首页> 外文期刊>Development >The early epaxial enhancer is essential for the initial expression of the skeletal muscle determination gene Myf5 but not for subsequent, multiple phases of somitic myogenesis.
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The early epaxial enhancer is essential for the initial expression of the skeletal muscle determination gene Myf5 but not for subsequent, multiple phases of somitic myogenesis.

机译:早期的轴突增强子对于骨骼肌测定基因Myf5的初始表达必不可少,但对于随后的体细胞性肌发生的多个阶段则不是必需的。

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摘要

Vertebrate myogenesis is controlled by four transcription factors known as the myogenic regulatory factors (MRFs): Myf5, Mrf4, myogenin and MyoD. During mouse development Myf5 is the first MRF to be expressed and it acts by integrating multiple developmental signals to initiate myogenesis. Numerous discrete regulatory elements are involved in the activation and maintenance of Myf5 gene expression in the various muscle precursor populations, reflecting the diversity of the signals that control myogenesis. Here we focus on the enhancer that recapitulates the first phase of Myf5 expression in the epaxial domain of the somite, in order to identify the subset of cells that first transcribes the gene and therefore gain insight into molecular, cellular and anatomical facets of early myogenesis. Deletion of this enhancer from a YAC reporter construct that recapitulates the Myf5 expression pattern demonstrates that this regulatory element is necessary for expression in the early epaxial somite but in no other site of myogenesis. Importantly, Myf5 is subsequently expressed in the epaxial myotome under the control of other elements located far upstream of the gene. Our data suggest that the inductive signals that control Myf5 expression switch rapidly from those that impinge on the early epaxial enhancer to those that impinge on the other enhancers that act later in the epaxial somite, indicating that there are significant changes in either the signalling environment or the responsiveness of the cells along the rostrocaudal axis. We propose that the first phase of Myf5 epaxial expression, driven by the early epaxial enhancer in the dermomyotome, is necessary for early myotome formation, while the subsequent phases are associated with cytodifferentiation within the myotome.
机译:脊椎动物的肌发生由四个称为肌发生调节因子(MRF)的转录因子控制:Myf5,Mrf4,肌生成素和MyoD。在小鼠发育过程中,Myf5是第一个表达的MRF,它通过整合多个发育信号来启动肌发生而起作用。在各种肌肉前体群体中,Myf5基因表达的激活和维持涉及许多离散的调控元件,反映了控制肌发生的信号的多样性。在这里,我们专注于概括在somite轴向域中Myf5表达的第一阶段的增强子,以鉴定首先转录该基因的细胞子集,从而深入了解早期肌发生的分子,细胞和解剖学方面。从概括了Myf5表达模式的YAC报告基因构建体中删除了该增强子,表明该调控元件对于在早期远轴索姆体中表达是必需的,但在其他非肌发生部位中则是必需的。重要的是,Myf5随后在远距离的基因上游的其他元件的控制下在远轴肌节中表达。我们的数据表明,控制Myf5表达的感应信号从撞击早期轴突增强子的那些信号迅速切换到撞击于后来在轴突体中起作用的其他增强子的那些信号,这表明信号传导环境或沿尾尾轴的细胞反应性。我们建议由肌皮膜切开术中的早期轴突增强子驱动的Myf5轴突表达的第一阶段对于早期的成肌节形成是必要的,而随后的阶段则与在肌膜内的细胞分化有关。

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