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生肌决定基因Myf5在成体再生性肌生成中的作用。

A role for the myogenic determination gene Myf5 in adult regenerative myogenesis.

作者信息

Gayraud-Morel Barbara, Chrétien Fabrice, Flamant Patricia, Gomès Danielle, Zammit Peter S, Tajbakhsh Shahragim

机构信息

Stem Cells and Development, Dept. of Developmental Biology, Pasteur Institute, CNRS URA 2578, 25 rue du Dr. Roux, 75724 Paris Cedex 15, France.

出版信息

Dev Biol. 2007 Dec 1;312(1):13-28. doi: 10.1016/j.ydbio.2007.08.059. Epub 2007 Sep 11.

Abstract

The myogenic determination genes Myf5, Myod and Mrf4 direct skeletal muscle cell fate prenatally. In adult myogenesis, Myod has been shown to regulate myoblast differentiation, however, our understanding of satellite cell regulation is incomplete since the roles of Myf5 and Mrf4 had not been clearly defined. Here we examine the function of Myf5 and Mrf4 in the adult using recently generated alleles. Mrf4 is not expressed in normal or Myf5 null satellite cells and myoblasts, therefore excluding a role for this determination gene in adult muscle progenitors. Skeletal muscles of adult Myf5 null mice exhibit a subtle progressive myopathy. Crucially, adult Myf5 null mice exhibit perturbed muscle regeneration with a significant increase in muscle fibre hypertrophy, delayed differentiation, adipocyte accumulation, and fibrosis after freeze-injury. Satellite cell numbers are not significantly altered in Myf5 null animals and they show a modest impaired proliferation under some conditions in vitro. Mice double mutant for Myf5 and Dystrophin were more severely affected than single mutants, with enhanced necrosis and regeneration. Therefore, we show that Myf5 is a regulator of regenerative myogenesis and homeostasis, with functions distinct from those of Myod and Mrf4.

摘要

生肌决定基因Myf5、Myod和Mrf4在产前决定骨骼肌细胞的命运。在成体肌生成过程中,Myod已被证明可调节成肌细胞的分化,然而,由于Myf5和Mrf4的作用尚未明确界定,我们对卫星细胞调节的理解并不完整。在此,我们利用最近产生的等位基因研究Myf5和Mrf4在成体中的功能。Mrf4在正常或Myf5基因敲除的卫星细胞和成肌细胞中不表达,因此排除了该决定基因在成体肌肉祖细胞中的作用。成年Myf5基因敲除小鼠的骨骼肌表现出轻微的进行性肌病。至关重要的是,成年Myf5基因敲除小鼠的肌肉再生受到干扰,在冷冻损伤后肌纤维肥大显著增加、分化延迟、脂肪细胞积累和纤维化。在Myf5基因敲除动物中卫星细胞数量没有显著改变,并且在某些体外条件下它们的增殖有适度受损。Myf5和抗肌萎缩蛋白双突变小鼠比单突变小鼠受影响更严重,坏死和再生增强。因此,我们表明Myf5是再生性肌生成和体内平衡的调节因子,其功能不同于Myod和Mrf4。

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