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A MyoD-generated feed-forward circuit temporally patterns gene expression during skeletal muscle differentiation

机译:MyoD生成的前馈电路在骨骼肌分化过程中暂时表达基因表达

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摘要

The development and differentiation of distinct cell types is achieved through the sequential expression of subsets of genes; yet, the molecular mechanisms that temporally pattern gene expression remain largely unknown. In skeletal myogenesis, gene expression is initiated by MyoD and includes the expression of specific Mef2 isoforms and activation of the p38 mitogen-activated protein kinase (MAPK) pathway. Here, we show that p38 activity facilitates MyoD and Mef2 binding at a subset of late-activated promoters, and the binding of Mef2D recruits Pol II. Most importantly, expression of late-activated genes can be shifted to the early stages of differentiation by precocious activation of p38 and expression of Mef2D, demonstrating that a MyoD-mediated feed-forward circuit temporally patterns gene expression.
机译:不同细胞类型的发育和分化是通过基因子集的顺序表达来实现的。然而,暂时不影响基因表达的分子机制仍然未知。在骨骼肌发生中,基因表达由MyoD启动,包括特定Mef2亚型的表达和p38丝裂原活化蛋白激酶(MAPK)途径的激活。在这里,我们显示p38活性促进了MyoD和Mef2在后期激活的启动子的子集上的结合,并且Mef2D募集了Pol II的结合。最重要的是,通过p38的过早激活和Mef2D的表达,可以将晚期激活基因的表达转移到分化的早期,这表明MyoD介导的前馈电路在时间上可以改变基因的表达方式。

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