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Methionine sulfoxide reductase A protects dopaminergic cells from Parkinson's disease-related insults
Authors:Liu Fang  Hindupur Jagadish  Nguyen Jamie L  Ruf Katie J  Zhu Junyi  Schieler Jeremy L  Bonham Connie C  Wood Karl V  Davisson V Jo  Rochet Jean-Christophe
Institution:Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University, West Lafayette, IN 47907, USA.
Abstract:Parkinson's disease (PD) is a neurologic disorder characterized by dopaminergic cell death in the substantia nigra. PD pathogenesis involves mitochondrial dysfunction, proteasome impairment, and alpha-synuclein aggregation, insults that may be especially toxic to oxidatively stressed cells including dopaminergic neurons. The enzyme methionine sulfoxide reductase A (MsrA) plays a critical role in the antioxidant response by repairing methionine-oxidized proteins and by participating in cycles of methionine oxidation and reduction that have the net effect of consuming reactive oxygen species. Here, we show that MsrA suppresses dopaminergic cell death and protein aggregation induced by the complex I inhibitor rotenone or mutant alpha-synuclein, but not by the proteasome inhibitor MG132. By comparing the effects of MsrA and the small-molecule antioxidants N-acetylcysteine and vitamin E, we provide evidence that MsrA protects against PD-related stresses primarily via methionine sulfoxide repair rather than by scavenging reactive oxygen species. We also demonstrate that MsrA efficiently reduces oxidized methionine residues in recombinant alpha-synuclein. These findings suggest that enhancing MsrA function may be a reasonable therapeutic strategy in PD.
Keywords:Aggresome  Dopamine  Glutathione  Heat shock protein  Methionine sulfoxide reductase  Neurodegeneration  Oxidative stress  Parkinson's disease  Proteasome  Protofibril  Rotenone  Synuclein
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