Artykuł w czasopiśmie
Brak miniatury
Licencja

CC-BYCC-BY - Uznanie autorstwa

Inhibition of proteasome rescues a pathogenic variant of respiratory chain assembly factor COA7.

Autor
Dadlez, Michał
Poznański, Jarosław
Fernandez-Vizarra, Erika
Dennerlein, Sven
Chacińska, Agnieszka
Cysewski, Dominik
Mohanraj, Karthik
Sakowska, Paulina
Wasilewski, Michał
Beninca, Cristiane
Data publikacji
2019
Abstrakt (EN)

Nuclear and mitochondrial genome mutations lead to various mitochondrial diseases, many of which affect the mitochondrial respiratory chain. The proteome of the intermembrane space (IMS) of mitochondria consists of several important assembly factors that participate in the biogenesis of mitochondrial respiratory chain complexes. The present study comprehensively analyzed a recently identified IMS protein cytochrome c oxidase assembly factor 7 (COA7), or RESpiratory chain Assembly 1 (RESA1) factor that is associated with a rare form of mitochondrial leukoencephalopathy and complex IV deficiency. We found that COA7 requires the mitochondrial IMS import and assembly (MIA) pathway for efficient accumulation in the IMS. We also found that pathogenic mutant versions of COA7 are imported slower than the wild-type protein, and mislocalized proteins are degraded in the cytosol by the proteasome. Interestingly, proteasome inhibition rescued both the mitochondrial localization of COA7 and complex IV activity in patient-derived fibroblasts. We propose proteasome inhibition as a novel therapeutic approach for a broad range of mitochondrial pathologies associated with the decreased levels of mitochondrial proteins.

Słowa kluczowe EN
COA7
RESA1
mitochondrial disease
proteasome
protein degradation
protein import
Dyscyplina PBN
nauki biologiczne
Czasopismo
EMBO Molecular Medicine
Tom
11
Zeszyt
5
Strony od-do
9561
ISSN
1757-4676
Data udostępnienia w otwartym dostępie
2019-03-18
Licencja otwartego dostępu
Uznanie autorstwa