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首页> 外文期刊>Mechanisms of Ageing and Development >Changes in Drosophila mitochondrial proteins following chaperone-mediated lifespan extension confirm a role of Hsp22 in mitochondrial UPR and reveal a mitochondrial localization for cathepsin D
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Changes in Drosophila mitochondrial proteins following chaperone-mediated lifespan extension confirm a role of Hsp22 in mitochondrial UPR and reveal a mitochondrial localization for cathepsin D

机译:伴侣介导的寿命延长后果蝇线粒体蛋白质的变化证实了Hsp22在线粒体UPR中的作用,并揭示了组织蛋白酶D的线粒体定位

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摘要

Hsp22 is a small mitochondrial heat shock protein (sHSP) preferentially up-regulated during aging in Drosophila melanogaster. Its developmental expression is strictly regulated and it is rapidly induced in conditions of stress. Hsp22 is one of the few sHSP to be localized inside mitochondria, and is the first sHSP to be involved in the mitochondria! unfolding protein response (UPRMT) together with Hsp60, mitochondrial Hsp70 and TRAP1. The UPRMT is a pro-longevity mechanism, and interestingly Hsp22 over-expression by-itself increases lifespan and resistance to stress. To unveil the effect of Hsp22 on the mitochondrial proteome, comparative IEF/SDS polyacrylamide 2D gels were done on mitochondria from Hsp22+ flies and controls. Among the proteins influenced by Hsp22 expression were proteins from the electron transport chain (ETC), the TCA cycle and mitochondrial Hsp70. Hsp22 co-migrates with ETC components and its over-expression is associated with an increase in mitochondrial protease activity. Interestingly, the only protease that showed significant changes upon Hsp22 over-expression in the comparative IEF/SDS-PAGE analysis was cathepsin D, which is localized in mitochondria in addition to lysosome in D. melanogaster as evidenced by cellular fractionation. Together the results are consistent with a role of Hsp22 in the UPRMT and in mitochondrial proteostasis. (C) 2016 Elsevier Ireland Ltd. All rights reserved.
机译:Hsp22是一种小线粒体热休克蛋白(sHSP),在果蝇的衰老过程中会优先上调。它的发育表达受到严格调节,并在压力条件下被迅速诱导。 Hsp22是定位于线粒体内的少数sHSP之一,并且是第一个参与线粒体的sHSP!与Hsp60,线粒体Hsp70和TRAP1一起展开蛋白反应(UPRMT)。 UPRMT是延长寿命的机制,有趣的是,Hsp22自身过度表达会增加寿命和抗压力。为了揭示Hsp22对线粒体蛋白质组的作用,在来自Hsp22 +蝇和对照的线粒体上进行了对比IEF / SDS聚丙烯酰胺2D凝胶。受Hsp22表达影响的蛋白质包括来自电子传输链(ETC),TCA循环和线粒体Hsp70的蛋白质。 Hsp22与ETC组分共迁移,其过表达与线粒体蛋白酶活性的增加有关。有趣的是,在对比例IEF / SDS-PAGE分析中,Hsp22过表达后唯一显示出显着变化的蛋白酶是组织蛋白酶D,其不仅存在于线粒体中,而且还存在于线粒体中,如通过细胞分级分离所证实的。在一起的结果与Hsp22在UPRMT和线粒体蛋白稳态中的作用一致。 (C)2016 Elsevier Ireland Ltd.保留所有权利。

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