Distinct mitochondrial defects trigger the integrated stress response depending on the metabolic state of the cell

Author:

Mick Eran123ORCID,Titov Denis V123ORCID,Skinner Owen S123ORCID,Sharma Rohit123,Jourdain Alexis A123ORCID,Mootha Vamsi K123ORCID

Affiliation:

1. Howard Hughes Medical Institute and Department of Molecular Biology, Massachusetts General Hospital, Boston, United States

2. Broad Institute, Cambridge, United States

3. Department of Systems Biology, Harvard Medical School, Boston, United States

Abstract

Mitochondrial dysfunction is associated with activation of the integrated stress response (ISR) but the underlying triggers remain unclear. We systematically combined acute mitochondrial inhibitors with genetic tools for compartment-specific NADH oxidation to trace mechanisms linking different forms of mitochondrial dysfunction to the ISR in proliferating mouse myoblasts and in differentiated myotubes. In myoblasts, we find that impaired NADH oxidation upon electron transport chain (ETC) inhibition depletes asparagine, activating the ISR via the eIF2α kinase GCN2. In myotubes, however, impaired NADH oxidation following ETC inhibition neither depletes asparagine nor activates the ISR, reflecting an altered metabolic state. ATP synthase inhibition in myotubes triggers the ISR via a distinct mechanism related to mitochondrial inner-membrane hyperpolarization. Our work dispels the notion of a universal path linking mitochondrial dysfunction to the ISR, instead revealing multiple paths that depend both on the nature of the mitochondrial defect and on the metabolic state of the cell.

Funder

National Institutes of Health

Marriott Foundation

Ruane Family Foundation

Howard Hughes Medical Institute

Swiss National Science Foundation

Publisher

eLife Sciences Publications, Ltd

Subject

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

Reference161 articles.

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