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Time-course changes in muscle protein degradation in heat-stressed chickens: Possible involvement of corticosterone and mitochondrial reactive oxygen species generation in induction of the ubiquitin-proteasome system

机译:热应激鸡肌肉蛋白质降解的时程变化:皮质酮和线粒体活性氧的产生可能与泛素-蛋白酶体系统的诱导有关

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摘要

Heat stress (HS) induces muscle protein degradation as well as production of mitochondrial reactive oxygen species (ROS). In the present study, to improve our understanding of how protein degradation is induced by HS treatment in birds, a time course analysis of changes in the circulating levels of glucocorticoid and N-tau-methylhistidine, muscle proteolysis-related gene expression, and mitochondrial ROS generation, was conducted. At 25 days of age, chickens were exposed to HS conditions (33 degrees C) for 0, 0.5, 1 or 3 days. While no alteration in plasma N-tau-methylhistidine concentration relative to that of the control group was observed in the 0.5 day HS group, the concentration was significantly higher in the 3-d HS treatment group. Plasma corticosterone concentrations increased in response to 0.5-d HS treatment, but subsequently returned to near-normal values. HS treatment for 0.5 days did not change the levels of mu-calpain, cathepsin B, or proteasome C2 subunit mRNA, but increased the levels of mRNA encoding atrogin-1 (P < 0.05) and its transcription factor, forkhead box 03 (P = 0.09). Under these hyperthermic conditions, mitochondrial superoxide production was significantly increased than that of thermoneutral control. Here, we show that HS-induced muscle protein degradation may be due to the activation of ubiquitination by atrogin-1, and that this process may involve mitochondrial ROS production as well as corticosterone secretion. (C) 2016 Elsevier Inc. All rights reserved.
机译:热应激(HS)会导致肌肉蛋白质降解以及线粒体活性氧(ROS)的产生。在本研究中,为增进我们对禽类HS处理如何诱导蛋白质降解的了解,对糖皮质激素和N-tau-甲基组氨酸的循环水平,肌肉蛋白水解相关基因表达和线粒体ROS的水平进行时程分析进行。在25日龄时,将鸡暴露于HS条件(33摄氏度)下0、0.5、1或3天。在0.5天的HS组中未观察到血浆N-tau-甲基组氨酸浓度相对于对照组的变化,而在3-d HS治疗组中该浓度显着更高。响应0.5天的HS治疗,血浆皮质类固醇浓度增加,但随后恢复到接近正常值。 HS处理0.5天并没有改变mu-钙蛋白酶,组织蛋白酶B或蛋白酶体C2亚基的mRNA水平,但增加了编码atrogin-1(P <0.05)及其转录因子的基因水平,叉头盒03(P = 0.09)。在这些高温条件下,线粒体超氧化物的产生显着高于热中性对照。在这里,我们显示HS诱导的肌肉蛋白降解可能是由于atrogin-1激活的泛素化,并且该过程可能涉及线粒体ROS的产生以及皮质酮的分泌。 (C)2016 Elsevier Inc.保留所有权利。

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