LON is the master protease that protects against protein aggregation in human mitochondria through direct degradation of misfolded proteins

被引:87
作者
Bezawork-Geleta, Ayenachew [1 ]
Brodie, Erica J. [1 ]
Dougan, David A. [1 ]
Truscott, Kaye N. [1 ]
机构
[1] La Trobe Univ, La Trobe Inst Mol Sci, Dept Biochem & Genet, Melbourne, Vic 3086, Australia
基金
澳大利亚研究理事会;
关键词
SPASTIC PARAPLEGIA; SUBSTRATE; MUTATIONS; IMPORT; MATRIX; CLPP; IDENTIFICATION; PROTEOSTASIS; EFFICIENCY; CHAPERONES;
D O I
10.1038/srep17397
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
Maintenance of mitochondrial protein homeostasis is critical for proper cellular function. Under normal conditions resident molecular chaperones and proteases maintain protein homeostasis within the organelle. Under conditions of stress however, misfolded proteins accumulate leading to the activation of the mitochondrial unfolded protein response (UPRmt). While molecular chaperone assisted refolding of proteins in mammalian mitochondria has been well documented, the contribution of AAA+ proteases to the maintenance of protein homeostasis in this organelle remains unclear. To address this gap in knowledge we examined the contribution of human mitochondrial matrix proteases, LONM and CLPXP, to the turnover of OTC-Delta, a folding incompetent mutant of ornithine transcarbamylase, known to activate UPRmt. Contrary to a model whereby CLPXP is believed to degrade misfolded proteins, we found that LONM, and not CLPXP is responsible for the turnover of OTC-Delta in human mitochondria. To analyse the conformational state of proteins that are recognised by LONM, we examined the turnover of unfolded and aggregated forms of malate dehydrogenase (MDH) and OTC. This analysis revealed that LONM specifically recognises and degrades unfolded, but not aggregated proteins. Since LONM is not upregulated by UPRmt, this pathway may preferentially act to promote chaperone mediated refolding of proteins.
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页数:13
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