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肌肉外周生物钟通过提高Ror/Rev-erb平衡驱动夜间蛋白质降解,并预防过早的肌肉减少症。

Muscle peripheral circadian clock drives nocturnal protein degradation via raised Ror/Rev-erb balance and prevents premature sarcopenia.

作者信息

Kelu Jeffrey J, Hughes Simon M

机构信息

Randall Centre for Cell and Molecular Biophysics, School of Basic and Medical Biosciences, Faculty of Life Sciences and Medicine, King's College London, London SE1 1UL, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2025 May 13;122(19):e2422446122. doi: 10.1073/pnas.2422446122. Epub 2025 May 5.

Abstract

How central and peripheral circadian clocks regulate protein metabolism and affect tissue mass homeostasis has been unclear. Circadian shifts in the balance between anabolism and catabolism control muscle growth rate in young zebrafish independent of behavioral cycles. Here, we show that the ubiquitin-proteasome system (UPS) and autophagy, which mediate muscle protein degradation, are each upregulated at night under the control of the muscle peripheral clock. Perturbation of the muscle transcriptional molecular clock disrupts nocturnal proteolysis, increases muscle growth measured over 12 h, and compromises muscle function. Mechanistically, the shifting circadian balance of Ror and Rev-erb regulates nocturnal UPS, autophagy, and muscle growth through altered TORC1 activity. Although environmental zeitgebers initially mitigate defects, lifelong muscle clock inhibition reduces muscle size and growth rate, accelerating aging-related loss of muscle mass and function. Circadian misalignment such as shift work, sleep deprivation, or dementia may thus unsettle muscle proteostasis, contributing to muscle wasting and sarcopenia.

摘要

中枢和外周生物钟如何调节蛋白质代谢并影响组织质量稳态尚不清楚。在幼体斑马鱼中,合成代谢和分解代谢之间平衡的昼夜节律变化独立于行为周期控制着肌肉生长速率。在这里,我们表明,介导肌肉蛋白质降解的泛素-蛋白酶体系统(UPS)和自噬在肌肉外周生物钟的控制下在夜间均上调。肌肉转录分子生物钟的扰动会破坏夜间蛋白水解,增加12小时内测量的肌肉生长,并损害肌肉功能。从机制上讲,Ror和Rev-erb昼夜节律平衡的变化通过改变TORC1活性来调节夜间UPS、自噬和肌肉生长。尽管环境授时因子最初可减轻缺陷,但终身抑制肌肉生物钟会减小肌肉大小并降低生长速率,加速与衰老相关的肌肉质量和功能丧失。因此,诸如轮班工作、睡眠剥夺或痴呆等昼夜节律失调可能会扰乱肌肉蛋白质稳态,导致肌肉萎缩和肌肉减少症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19d0/12088385/0fb1798c2ed0/pnas.2422446122fig01.jpg

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