Literature DB >> 30591555

A mitochondrial FUNDC1/HSC70 interaction organizes the proteostatic stress response at the risk of cell morbidity.

Yanjun Li1, Yanhong Xue2, Xiaojun Xu3, Guopeng Wang4, Yiqun Liu4, Hao Wu1, Wenhui Li1, Yueying Wang1, Ziheng Chen1, Weilin Zhang1, Yushan Zhu5, Wei Ji2, Tao Xu2,3, Lei Liu6, Quan Chen6,5,7.   

Abstract

Both protein quality and mitochondrial quality are vital for the cellular activity, and impaired proteostasis and mitochondrial dysfunction are common etiologies of aging and age-related disorders. Here, we report that the mitochondrial outer membrane protein FUNDC1 interacts with the chaperone HSC70 to promote the mitochondrial translocation of unfolded cytosolic proteins for degradation by LONP1 or for formation of non-aggresomal mitochondrion-associated protein aggregates (MAPAs) upon proteasome inhibition in cultured human cells. Integrative approaches including csCLEM, Apex, and biochemical analysis reveal that MAPAs contain ubiquitinated cytosolic proteins, autophagy receptor p62, and mitochondrial proteins. MAPAs are segregated from mitochondria in a FIS1-dependent manner and can subsequently be degraded via autophagy. Although the FUNDC1/HSC70 pathway promotes the degradation of unfolded cytosolic proteins, excessive accumulation of unfolded proteins on the mitochondria prior to MAPA formation impairs mitochondrial integrity and activates AMPK, leading to cellular senescence. We suggest that human mitochondria organize cellular proteostatic response at the risk of their own malfunction and cell lethality.
© 2018 The Authors.

Entities:  

Keywords:  cellular senescence; mitochondria; mitochondrial quality control; mitophagy; proteostatic stress

Mesh:

Substances:

Year:  2018        PMID: 30591555      PMCID: PMC6356068          DOI: 10.15252/embj.201798786

Source DB:  PubMed          Journal:  EMBO J        ISSN: 0261-4189            Impact factor:   11.598


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