Type I fiber decrease and ectopic fat accumulation in skeletal muscle from women with PCOS

内分泌学 内科学 多囊卵巢 脂肪组织 骨骼肌 胰岛素抵抗 下调和上调 脂滴包被蛋白 生物 高雄激素血症 细胞外基质 细胞生物学 胰岛素 医学 脂肪细胞 生物化学 基因
作者
Elisabet Stener‐Victorin,Gunilla Eriksson,Man Mohan Shresta,C Perian,Brigitte Jude,Viktor Engman,Roberto Boi,Erika Nilsson,Charlotte Ling,J. Scott Nystrom,Ingrid Wernstedt Asterholm,Johanna T. Lanner,Anna Benrick
标识
DOI:10.7554/elife.87592
摘要

Polycystic ovary syndrome’s (PCOS) main feature is hyperandrogenism, which is linked to a higher risk of metabolic disorders in women. Gene expression analyses in adipose tissue and skeletal muscle reveal dysregulated metabolic pathways in women with PCOS, but these differences do not necessarily lead to changes in protein levels and biological function. To advance our understanding of the molecular alterations in PCOS, we performed global proteomic and phosphorylation site analysis using tandem mass spectrometry. Adipose tissue and skeletal muscle were collected at baseline from 10 women with and without PCOS, and in women with PCOS after 5 weeks of treatment with electrical stimulation. Perilipin-1, a protein that typically coats the surface of lipid droplets in adipocytes, was increased whereas proteins involved in muscle contraction and type I muscle fiber function were downregulated in PCOS muscle. Proteins in the thick and thin filaments had many altered phosphorylation sites, indicating differences in protein activity and function. The upregulated proteins in muscle post treatment were enriched in pathways involved in extracellular matrix organization and wound healing, which may reflect a protective adaptation to repeated contractions and tissue damage due to needling. A similar, albeit less pronounced, upregulation in extracellular matrix organization pathways was also seen in adipose tissue. Our results suggest that hyperandrogenic women with PCOS have higher levels of extramyocellular lipids and fewer oxidative insulin-sensitive type I muscle fibers. These could be key factors leading insulin resistance in PCOS muscle while electric stimulation-induced tissue remodeling may be protective.
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