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进食和运动对人骨骼肌中mTOR复合物的差异定位及合成代谢反应

Differential localization and anabolic responsiveness of mTOR complexes in human skeletal muscle in response to feeding and exercise.

作者信息

Hodson Nathan, McGlory Chris, Oikawa Sara Y, Jeromson Stewart, Song Zhe, Rüegg Markus A, Hamilton D Lee, Phillips Stuart M, Philp Andrew

机构信息

School of Sport, Exercise and Rehabilitation Sciences, University of Birmingham, Birmingham, United Kingdom.

Department of Kinesiology, McMaster University, Hamilton, Ontario, Canada.

出版信息

Am J Physiol Cell Physiol. 2017 Dec 1;313(6):C604-C611. doi: 10.1152/ajpcell.00176.2017. Epub 2017 Sep 27.

Abstract

Mechanistic target of rapamycin (mTOR) resides as two complexes within skeletal muscle. mTOR complex 1 [mTORC1-regulatory associated protein of mTOR (Raptor) positive] regulates skeletal muscle growth, whereas mTORC2 [rapamycin-insensitive companion of mTOR (Rictor) positive] regulates insulin sensitivity. To examine the regulation of these complexes in human skeletal muscle, we utilized immunohistochemical analysis to study the localization of mTOR complexes before and following protein-carbohydrate feeding (FED) and resistance exercise plus protein-carbohydrate feeding (EXFED) in a unilateral exercise model. In basal samples, mTOR and the lysosomal marker lysosomal associated membrane protein 2 (LAMP2) were highly colocalized and remained so throughout. In the FED and EXFED states, mTOR/LAMP2 complexes were redistributed to the cell periphery [wheat germ agglutinin (WGA)-positive staining] (time effect; = 0.025), with 39% (FED) and 26% (EXFED) increases in mTOR/WGA association observed 1 h post-feeding/exercise. mTOR/WGA colocalization continued to increase in EXFED at 3 h (48% above baseline) whereas colocalization decreased in FED (21% above baseline). A significant effect of condition ( = 0.05) was noted suggesting mTOR/WGA colocalization was greater during EXFED. This pattern was replicated in Raptor/WGA association, where a significant difference between EXFED and FED was noted at 3 h post-exercise/feeding ( = 0.014). Rictor/WGA colocalization remained unaltered throughout the trial. Alterations in mTORC1 cellular location coincided with elevated S6K1 kinase activity, which rose to a greater extent in EXFED compared with FED at 1 h post-exercise/feeding ( < 0.001), and only remained elevated in EXFED at the 3 h time point ( = 0.037). Collectively these data suggest that mTORC1 redistribution within the cell is a fundamental response to resistance exercise and feeding, whereas mTORC2 is predominantly situated at the sarcolemma and does not alter localization.

摘要

雷帕霉素的机制性靶点(mTOR)在骨骼肌中以两种复合物的形式存在。mTOR复合物1(mTORC1 - 雷帕霉素靶蛋白调节相关蛋白(Raptor)阳性)调节骨骼肌生长,而mTOR复合物2(mTORC2 - 雷帕霉素不敏感伴侣蛋白(Rictor)阳性)调节胰岛素敏感性。为了研究这些复合物在人类骨骼肌中的调节作用,我们利用免疫组织化学分析,在单侧运动模型中研究了蛋白质 - 碳水化合物喂养(进食)和抗阻运动加蛋白质 - 碳水化合物喂养(运动后进食)前后mTOR复合物的定位。在基础样本中,mTOR与溶酶体标志物溶酶体相关膜蛋白2(LAMP2)高度共定位,并且在整个过程中保持如此。在进食和运动后进食状态下,mTOR/LAMP2复合物重新分布到细胞周边(小麦胚芽凝集素(WGA)阳性染色)(时间效应;P = 0.025),在进食/运动后1小时观察到mTOR/WGA关联增加39%(进食)和26%(运动后进食)。在运动后进食状态下,mTOR/WGA共定位在3小时时继续增加(比基线高48%),而在进食状态下共定位减少(比基线高21%)。观察到状态有显著影响(P = 0.05),表明运动后进食期间mTOR/WGA共定位更高。这种模式在Raptor/WGA关联中得到重复,在运动/进食后3小时,运动后进食和进食之间存在显著差异(P = 0.014)。在整个试验过程中,Rictor/WGA共定位保持不变。mTORC1细胞位置的改变与S6K1激酶活性升高一致,在运动/进食后1小时,运动后进食组的S6K1激酶活性升高幅度比进食组更大(P < 0.001),并且仅在运动后进食组的3小时时间点保持升高(P = 0.037)。总体而言,这些数据表明mTORC1在细胞内的重新分布是对抗阻运动和喂养的基本反应,而mTORC2主要位于肌膜,并且不改变定位。

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