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Parkinson's disease protein DJ-1 regulates ATP synthase protein components to increase neuronal process outgrowth

Authors :
Agnita J.W. Boon
Han-A Park
Vincenzo Bonifati
Wim Mandemakers
Pawel Licznerski
Jack Tang
Nelli Mnatsakanyan
Morven Graham
Yulong Niu
Rongmin Chen
Giovanni Cossu
Jing Wu
Elizabeth A. Jonas
Peter K. Smith
Kambiz N. Alavian
Paige Miranda
Neurology
Clinical Genetics
Source :
Cell Death & Disease, Cell death & disease, 10:469. Nature Publishing Group, Cell Death and Disease, Vol 10, Iss 6, Pp 1-12 (2019), BASE-Bielefeld Academic Search Engine
Publication Year :
2019

Abstract

Familial Parkinson’s disease (PD) protein DJ-1 mutations are linked to early onset PD. We have found that DJ-1 binds directly to the F1FO ATP synthase β subunit. DJ-1’s interaction with the β subunit decreased mitochondrial uncoupling and enhanced ATP production efficiency while in contrast mutations in DJ-1 or DJ-1 knockout increased mitochondrial uncoupling, and depolarized neuronal mitochondria. In mesencephalic DJ-1 KO cultures, there was a progressive loss of neuronal process extension. This was ameliorated by a pharmacological reagent, dexpramipexole, that binds to ATP synthase, closing a mitochondrial inner membrane leak and enhancing ATP synthase efficiency. ATP synthase c-subunit can form an uncoupling channel; we measured, therefore, ATP synthase F1 (β subunit) and c-subunit protein levels. We found that ATP synthase β subunit protein level in the DJ-1 KO neurons was approximately half that found in their wild-type counterparts, comprising a severe defect in ATP synthase stoichiometry and unmasking c-subunit. We suggest that DJ-1 enhances dopaminergic cell metabolism and growth by its regulation of ATP synthase protein components.

Details

ISSN :
20414889
Volume :
10
Database :
OpenAIRE
Journal :
Cell death & disease
Accession number :
edsair.doi.dedup.....dc74e1988a7a6d2b63644613555ffc19