Guangdong Second Provincial General Hospital, Guangdong Traditional Medical and Sports Injury Rehabilitation Research Institute, Guangzhou, China.
Cell Cycle. 2023 Mar;22(5):495-505. doi: 10.1080/15384101.2022.2129240. Epub 2022 Oct 2.
Skeletal muscle development is a multistep biological process regulated by a variety of myogenic regulatory factors, including MyoG, MyoD, Myf5, and Myf6 (also known as MRF4), as well as members of the FoxO subfamily. Differentiation and regeneration during skeletal muscle myogenesis contribute to the physiological function of muscles. Super enhancers (SEs) and enhancer RNAs (eRNAs) are involved in the regulation of development and diseases. Few studies have identified the roles of SEs and eRNAs in muscle development and pathophysiology. To develop approaches to enhance skeletal muscle mass and function, a more comprehensive understanding of the key processes underlying muscular diseases is needed. In this review, we summarize the roles of SEs and eRNAs in muscle development and disease through affecting of DNA methylation, FoxO subfamily, RAS-MEK signaling, chromatin modifications and accessibility, MyoD and cis regulating target genes. The summary could inform strategies to increase muscle mass and treat muscle-related diseases.
骨骼肌发育是一个多步骤的生物学过程,受多种肌源性调节因子的调控,包括 MyoG、MyoD、Myf5 和 Myf6(也称为 MRF4),以及 FoxO 亚家族的成员。骨骼肌发生过程中的分化和再生有助于肌肉的生理功能。超级增强子(SEs)和增强子 RNA(eRNAs)参与发育和疾病的调节。很少有研究确定 SEs 和 eRNAs 在肌肉发育和病理生理学中的作用。为了开发增强骨骼肌质量和功能的方法,需要更全面地了解肌肉疾病的关键过程。在这篇综述中,我们通过影响 DNA 甲基化、FoxO 亚家族、RAS-MEK 信号、染色质修饰和可及性、MyoD 和顺式调节靶基因,总结了 SEs 和 eRNAs 在肌肉发育和疾病中的作用。该总结可以为增加肌肉质量和治疗与肌肉相关的疾病提供策略。