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首页> 外文期刊>International Journal of Molecular Sciences >miR-30-5p Regulates Muscle Differentiation and Alternative Splicing of Muscle-Related Genes by Targeting MBNL
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miR-30-5p Regulates Muscle Differentiation and Alternative Splicing of Muscle-Related Genes by Targeting MBNL

机译:miR-30-5p通过靶向MBNL调节肌肉分化和肌肉相关基因的可变剪接

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MicroRNAs (miRNAs), a class of single stranded, small (~22 nucleotides), non-coding RNAs, play an important role in muscle development. We focused on the role of the miR-30-5p family during bovine muscle development from previous high-throughput sequencing results and analyzed their expression profiles. MHC and MyoG mRNAs expression as well as their proteins were suppressed in differentiated C2C12 cells, suggesting the importance of miR-30-5p in muscle development. MBNL, the candidate target of miR-30-5p, is an alternative splicing regulation factor. MBNL1 and MBNL3 have opposite effects on muscle differentiation. Our results confirmed that miR-30a-5p and miR-30e-5p repress the expression of MBNL1, MBNL2 and MBNL3, whereas miR-30b-5p inhibits MBNL1 and MBNL2 expression. This provides direct evidence that MBNL expression can be flexibly regulated by miR-30-5p. Previous studies showed that MBNL1 promotes exon inclusion of two muscle-related genes ( Trim55 and INSR ). Through RNA splicing studies, we found that miR-30-5p had an effect on their alternative splicing, which means miR-30-5p via MBNL1 could be integrated into muscle signaling pathways in which INSR or Trim55 are located. In conclusion, miR-30-5p could inhibit muscle cell differentiation and regulate the alternative splicing of Trim55 and INSR by targeting MBNL. These results promote the understanding of the function of miRNAs in muscle development.
机译:MicroRNA(miRNA)是一类单链小(〜22个核苷酸)非编码RNA,在肌肉发育中起着重要作用。我们从以前的高通量测序结果出发,重点研究了miR-30-5p家族在牛肌肉发育过程中的作用,并分析了它们的表达谱。 MHC和MyoG mRNA的表达及其蛋白在分化的C2C12细胞中被抑制,表明miR-30-5p在肌肉发育中的重要性。 MBNL是miR-30-5p的候选靶标,是另一种剪接调控因子。 MBNL1和MBNL3对肌肉分化有相反的作用。我们的结果证实,miR-30a-5p和miR-30e-5p抑制MBNL1,MBNL2和MBNL3的表达,而miR-30b-5p抑制MBNL1和MBNL2的表达。这提供了直接的证据,证明miNL-30-5p可以灵活调节MBNL的表达。先前的研究表明MBNL1促进两个肌肉相关基因(Trim55和INSR)的外显子包涵。通过RNA剪接研究,我们发现miR-30-5p对其替代剪接有影响,这意味着通过MBNL1进行的miR-30-5p可以整合到INSR或Trim55所在的肌肉信号传导途径中。总之,miR-30-5p可以通过靶向MBNL来抑制肌肉细胞分化并调节Trim55和INSR的选择性剪接。这些结果促进了对miRNA在肌肉发育中功能的理解。

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