Limb Immobilization Induces a Coordinate Down-Regulation of Mitochondrial and Other Metabolic Pathways in Men and Women

被引:145
作者
Abadi, Arkan
Glover, Elisa I.
Isfort, Robert J.
Raha, Sandeep
Safdar, Adeel
Yasuda, Nobuo
Kaczor, Jan J.
Melov, Simon
Hubbard, Alan
Qu, Xiaoyan
Phillips, Stuart M.
Tarnopolsky, Mark
机构
[1] Department of Pediatrics and Medicine, McMaster University, Hamilton, ON
[2] Procter and Gamble Company, Mason, OH
[3] Graduate School of Medicine, Juntendo University, Inba
[4] School of Medicine
[5] Buck Institute for Age Research, Novato, CA
[6] School of Public Health, University of California, Berkeley, CA
[7] Department of Kinesiology, McMaster University, Hamilton, ON
来源
PLOS ONE | 2009年 / 4卷 / 08期
关键词
D O I
10.1371/journal.pone.0006518
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Advancements in animal models and cell culture techniques have been invaluable in the elucidation of the molecular mechanisms that regulate muscle atrophy. However, few studies have examined muscle atrophy in humans using modern experimental techniques. The purpose of this study was to examine changes in global gene transcription during immobilization-induced muscle atrophy in humans and then explore the effects of the most prominent transcriptional alterations on protein expression and function. Healthy men and women (N=24) were subjected to two weeks of unilateral limb immobilization, with muscle biopsies obtained before, after 48 hours (48 H) and 14 days (14 D) of immobilization. Muscle cross sectional area (similar to 5%) and strength (10-20%) were significantly reduced in men and women (similar to 5% and 10-20%, respectively) after 14 D of immobilization. Micro-array analyses of total RNA extracted from biopsy samples at 48 H and 14 D uncovered 575 and 3,128 probes, respectively, which were significantly altered during immobilization. As a group, genes involved in mitochondrial bioenergetics and carbohydrate metabolism were predominant features at both 48 H and 14 D, with genes involved in protein synthesis and degradation significantly down-regulated and up-regulated, respectively, at 14 D of muscle atrophy. There was also a significant decrease in the protein content of mitochondrial cytochrome c oxidase, and the enzyme activity of cytochrome c oxidase and citrate synthase after 14 D of immobilization. Furthermore, protein ubiquitination was significantly increased at 48 H but not 14 D of immobilization. These results suggest that transcriptional and post-transcriptional suppression of mitochondrial processes is sustained throughout 14 D of immobilization, while protein ubiquitination plays an early but transient role in muscle atrophy following short-term immobilization in humans.
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页数:13
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