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DELE1追踪人类线粒体中受干扰的蛋白质导入和加工过程。

DELE1 tracks perturbed protein import and processing in human mitochondria.

作者信息

Fessler Evelyn, Krumwiede Luisa, Jae Lucas T

机构信息

Gene Center and Department of Biochemistry, Ludwig-Maximilians-Universität München, Feodor-Lynen-Strasse 25, 81377, Munich, Germany.

出版信息

Nat Commun. 2022 Apr 6;13(1):1853. doi: 10.1038/s41467-022-29479-y.

Abstract

Protein homeostatic control of mitochondria is key to age-related diseases and organismal decline. However, it is unknown how the diverse types of stress experienced by mitochondria can be integrated and appropriately responded to in human cells. Here we identify perturbations in the ancient conserved processes of mitochondrial protein import and processing as sources of DELE1 activation: DELE1 is continuously sorted across both mitochondrial membranes into the matrix and detects different types of perturbations along the way. DELE1 molecules in transit can become licensed for mitochondrial release and stress signaling through proteolytic removal of N-terminal sorting signals. Import defects that occur at the mitochondrial surface allow DELE1 precursors to bind and activate downstream factor HRI without the need for cleavage. Genome-wide genetics reveal that DELE1 additionally responds to compromised presequence processing by the matrix proteases PITRM1 and MPP, which are mutated in neurodegenerative diseases. These mechanisms rationalize DELE1-dependent mitochondrial stress integration in the human system and may inform future therapies of neuropathies.

摘要

线粒体的蛋白质稳态控制是与年龄相关疾病和机体衰退的关键。然而,尚不清楚人类细胞中线粒体所经历的多种应激如何被整合并做出适当反应。在这里,我们确定线粒体蛋白质输入和加工这一古老保守过程中的扰动是DELE1激活的来源:DELE1持续穿过线粒体的两层膜进入基质,并在此过程中检测不同类型的扰动。转运中的DELE1分子可通过蛋白酶解去除N端分选信号而获得线粒体释放和应激信号传导的许可。发生在线粒体表面的输入缺陷使DELE1前体能够结合并激活下游因子HRI,而无需裂解。全基因组遗传学研究表明,DELE1还对基质蛋白酶PITRM1和MPP受损的前序列加工做出反应,这两种蛋白酶在神经退行性疾病中发生了突变。这些机制解释了人类系统中DELE1依赖性线粒体应激整合的原理,并可能为未来的神经病变治疗提供思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7b9/8986780/63c8a61b5063/41467_2022_29479_Fig1_HTML.jpg

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