细胞生物学
福克斯O1
祖细胞
生物
亚细胞定位
DNA甲基化
甲基化
化学
信号转导
干细胞
基因表达
细胞质
遗传学
蛋白激酶B
基因
作者
Kun Ho Kim,Stephanie N. Oprescu,Madigan M. Snyder,Aran Kim,Zhihao Jia,Feng Yue,Shihuan Kuang
出处
期刊:Cell Reports
[Cell Press]
日期:2023-10-25
卷期号:42 (11): 113329-113329
被引量:26
标识
DOI:10.1016/j.celrep.2023.113329
摘要
Development is regulated by various factors, including protein methylation status. While PRMT5 is well known for its roles in oncogenesis by mediating symmetric di-methylation of arginine, its role in normal development remains elusive. Using Myod1Cre to drive Prmt5 knockout in embryonic myoblasts (Prmt5MKO), we dissected the role of PRMT5 in myogenesis. The Prmt5MKO mice are born normally but exhibit progressive muscle atrophy and premature death. Prmt5MKO inhibits proliferation and promotes premature differentiation of embryonic myoblasts, reducing the number and regenerative function of satellite cells in postnatal mice. Mechanistically, PRMT5 methylates and destabilizes FoxO1. Prmt5MKO increases the total FoxO1 level and promotes its cytoplasmic accumulation, leading to activation of autophagy and depletion of lipid droplets (LDs). Systemic inhibition of autophagy in Prmt5MKO mice restores LDs in myoblasts and moderately improves muscle regeneration. Together, PRMT5 is essential for muscle development and regeneration at least partially through mediating FoxO1 methylation and LD turnover.
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