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首页> 外文期刊>Molecular biology of the cell >MyoD distal regulatory region contains an SRF binding CArG element required for MyoD expression in skeletal myoblasts and during muscle regeneration
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MyoD distal regulatory region contains an SRF binding CArG element required for MyoD expression in skeletal myoblasts and during muscle regeneration

机译:MyoD远端调控区包含SRF结合CArG元素,在骨骼成肌细胞和肌肉再生过程中MyoD表达所需

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摘要

We show here that the distal regulatory region (DRR) of the mouse and human MyoD gene contains a conserved SRF binding CArG-like element. In electrophoretic mobility shift assays with myoblast nuclear extracts, this CArG sequence, although slightly divergent, bound two complexes containing, respectively, the transcription factor YY1 and SRF associated with the acetyltrans-ferase CBP and members of C/EBP family. A single nucleotide mutation in the MyoD-CArG element suppressed binding of both SRF and YY1 complexes and abolished DRR enhancer activity in stably transfected myoblasts. This MyoD-CArG sequence is active in modulating endogeneous MyoD gene expression because microinjection of oligonucleotides corresponding to the MyoD-CArG sequence specifically and rapidly suppressed MyoD) expression in myoblasts. In vivo, the expression of a transgenic construct comprising a minimal MyoD promoter fused to the DRR and P-galactosidase was induced with the same kinetics as MyoD during mouse muscle regeneration. In contrast induction of this reporter was no longer seen in regenerating muscle from transgenic mice carrying a mutated DRR-CArG. These results show that an SRF binding CArG element present in MyoD gene DRR is involved in the control of MyoD gene expression in skeletal myoblasts and in mature muscle satellite cell activation during muscle regeneration. [References: 59]
机译:我们在这里显示,小鼠和人类MyoD基因的远端调控区(DRR)包含一个保守的SRF结合CArG样元素。在用成肌细胞核提取物进行的电泳迁移率变动分析中,此CArG序列虽然略有差异,但结合了两个复合物,分别包含与乙酰基转移酶CBP和C / EBP家族成员相关的转录因子YY1和SRF。在稳定转染的成肌细胞中,MyoD-CArG元件中的单个核苷酸突变抑制了SRF和YY1复合物的结合,并废除了DRR增强子活性。该MyoD-CArG序列在调节内源性MyoD基因表达中具有活性,因为显微注射对应于MyoD-CArG序列的寡核苷酸可特异性并迅速抑制成肌细胞中的MyoD)表达。在体内,在小鼠肌肉再生过程中,以与MyoD相同的动力学诱导了包含与DRR和P-半乳糖苷酶融合的最小MyoD启动子的转基因构建体的表达。相反,在携带突变的DRR-CArG的转基因小鼠的再生肌肉中不再看到该报告基因的诱导。这些结果表明,存在于MyoD基因DRR中的SRF结合CArG元件参与骨骼肌成肌细胞中MyoD基因表达的控制以及肌肉再生过程中成熟的肌肉卫星细胞的活化。 [参考:59]

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