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收缩活动对骨骼肌线粒体亚组分中蛋白质周转的影响。

Effect of contractile activity on protein turnover in skeletal muscle mitochondrial subfractions.

作者信息

Connor M K, Bezborodova O, Escobar C P, Hood D A

机构信息

Departments of Biology and of Kinesiology and Health Science, York University, Toronto, Canada M3J 1P3.

出版信息

J Appl Physiol (1985). 2000 May;88(5):1601-6. doi: 10.1152/jappl.2000.88.5.1601.

DOI:10.1152/jappl.2000.88.5.1601
PMID:10797119
Abstract

To determine the role of intramitochondrial protein synthesis (PS) and degradation (PD) in contractile activity-induced mitochondrial biogenesis, we evaluated rates of [(35)S]methionine incorporation into protein in isolated rat muscle subsarcolemmal (SS) and intermyofibrillar (IMF) mitochondria. Rates of PS ranged from 47 to 125% greater (P < 0.05) in IMF compared with SS mitochondria. Intense, acute in situ contractile activity (10 Hz, 5 min) of fast-twitch gastrocnemius muscle resulted in a 50% decrease in PS (P < 0.05) in SS but not IMF mitochondria. Recovery, or continued contractile activity (55 min), reestablished PS in SS mitochondria. In contrast, PS was not affected in either SS or IMF mitochondria after prolonged (60-min) contractile activity in the presence or absence of a recovery period. PD was not influenced by 5 min of contractile activity in the presence or absence of recovery but was reduced after 60 min of contractions followed by recovery. Chronic stimulation (10 Hz, 3 h/day, 14 days) increased muscle cytochrome-c oxidase activity by 2.2-fold but reduced PS in IMF mitochondria by 29% (P < 0.05; n = 4). PS in SS mitochondria and PD in both subfractions were not changed by chronic stimulation. Thus acute contractile activity exerts differential effects on protein turnover in IMF and SS mitochondria, and it appears that intramitochondrial PS does not limit the extent of chronic contractile activity-induced mitochondrial biogenesis.

摘要

为了确定线粒体内蛋白质合成(PS)和降解(PD)在收缩活动诱导的线粒体生物发生中的作用,我们评估了[³⁵S]甲硫氨酸掺入分离的大鼠肌肉肌膜下(SS)和肌原纤维间(IMF)线粒体蛋白质中的速率。与SS线粒体相比,IMF线粒体中的PS速率高出47%至125%(P<0.05)。快速收缩的腓肠肌进行强烈的急性原位收缩活动(10Hz,5分钟)导致SS线粒体中的PS降低50%(P<0.05),而IMF线粒体中的PS未受影响。恢复或持续收缩活动(55分钟)可使SS线粒体中的PS恢复。相比之下,在有或没有恢复期的情况下,长时间(60分钟)收缩活动后,SS或IMF线粒体中的PS均未受影响。在有或没有恢复期的情况下,5分钟的收缩活动均未影响PD,但在60分钟收缩后接着恢复期,PD会降低。慢性刺激(10Hz,每天3小时,共14天)使肌肉细胞色素c氧化酶活性增加2.2倍,但使IMF线粒体中的PS降低29%(P<0.05;n = 4)。慢性刺激未改变SS线粒体中的PS以及两个亚组分中的PD。因此,急性收缩活动对IMF和SS线粒体中的蛋白质周转产生不同影响,并且线粒体内的PS似乎并不限制慢性收缩活动诱导的线粒体生物发生的程度。

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