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肌肉干细胞行为通过微小RNA-27对Pax3表达的调控而发生改变。

Muscle stem cell behavior is modified by microRNA-27 regulation of Pax3 expression.

作者信息

Crist Colin G, Montarras Didier, Pallafacchina Giorgia, Rocancourt Didier, Cumano Ana, Conway Simon J, Buckingham Margaret

机构信息

Centre National de Recherche Scientifique Unité de Recherche Associée 2578, Department of Developmental Biology, Institut Pasteur, 25 rue du Dr. Roux, 75724 Paris Cedex 15, France.

出版信息

Proc Natl Acad Sci U S A. 2009 Aug 11;106(32):13383-7. doi: 10.1073/pnas.0900210106. Epub 2009 Jul 28.

Abstract

Skeletal muscle stem cells are regulated by Pax3/7. During development, Pax3 is required for the maintenance of these cells in the somite and their migration to sites of myogenesis; high levels of Pax3 interfere with muscle cell differentiation, both in the embryo and in the adult. Quantitative fine-tuning of Pax3 is critical, and microRNAs provide a potential mechanism. We identify microRNA-27b (miR-27b), which directly targets the 3'-UTR of Pax3 mRNA, as such a regulator. miR-27b is expressed in the differentiating skeletal muscle of the embryonic myotome and in activated satellite cells of adult muscle. In vivo overexpression of a miR-27b transgene in Pax3-positive cells in the embryo leads to down-regulation of Pax3, resulting in interference with progenitor cell migration and in premature differentiation. In a complementary experiment, miR-27b inhibitors were transfected into cultures of adult muscle satellite cells that normally express miR-27b at the onset of differentiation, when Pax3 protein levels undergo rapid down-regulation. Interference with miR-27b function results in continuing Pax3 expression leading to more proliferation and a delay in the onset of differentiation. Pax7 levels are not affected. Introduction of miR-27b antagomirs at a site of muscle injury in vivo also affects Pax3 expression and regeneration in vivo. We therefore conclude that miR-27b regulates Pax3 protein levels and this down-regulation ensures rapid and robust entry into the myogenic differentiation program.

摘要

骨骼肌干细胞受Pax3/7调控。在发育过程中,Pax3对于这些细胞在体节中的维持及其向肌生成部位的迁移是必需的;高水平的Pax3会干扰胚胎和成体中的肌肉细胞分化。Pax3的定量微调至关重要,而微小RNA提供了一种潜在机制。我们鉴定出微小RNA-27b(miR-27b)是这样一种调节因子,它直接靶向Pax3 mRNA的3'-UTR。miR-27b在胚胎肌节分化的骨骼肌以及成体肌肉激活的卫星细胞中表达。在胚胎中Pax3阳性细胞中体内过表达miR-27b转基因会导致Pax3下调,从而干扰祖细胞迁移并导致过早分化。在一项互补实验中,将miR-27b抑制剂转染到成体肌肉卫星细胞培养物中,这些卫星细胞在分化开始时通常会表达miR-27b,此时Pax3蛋白水平会迅速下调。干扰miR-27b功能会导致Pax3持续表达,从而导致更多增殖并延迟分化开始。Pax7水平不受影响。在体内肌肉损伤部位引入miR-27b拮抗剂也会影响体内Pax3表达和再生。因此,我们得出结论,miR-27b调节Pax3蛋白水平,这种下调确保快速且有力地进入肌生成分化程序。

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