Stress-induced alterations in parkin solubility promote parkin aggregation and compromise parkin's protective function
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Open Access
- 8 November 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in Human Molecular Genetics
- Vol. 14 (24) , 3885-3897
- https://doi.org/10.1093/hmg/ddi413
Abstract
Mutations in parkin are currently recognized as the most common cause of familial Parkinsonism. Emerging evidence also suggests that parkin expression variability may confer a risk for the development of the more common, sporadic form of Parkinson's disease (PD). Supporting this, we have recently demonstrated that parkin solubility in the human brain becomes altered with age. As parkin apparently functions as a broad-spectrum neuroprotectant, the resulting decrease in the availability of soluble parkin with age may underlie the progressive susceptibility of the brain to stress. Interestingly, we also observed that many familial-PD mutations of parkin alter its solubility in a manner that is highly reminiscent of our observations with the aged brain. The converging effects on parkin brought about by aging and PD-causing mutations are probably not trivial and suggest that environmental modulators affecting parkin solubility would increase an individual's risk of developing PD. Using both cell culture and in vivo models, we demonstrate here that several PD-linked stressors, including neurotoxins (MPP+, rotenone, 6-hydroxydopamine), paraquat, NO, dopamine and iron, induce alterations in parkin solubility and result in its intracellular aggregation. Furthermore, the depletion of soluble, functional forms of parkin is associated with reduced proteasomal activities and increased cell death. Our results suggest that exogenously introduced stress as well as endogenous dopamine could affect the native structure of parkin, promote its misfolding, and concomitantly compromise its protective functions. Mechanistically, our results provide a link between the influence of environmental and intrinsic factors and genetic susceptibilities in PD pathogenesis.Keywords
This publication has 42 references indexed in Scilit:
- Familial-associated mutations differentially disrupt the solubility, localization, binding and ubiquitination properties of parkinHuman Molecular Genetics, 2005
- α-Synuclein and Parkin Contribute to the Assembly of Ubiquitin Lysine 63-linked Multiubiquitin ChainsJournal of Biological Chemistry, 2005
- Alterations in the solubility and intracellular localization of parkin by several familial Parkinson's disease‐linked point mutationsJournal of Neurochemistry, 2005
- Parkin Gene Therapy for α-Synucleinopathy: A Rat Model of Parkinson's DiseaseHuman Gene Therapy, 2005
- BAG5 Inhibits Parkin and Enhances Dopaminergic Neuron DegenerationNeuron, 2004
- Parkin protects human dopaminergic neuroblastoma cells against dopamine-induced apoptosisHuman Molecular Genetics, 2004
- Parkin genetics: one model for Parkinson's diseaseHuman Molecular Genetics, 2004
- Novel Monoclonal Antibodies Demonstrate Biochemical Variation of Brain Parkin with AgeJournal of Biological Chemistry, 2003
- Oxidative stress in Parkinson's diseaseAnnals of Neurology, 2003
- Sensitivity of Mammalian Cells Expressing Mutant Ubiquitin to Protein-damaging AgentsPublished by Elsevier ,2001