脱氮酶
泛素
肌肉萎缩
浪费的
萎缩
骨骼肌
内分泌学
蛋白质降解
内科学
化学
心肌细胞
去神经支配
蛋白酶
恶病质
细胞生物学
酶
生物
生物化学
癌症
医学
基因
作者
Nathalie Bédard,Samer Jammoul,Tamara Moore,Linda Wykes,Patricia L. Hallauer,Kenneth E.M. Hastings,Cynthia Stretch,Vickie E. Baracos,Stéphanie Chevalier,Marie Plourde,Erin M. Coyne,Simon S. Wing
摘要
The ubiquitin system plays a critical role in muscle wasting. Previous work has focused on the roles of ubiquitination. However, a role for deubiquitination in this process has not been established. Because ubiquitin-specific protease (USP)19 deubiquitinating enzyme is induced in skeletal muscle in many catabolic conditions, we generated USP19 knockout (KO) mice. These mice lost less muscle mass than wild-type (WT) animals in response to glucocorticoids, a common systemic cause of muscle atrophy as well as in response to denervation, a model of disuse atrophy. KO mice retained more strength and had less myofiber atrophy with both type I and type IIb fibers being protected. Rates of muscle protein synthesis were similar in WT and KO mice, suggesting that the sparing of atrophy was attributed to suppressed protein degradation. Consistent with this, expression of the ubiquitin ligases MuRF1 and MAFbx/atrogin-1 as well as several autophagy genes was decreased in the muscles of catabolic KO mice. Expression of USP19 correlates with that of MuRF1 and MAFbx/atrogin-1 in skeletal muscles from patients with lung cancer or gastrointestinal cancer, suggesting that USP19 is involved in human muscle wasting. Inhibition of USP19 may be a useful approach to the treatment of many muscle-wasting conditions.
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