导的。 YY1调节miR-1对C2C12肌源性分化和损伤诱导的肌肉再生均具有重要的功能。此外,我们证明了miR-1反过来针对YY1,从而形成了一个负反馈回路。总之,这些结果确定了骨骼肌发生所需要的新型调节回路,并强化了涉及miRNA和TF的调节回路是普遍机制的想法。

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