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Myf5 基因的肌肉决定基因的直接分子调节,由 Pax3 进行,受 Six1/4 因子的调节,由 -111 kb-Myf5 增强子举例说明。

Direct molecular regulation of the myogenic determination gene Myf5 by Pax3, with modulation by Six1/4 factors, is exemplified by the -111 kb-Myf5 enhancer.

机构信息

Centre National de la Recherche Scientifique URA 2578, Department of Developmental and Stem Cell Biology, Pasteur Institute, 25 rue du Dr Roux, 75015 Paris, France.

出版信息

Dev Biol. 2013 Apr 15;376(2):236-44. doi: 10.1016/j.ydbio.2013.01.028. Epub 2013 Feb 4.

Abstract

The Myf5 gene plays an important role in myogenic determination during mouse embryo development. Multiple genomic regions of the Mrf4-Myf5 locus have been characterised as enhancer sequences responsible for the complex spatiotemporal expression of the Myf5 gene at the onset of myogenesis. These include an enhancer sequence, located at -111 kb upstream of the Myf5 transcription start site, which is responsible of Myf5 activation in ventral somitic domains (Ribas et al., 2011. Dev. Biol. 355, 372-380). We show that the -111 kb-Myf5 enhancer also directs transgene expression in some limb muscles, and is active at foetal as well as embryonic stages. We have carried out further characterisation of the regulation of this enhancer and show that the paired-box Pax3 transcription factor binds to it in vitro as in vivo, and that Pax binding sites are essential for its activity. This requirement is independent of the previously reported regulation by TEAD transcription factors. Six1/4 which, like Pax3, are important upstream regulators of myogenesis, also bind in vivo to sites in the -111 kb-Myf5 enhancer and modulate its activity. The -111 kb-Myf5 enhancer therefore shares common functional characteristics with another Myf5 regulatory sequence, the hypaxial and limb 145 bp-Myf5 enhancer, both being directly regulated in vivo by Pax3 and Six1/4 proteins. However, in the case of the -111 kb-Myf5 enhancer, Six has less effect and we conclude that Pax regulation plays a major role in controlling this aspect of the Myf5 gene expression at the onset of myogenesis in the embryo.

摘要

Myf5 基因在小鼠胚胎发育过程中的成肌决定中发挥重要作用。Mrf4-Myf5 基因座的多个基因组区域已被确定为增强子序列,负责 Myf5 基因在成肌发生时的复杂时空表达。其中包括一个位于 Myf5 转录起始位点上游-111 kb 的增强子序列,该序列负责腹侧体节域中 Myf5 的激活(Ribas 等人,2011 年。发育生物学。355,372-380)。我们表明,-111 kb-Myf5 增强子也可指导转基因在一些肢体肌肉中的表达,并且在胎儿期和胚胎期均具有活性。我们进一步对该增强子的调控进行了表征,表明配对盒 Pax3 转录因子在体内和体外均与其结合,并且 Pax 结合位点对于其活性是必需的。这种需求独立于先前报道的由 TEAD 转录因子调节。Six1/4 与 Pax3 一样,是成肌发生的重要上游调节因子,也在体内与-111 kb-Myf5 增强子结合并调节其活性。-111 kb-Myf5 增强子因此与另一个 Myf5 调节序列(腹侧和肢体 145 bp-Myf5 增强子)具有共同的功能特征,两者均直接受 Pax3 和 Six1/4 蛋白的体内调节。然而,在-111 kb-Myf5 增强子的情况下,Six 的作用较小,我们得出结论,Pax 调节在胚胎成肌发生时控制 Myf5 基因表达的这一方面起着主要作用。

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