Oxidative Modifications of Parkin Underlie its Selective Neuroprotection in Adult Human Brain

biorxiv(2020)

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摘要
The mechanisms by which Parkinson disease-linked parkin confers neuroprotection of human dopamine cells remain elusive. We hypothesized that its cysteines mediate multiple anti-oxidant effects in the midbrain. By studying >60 control specimens, we found that in adult human brain - but not in skeletal muscle- parkin is mostly aggregated and insoluble due to oxidative modifications, such as at C253. , parkin’s oxidation directly reduces hydrogen peroxide (HO) to water. In parkin-deficient human brain, HO concentrations are elevated. In dopamine toxicity studies, wild-type parkin -but not disease-associated mutants-prevents neural death by lowering HO and sequestering radicals within insoluble aggregates. Parkin conjugates dopamine metabolites at the human-specific residue C95 and augments melanin formation . Using epitope-mapped antibodies, we found that in adult neurons parkin localizes to neuromelanin within LAMP-3/CD63-positive lysosomes. We conclude that parkin’s own oxidation, previously considered a loss-of-function event, underlies three neuroprotective effects in adult midbrain: its cysteines participate in HO reduction, dopamine radical conjugation and the formation of neuromelanin.
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