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Contrasting roles for MyoD in organizing myogenic promoter structures during embryonic skeletal muscle development

机译:myoD在胚胎骨骼肌发育过程中组织肌源性启动子结构的对比作用

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摘要

BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in the onset of expression of different lineage-specific genes. The lineage-determining factor MyoD is bound to myogenic genes at the onset of differentiation whether gene activation is immediate or delayed. How temporal regulation of differentiation-specific genes is established remains unclear.RESULTS: Using embryonic tissue, we addressed the molecular differences in the organization of the myogenin and muscle creatine kinase (MCK) gene promoters by examining regulatory factor binding as a function of both time and spatial organization during somitogenesis. At the myogenin promoter, binding of the homeodomain factor Pbx1 coincided with H3 hyperacetylation and was followed by binding of co-activators that modulate chromatin structure. MyoD and myogenin binding occurred subsequently, demonstrating that Pbx1 facilitates chromatin remodeling and modification before myogenic regulatory factor binding. At the same time, the MCK promoter was bound by HDAC2 and MyoD, and activating histone marks were largely absent. The association of HDAC2 and MyoD was confirmed by co-immunoprecipitation, proximity ligation assay (PLA), and sequential ChIP.CONCLUSIONS: MyoD differentially promotes activated and repressed chromatin structures at myogenic genes early after the onset of skeletal muscle differentiation in the developing mouse embryo.
机译:背景:骨骼肌分化的复杂性包括不同谱系特异性基因表达的时间差异。无论基因激活是立即激活还是延迟,谱系决定因子MyoD在分化开始时都与成肌基因结合。结果:尚不清楚如何建立分化特异性基因的时间调控。结果:使用胚胎组织,我们通过检查调节因子结合与时间的关系,解决了肌生成素和肌肉肌酸激酶(MCK)基因启动子组织中的分子差异。发生过程中的空间和空间组织。在肌生成素启动子上,同源结构域因子Pbx1的结合与H3超乙酰化相吻合,随后是调节染色质结构的共激活因子的结合。随后发生了MyoD和肌生成素的结合,表明Pbx1促进了肌生成调节因子结合之前的染色质重塑和修饰。同时,MCK启动子与HDAC2和MyoD结合,并且基本上没有激活组蛋白标记。 HDAC2和MyoD的关联已通过共免疫沉淀,邻近结扎分析(PLA)和顺序ChIP证实。结论:MyoD在发育中的小鼠胚胎骨骼肌分化开始后早期就促进了成肌基因的染色质结构的激活和抑制。 。

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