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MyoD inhibits Fstl1 and Utrn expression by inducing transcription of miR-206

机译:MyoD通过诱导miR-206转录抑制Fstl1和Utrn表达

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摘要

Terminal differentiation of distinct cell types requires the transcriptional activation of differentiation-specific genes and the suppression of genes associated with the precursor cell. For example, the expression of utrophin (Utrn) is suppressed during skeletal muscle differentiation, and it is replaced at the sarcolemma by the related dystrophin protein. The MyoD transcription factor directly activates the expression of a large number of skeletal muscle genes, but also suppresses the expression of many genes. To characterize a mechanism of MyoD-mediated suppression of gene expression, we investigated two genes that are suppressed in fibroblasts converted to skeletal muscle by MyoD, follistatin-like 1 (Fstl1) and Utrn. MyoD directly activates the expression of a muscle-specific microRNA (miRNA), miR-206, which targets sequences in the Fstl1 and Utrn RNA, and these sequences are sufficient to suppress gene expression in the presence of miR-206. These findings demonstrate that MyoD, in addition to activating muscle-specific genes, induces miRNAs that repress gene expression during skeletal muscle differentiation.
机译:不同细胞类型的终末分化需要分化特异性基因的转录激活和与前体细胞相关的基因的抑制。例如,在骨骼肌分化过程中尿素蛋白(Utrn)的表达被抑制,在肌膜处被相关的肌营养蛋白替代。 MyoD转录因子直接激活大量骨骼肌基因的表达,但也抑制许多基因的表达。为了表征MyoD介导的基因表达抑制的机制,我们研究了在MyoD转化为骨骼肌的成纤维细胞中被抑制的两个基因,即卵泡抑素样蛋白1(Fstl1)和Utrn。 MyoD直接激活肌肉特异性microRNA(miRNA)miR-206的表达,miR-206靶向Fstl1和Utrn RNA中的序列,这些序列足以抑制存在miR-206的基因表达。这些发现表明,MyoD除了激活肌肉特异性基因外,还诱导在骨骼肌分化过程中抑制基因表达的miRNA。

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