Cytosolic aggregation of mitochondrial proteins disrupts cellular homeostasis by stimulating the aggregation of other proteins

Author:

Nowicka Urszula123ORCID,Chroscicki Piotr24ORCID,Stroobants Karen5,Sladowska Maria24,Turek Michal124,Uszczynska-Ratajczak Barbara26,Kundra Rishika5,Goral Tomasz12,Perni Michele5ORCID,Dobson Christopher M5,Vendruscolo Michele5ORCID,Chacinska Agnieszka123ORCID

Affiliation:

1. ReMedy International Research Agenda Unit, University of Warsaw

2. Centre of New Technologies, University of Warsaw

3. IMol Polish Academy of Sciences

4. International Institute of Molecular and Cell Biology

5. Centre for Misfolding Diseases, Department of Chemistry, University of Cambridge

6. Institute of Bioorganic Chemistry, Polish Academy of Sciences

Abstract

Mitochondria are organelles with their own genomes, but they rely on the import of nuclear-encoded proteins that are translated by cytosolic ribosomes. Therefore, it is important to understand whether failures in the mitochondrial uptake of these nuclear-encoded proteins can cause proteotoxic stress and identify response mechanisms that may counteract it. Here, we report that upon impairments in mitochondrial protein import, high-risk precursor and immature forms of mitochondrial proteins form aberrant deposits in the cytosol. These deposits then cause further cytosolic accumulation and consequently aggregation of other mitochondrial proteins and disease-related proteins, including α-synuclein and amyloid β. This aggregation triggers a cytosolic protein homeostasis imbalance that is accompanied by specific molecular chaperone responses at both the transcriptomic and protein levels. Altogether, our results provide evidence that mitochondrial dysfunction, specifically protein import defects, contributes to impairments in protein homeostasis, thus revealing a possible molecular mechanism by which mitochondria are involved in neurodegenerative diseases.

Funder

Foundation for Polish Science

National Science Centre

Polish Ministerial Funds for Science

Deutsche Forschungsgemeinschaft

EMBO

William B. Harrison Foundation

University of Cambridge

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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