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Adaptive Myogenesis under Hypoxia

机译:低氧下的适应性肌发生

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Previous studies have indicated that myoblasts can differentiate and repair muscle injury after an ischemic insult. However, it is unclear how hypoxia or glucose deprivation in the ischemic microenvironment affects myoblast differentiation. We have found that myogenesis can adapt to hypoxic conditions. This adaptive mechanism is accompanied by initial inhibition of the myoD, E2A, and myogenin genes followed by resumption of their expression in an oxygen-dependent manner. The regulation of myoD transcription by hypoxia is correlated with transient deacetylation of histones associated with the myoD promoter. It is noteworthy that, unlike the differentiation of other cell types such as preadipocytes or chondroblasts, the effect of hypoxia on myogenesis is independent of HIF-1, a ubiquitous regulator of transcription under hypoxia. While myogenesis can also adapt to glucose deprivation, the combination of severe hypoxia and glucose deprivation found in an ischemic environment results in pronounced loss of myoblasts. Our studies indicate that the ischemic muscle can be repaired via the adaptive differentiation of myogenic precursors, which depends on the levels of oxygen and glucose in the ischemic microenvironment.
机译:先前的研究表明,成肌细胞可以在缺血性损伤后分化并修复肌肉损伤。但是,尚不清楚缺血性微环境中的缺氧或葡萄糖缺乏如何影响成肌细胞的分化。我们发现肌发生可以适应缺氧条件。这种适应性机制伴随着 myoD E2A 和肌生成素基因的初始抑制,然后以氧依赖性方式恢复其表达。低氧对 myoD 转录的调节与与 myoD 启动子相关的组蛋白的瞬时脱乙酰作用有关。值得注意的是,与其他细胞类型(如前脂肪细胞或软骨母细胞)的分化不同,缺氧对肌发生的影响独立于HIF-1,HIF-1是缺氧下无处不在的转录调节因子。虽然肌生成也可以适应葡萄糖剥夺,但在缺血环境中发现的严重缺氧和葡萄糖剥夺相结合会导致成肌细胞明显丢失。我们的研究表明,缺血性肌肉可以通过成肌前体的适应性分化来修复,这取决于缺血性微环境中氧气和葡萄糖的水平。

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