Genetic deficiency of the mitochondrial protein PGAM5 causes a Parkinson's-like movement disorder.
basic_science · Level V
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- Record sourced from PubMed, PMID 25222142.
- Also identified by DOI 10.1038/ncomms5930 and PMC identifier 4457367.
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Abstract
Mitophagy is a specialized form of autophagy that selectively disposes of dysfunctional mitochondria. Delineating the molecular regulation of mitophagy is of great importance because defects in this process lead to a variety of mitochondrial diseases. Here we report that mice deficient for the mitochondrial protein, phosphoglycerate mutase family member 5 (PGAM5), displayed a Parkinson's-like movement phenotype. We determined biochemically that PGAM5 is required for the stabilization of the mitophagy-inducing protein PINK1 on damaged mitochondria. Loss of PGAM5 disables PINK1-mediated mitophagy in vitro and leads to dopaminergic neurodegeneration and mild dopamine loss in vivo. Our data indicate that PGAM5 is a regulator of mitophagy essential for mitochondrial turnover and serves a cytoprotective function in dopaminergic neurons in vivo. Moreover, PGAM5 may provide a molecular link to study mitochondrial homeostasis and the pathogenesis of a movement disorder similar to Parkinson's disease.
Medical subject headings
- Dopaminergic Neurons
- Mitochondria
- Mitochondrial Proteins
- Parkinson Disease, Secondary
- Phosphoric Monoester Hydrolases
- Protein Kinases