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首页> 外文期刊>Molecular biology of the cell >Identification of a New Hybrid Serum Response Factor and Myocyte Enhancer Factor 2-binding Element in MyoD Enhancer Required for MyoD Expression during Myogenesis
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Identification of a New Hybrid Serum Response Factor and Myocyte Enhancer Factor 2-binding Element in MyoD Enhancer Required for MyoD Expression during Myogenesis

机译:鉴定新的杂合血清反应因子和肌细胞增强因子2结合元件在成肌过程中表达MyoD所需的MyoD增强子中。

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MyoD is a critical myogenic factor induced rapidly upon activation of quiescent satellite cells, and required for their differentiation during muscle regeneration. One of the two enhancers of MyoD , the distal regulatory region, is essential for MyoD expression in postnatal muscle. This enhancer contains a functional divergent serum response factor (SRF)-binding CArG element required for MyoD expression during myoblast growth and muscle regeneration in vivo. Electrophoretic mobility shift assay, chromatin immunoprecipitation, and microinjection analyses show this element is a hybrid S RF- and M EF2 B inding (SMB) sequence where myocyte enhancer factor 2 (MEF2) complexes can compete out binding of SRF at the onset of differentiation. As cells differentiate into postmitotic myotubes, MyoD expression no longer requires SRF but instead MEF2 binding to this dual-specificity element. As such, the MyoD enhancer SMB element is the site for a molecular relay where MyoD expression is first initiated in activated satellite cells in an SRF-dependent manner and then increased and maintained by MEF2 binding in differentiated myotubes. Therefore, SMB is a DNA element with dual and stage-specific binding activity, which modulates the effects of regulatory proteins critical in controlling the balance between proliferation and differentiation.
机译:MyoD是激活静止卫星细胞后迅速诱导的关键肌原性因子,是肌肉再生过程中分化所必需的。 MyoD的两个增强子之一,即远端调节区域,对于产后肌肉中MyoD的表达至关重要。这种增强剂包含成肌细胞生长和体内肌肉再生期间MyoD表达所需的功能性发散性血清反应因子(SRF)结合CArG元素。电泳迁移率变动分析,染色质免疫沉淀和显微注射分析表明,该元件是杂化的S RF和M EF2 B inding(SMB)序列,其中心肌细胞增强因子2(MEF2)复合物可在分化开始时竞争SRF的结合。随着细胞分化为有丝分裂后的肌管,MyoD的表达不再需要SRF,而需要MEF2结合到这种双重特异性元件上。因此,MyoD增强剂SMB元件是分子继电器的位点,其中,MyoD表达首先以依赖SRF的方式在活化的卫星细胞中启动,然后通过MEF2在分化的肌管中的结合而增加并保持。因此,SMB是具有双重和阶段特异性结合活性的DNA元件,可调节调节蛋白的作用,而调节蛋白对于控制增殖和分化之间的平衡至关重要。

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