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Enhancing NAD+ salvage metabolism is neuroprotective in a PINK1 model of Parkinson's disease.

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posted on 2017-01-09, 12:36 authored by Susann Lehmann, Samantha H. Y. Loh, L. Miguel Martins
Familial forms of Parkinson's disease (PD) caused by mutations in PINK1 are linked to mitochondrial impairment. Defective mitochondria are also found in Drosophila models of PD with pink1 mutations. The co-enzyme nicotinamide adenine dinucleotide (NAD(+)) is essential for both generating energy in mitochondria and nuclear DNA repair through NAD(+)-consuming poly(ADP-ribose) polymerases (PARPs). We found alterations in NAD(+) salvage metabolism in Drosophila pink1 mutants and showed that a diet supplemented with the NAD(+) precursor nicotinamide rescued mitochondrial defects and protected neurons from degeneration. Additionally, a mutation of Parp improved mitochondrial function and was neuroprotective in the pink1 mutants. We conclude that enhancing the availability of NAD(+) by either the use of a diet supplemented with NAD(+) precursors or the inhibition of NAD(+)-dependent enzymes, such as PARPs, which compete with mitochondria for NAD(+) is a viable approach to preventing neurotoxicity associated with mitochondrial defects.

Funding

This work is funded by the UK Medical Research Council.

History

Citation

Biology Open, 2016

Author affiliation

/Organisation/COLLEGE OF MEDICINE, BIOLOGICAL SCIENCES AND PSYCHOLOGY/MBSP Non-Medical Departments/Molecular & Cell Biology

Version

  • VoR (Version of Record)

Published in

Biology Open

Publisher

Company of Biologists: OAJ

eissn

2046-6390

Acceptance date

2016-12-01

Copyright date

2016

Available date

2017-01-09

Publisher version

http://bio.biologists.org/content/early/2016/12/14/bio.022186

Language

en

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