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DNA Methylation in Skeletal Muscle Stem Cell Specification Proliferation and Differentiation

机译:骨骼肌干细胞中DNA甲基化的规范增殖和分化

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摘要

An unresolved and critically important question in skeletal muscle biology is how muscle stem cells initiate and regulate the genetic program during muscle development. Epigenetic dynamics are essential for cellular development and organogenesis in early life and it is becoming increasingly clear that epigenetic remodeling may also be responsible for the cellular adaptations that occur in later life. DNA methylation of cytosine bases within CpG dinucleotide pairs is an important epigenetic modification that reduces gene expression when located within a promoter or enhancer region. Recent advances in the field suggest that epigenetic regulation is essential for skeletal muscle stem cell identity and subsequent cell development. This review summarizes what is currently known about how skeletal muscle stem cells regulate the myogenic program through DNA methylation, discusses a novel role for metabolism in this process, and addresses DNA methylation dynamics in adult skeletal muscle in response to physical activity.
机译:骨骼肌生物学中一个尚未解决且至关重要的问题是,肌肉干细胞如何在肌肉发育过程中启动并调节遗传程序。表观遗传动力学对于早期生命中的细胞发育和器官发生至关重要,而且越来越清楚的是表观遗传重塑也可能是导致后期生命发生的细胞适应的原因。 CpG二核苷酸对中胞嘧啶碱基的DNA甲基化是重要的表观遗传修饰,当位于启动子或增强子区域时,其会降低基因表达。该领域的最新进展表明,表观遗传调控对于骨骼肌干细胞特性和随后的细胞发育至关重要。这篇综述总结了关于骨骼肌干细胞如何通过DNA甲基化调节肌原性程序的最新知识,讨论了在此过程中新陈代谢的作用,并探讨了成年人骨骼肌中DNA甲基化动力学响应于身体活动。

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