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miR-133 通过调控 Hedgehog 通路来调控胚胎肌发生。

miR-133-mediated regulation of the Hedgehog pathway orchestrates embryo myogenesis.

机构信息

School of Biological Sciences, Cell and Developmental Biology, University of East Anglia, Norwich Research Park, Norwich NR4 7TJ, UK.

The Earlham Institute, Norwich Research Park, Colney Lane, Norwich NR4 7UH, UK.

出版信息

Development. 2018 Jun 11;145(12):dev159657. doi: 10.1242/dev.159657.

Abstract

Skeletal myogenesis serves as a paradigm to investigate the molecular mechanisms underlying exquisitely regulated cell fate decisions in developing embryos. The evolutionarily conserved miR-133 family of microRNAs is expressed in the myogenic lineage, but how it acts remains incompletely understood. Here, we performed genome-wide differential transcriptomics of miR-133 knockdown (KD) embryonic somites, the source of vertebrate skeletal muscle. These analyses, performed in chick embryos, revealed extensive downregulation of Sonic hedgehog (Shh) pathway components: patched receptors, Hedgehog interacting protein and the transcriptional activator Gli1. By contrast, , a transcriptional repressor, was de-repressed and confirmed as a direct miR-133 target. Phenotypically, miR-133 KD impaired myotome formation and growth by disrupting proliferation, extracellular matrix deposition and epithelialization. Together, these observations suggest that miR-133-mediated silencing is crucial for embryonic myogenesis. Consistent with this idea, we found that activation of Shh signalling by either purmorphamine, or KD of by antisense morpholino, rescued the miR-133 KD phenotype. Thus, we identify a novel Shh/myogenic regulatory factor/miR-133/Gli3 axis that connects epithelial morphogenesis with myogenic fate specification.

摘要

骨骼发生(myogenesis)为研究发育胚胎中细胞命运决定的高度调控的分子机制提供了范例。微小 RNA (miRNA)家族中的 miR-133 是在肌源性谱系中表达的,但其作用仍不完全清楚。在这里,我们对 miR-133 敲低 (KD) 胚胎体节(脊椎动物骨骼肌的来源)进行了全基因组差异转录组学分析。这些在鸡胚中进行的分析显示,Sonic hedgehog (Shh) 途径的组成部分,如 patched 受体、Hedgehog 相互作用蛋白和转录激活因子 Gli1,都受到了广泛的下调。相比之下,转录抑制因子 则被去抑制,并被确认为 miR-133 的直接靶标。表型上,miR-133 KD 通过破坏增殖、细胞外基质沉积和上皮化,阻碍肌节的形成和生长。总之,这些观察结果表明,miR-133 介导的 沉默对胚胎发生至关重要。与这一观点一致,我们发现 purmorphamine 激活 Shh 信号,或反义 morpholino 敲低 ,都可以挽救 miR-133 KD 的表型。因此,我们确定了一个新的 Shh/肌调节因子/miR-133/Gli3 轴,它将上皮形态发生与肌生成命运决定联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9cf/6031409/cc051ecd92ae/develop-145-159657-g1.jpg

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