萎缩
肌肉萎缩
生物
骨骼肌
蛋白质组学
计算生物学
刺激(心理学)
细胞生物学
生物信息学
神经科学
遗传学
基因
解剖
心理学
心理治疗师
作者
Liam C. Hunt,Flávia A. Graça,Vishwajeeth Pagala,Yong‐Dong Wang,Yuxin Li,Zuo‐Fei Yuan,Yiping Fan,Myriam Labelle,Junmin Peng,Fabio Demontis
出处
期刊:Cell Reports
[Cell Press]
日期:2021-11-01
卷期号:37 (6): 109971-109971
被引量:69
标识
DOI:10.1016/j.celrep.2021.109971
摘要
Skeletal muscle atrophy is a debilitating condition that occurs with aging and disease, but the underlying mechanisms are incompletely understood. Previous work determined that common transcriptional changes occur in muscle during atrophy induced by different stimuli. However, whether this holds true at the proteome level remains largely unexplored. Here, we find that, contrary to this earlier model, distinct atrophic stimuli (corticosteroids, cancer cachexia, and aging) induce largely different mRNA and protein changes during muscle atrophy in mice. Moreover, there is widespread transcriptome-proteome disconnect. Consequently, atrophy markers (atrogenes) identified in earlier microarray-based studies do not emerge from proteomics as generally induced by atrophy. Rather, we identify proteins that are distinctly modulated by different types of atrophy (herein defined as "atroproteins") such as the myokine CCN1/Cyr61, which regulates myofiber type switching during sarcopenia. Altogether, these integrated analyses indicate that different catabolic stimuli induce muscle atrophy via largely distinct mechanisms.
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