内分泌学
内科学
骨骼肌
生物
线粒体
葡萄糖稳态
雌激素受体
氧化应激
平衡
钙调神经磷酸酶
线粒体分裂
细胞生物学
胰岛素抵抗
胰岛素
医学
癌症
乳腺癌
移植
作者
Vicent Ribas,Brian G. Drew,Zhenqi Zhou,Jennifer Phun,Nareg Kalajian,Teo Soleymani,Pedram Daraei,Kevin Widjaja,Jonathan Wanagat,Thomas Q. de Aguiar Vallim,Amy Fluitt,Steven J. Bensinger,Thuc Le,Caius G. Radu,Julian P. Whitelegge,Simon W. Beaven,Peter Tontonoz,Aldons J. Lusis,Brian W. Parks,Laurent Vergnes
标识
DOI:10.1126/scitranslmed.aad3815
摘要
Impaired estrogen receptor α (ERα) action promotes obesity and metabolic dysfunction in humans and mice; however, the mechanisms underlying these phenotypes remain unknown. Considering that skeletal muscle is a primary tissue responsible for glucose disposal and oxidative metabolism, we established that reduced ERα expression in muscle is associated with glucose intolerance and adiposity in women and female mice. To test this relationship, we generated muscle-specific ERα knockout (MERKO) mice. Impaired glucose homeostasis and increased adiposity were paralleled by diminished muscle oxidative metabolism and bioactive lipid accumulation in MERKO mice. Aberrant mitochondrial morphology, overproduction of reactive oxygen species, and impairment in basal and stress-induced mitochondrial fission dynamics, driven by imbalanced protein kinase A-regulator of calcineurin 1-calcineurin signaling through dynamin-related protein 1, tracked with reduced oxidative metabolism in MERKO muscle. Although muscle mitochondrial DNA (mtDNA) abundance was similar between the genotypes, ERα deficiency diminished mtDNA turnover by a balanced reduction in mtDNA replication and degradation. Our findings indicate the retention of dysfunctional mitochondria in MERKO muscle and implicate ERα in the preservation of mitochondrial health and insulin sensitivity as a defense against metabolic disease in women.
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