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六种蛋白质调节胚胎小鼠肢体中Myf5表达的激活。

Six proteins regulate the activation of Myf5 expression in embryonic mouse limbs.

作者信息

Giordani Julien, Bajard Lola, Demignon Josiane, Daubas Philippe, Buckingham Margaret, Maire Pascal

机构信息

Département de Génétique et Développement, Institut Cochin, Université Paris Descartes, Paris, France.

出版信息

Proc Natl Acad Sci U S A. 2007 Jul 3;104(27):11310-5. doi: 10.1073/pnas.0611299104. Epub 2007 Jun 25.

Abstract

Myf5, a member of the myogenic regulatory factor family, plays a major role in determining myogenic cell fate at the onset of skeletal muscle formation in the embryo. Spatiotemporal control of its expression during development requires multiple enhancer elements spread over >100 kb at the Myf5 locus. Transcription in embryonic limbs is regulated by a 145-bp element located at -57.5 kb from the Myf5 gene. In the present study we show that Myf5 expression is severely impaired in the limb buds of Six1(-/-) and Six1(-/-)Six4(-/+) mouse mutants despite the presence of myogenic progenitor cells. The 145-bp regulatory element contains a sequence that binds Six1 and Six4 in electromobility shift assays in vitro and in chromatin immunoprecipitation assays with embryonic extracts. We further show that Six1 is able to transactivate a reporter gene under the control of this sequence. In vivo functionality of the Six binding site is demonstrated by transgenic analysis. Mutation of this site impairs reporter gene expression in the limbs and in mature somites where the 145-bp regulatory element is also active. Six1/4 therefore regulate Myf5 transcription, together with Pax3, which was previously shown to be required for the activity of the 145-bp element. Six homeoproteins, which also directly regulate the myogenic differentiation gene Myogenin and lie genetically upstream of Pax3, thus control hypaxial myogenesis at multiple levels.

摘要

Myf5是生肌调节因子家族的成员之一,在胚胎骨骼肌形成起始阶段决定生肌细胞命运方面发挥着主要作用。其在发育过程中的表达时空控制需要多个增强子元件,这些元件分布在Myf5基因座上超过100 kb的区域。胚胎肢体中的转录受位于距Myf5基因-57.5 kb处的一个145 bp元件调控。在本研究中,我们发现尽管存在生肌祖细胞,但在Six1(-/-)和Six1(-/-)Six4(-/+)小鼠突变体的肢芽中,Myf5的表达严重受损。在体外电泳迁移率变动分析以及用胚胎提取物进行的染色质免疫沉淀分析中,145 bp的调控元件包含一个能与Six1和Six4结合的序列。我们进一步表明,Six1能够在该序列的控制下反式激活一个报告基因。Six结合位点在体内的功能通过转基因分析得以证明。该位点的突变会损害报告基因在肢体和成熟体节中的表达,而在成熟体节中145 bp的调控元件也具有活性。因此,Six1/4与Pax3一起调节Myf5的转录,此前已表明Pax3是145 bp元件活性所必需的。Six同源蛋白也直接调节生肌分化基因Myogenin,并且在遗传学上位于Pax3的上游,从而在多个水平上控制轴下肌生成。

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