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4E-BPs 的缺失可防止后肢固定引起的骨骼肌蛋白质合成减少。

Loss of 4E-BPs prevents the hindlimb immobilization-induced decrease in protein synthesis in skeletal muscle.

机构信息

Department of Cellular and Molecular Physiology, Penn State College of Medicine, Hershey, Pennsylvania.

Mass Spectrometry & Proteomics Core, Penn State College of Medicine, Hershey, Pennsylvania.

出版信息

J Appl Physiol (1985). 2023 Jan 1;134(1):72-83. doi: 10.1152/japplphysiol.00563.2022. Epub 2022 Dec 1.

Abstract

The present study was designed to test the hypothesis that upregulating protein synthesis attenuates the loss of muscle mass in a model of disuse atrophy. The studies compared the effect of unilateral hindlimb immobilization in wild-type (WT) mice and double-knockout (DKO) mice lacking the translational regulators 4E-BP1 and 4E-BP2. Immobilization-induced downregulation of protein synthesis occurred in both groups of mice, but protein synthesis was higher in gastrocnemius muscle from the immobilized hindlimb of fasted DKO compared with WT mice. Surprisingly, although protein synthesis was partially elevated in DKO compared with WT mice, atrophy occurred to the same extent in both groups of animals. This may be partially due to impaired leucine-induced stimulation of protein synthesis in DKO compared with WT mice due to downregulated eukaryotic initiation factor eIF4E expression in muscle of DKO compared with WT mice. Expression of the E3 ubiquitin ligases and mRNAs and total protein ubiquitylation was upregulated in the immobilized compared with the nonimmobilized hindlimb of both WT and DKO mice, with little difference in the magnitude of the upregulation between genotypes. Analysis of newly synthesized proteins revealed downregulation of several glycolytic enzymes in the gastrocnemius of DKO mice compared with WT mice, as well as in the immobilized compared with the nonimmobilized hindlimb. Overall, the results suggest that the elevated rate of protein synthesis during hindlimb immobilization in fasted DKO mice is insufficient to prevent disuse-induced muscle atrophy, probably due to induction of compensatory mechanisms including downregulation of eIF4E expression. Basal rates of protein synthesis are elevated in skeletal muscle in the immobilized leg of mice lacking the translational repressors, 4E-BP1 and 4E-BP2 (knockout mice), compared with wild-type mice. However, disuse-induced muscle atrophy occurs to the same extent in both wild-type and knockout mice suggesting that compensatory mechanisms are induced that overcome the upregulation of muscle protein synthesis. Proteomic analysis revealed that mRNAs encoding several glycolytic enzymes are differentially translated in wild-type and knockout mice.

摘要

本研究旨在验证这样一个假设,即上调蛋白质合成可减轻废用性萎缩模型中肌肉质量的损失。研究比较了野生型(WT)小鼠和缺乏翻译调节剂 4E-BP1 和 4E-BP2 的双敲除(DKO)小鼠单侧后肢固定模型的影响。两组小鼠均出现固定诱导的蛋白质合成下调,但禁食 DKO 小鼠固定后肢比 WT 小鼠的腓肠肌蛋白质合成更高。令人惊讶的是,尽管与 WT 小鼠相比,DKO 中的蛋白质合成部分升高,但两组动物的萎缩程度相同。这可能部分是由于 DKO 小鼠肌肉中真核起始因子 eIF4E 表达下调,导致 DKO 小鼠中亮氨酸诱导的蛋白质合成刺激部分受损。与 WT 小鼠相比,E3 泛素连接酶 和 的 mRNA 和总蛋白泛素化在固定侧与非固定侧相比均上调,两种基因型之间的上调幅度差异不大。新合成蛋白质的分析表明,与 WT 小鼠相比,DKO 小鼠的腓肠肌中几种糖酵解酶下调,与固定侧与非固定侧相比也是如此。总的来说,结果表明,在禁食 DKO 小鼠的后肢固定期间,蛋白质合成率的升高不足以防止废用性肌肉萎缩,可能是由于诱导了补偿机制,包括 eIF4E 表达下调。与野生型小鼠相比,缺乏翻译抑制剂 4E-BP1 和 4E-BP2(敲除小鼠)的后肢固定小鼠的骨骼肌中基础蛋白质合成率升高。然而,野生型和敲除型小鼠的废用性肌肉萎缩程度相同,这表明诱导了补偿机制,克服了肌肉蛋白质合成的上调。蛋白质组学分析表明,野生型和敲除型小鼠中几种糖酵解酶的 mRNA 编码不同程度地翻译。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3965/9799152/cf9038677b52/jappl-00563-2022r01.jpg

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