Structural basis of membrane disruption and cellular toxicity by α-synuclein oligomers
- PMID: 29242346
- DOI: 10.1126/science.aan6160
Structural basis of membrane disruption and cellular toxicity by α-synuclein oligomers
Abstract
Oligomeric species populated during the aggregation process of α-synuclein have been linked to neuronal impairment in Parkinson's disease and related neurodegenerative disorders. By using solution and solid-state nuclear magnetic resonance techniques in conjunction with other structural methods, we identified the fundamental characteristics that enable toxic α-synuclein oligomers to perturb biological membranes and disrupt cellular function; these include a highly lipophilic element that promotes strong membrane interactions and a structured region that inserts into lipid bilayers and disrupts their integrity. In support of these conclusions, mutations that target the region that promotes strong membrane interactions by α-synuclein oligomers suppressed their toxicity in neuroblastoma cells and primary cortical neurons.
Copyright © 2017 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works.
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- G-1508/PUK_/Parkinson's UK/United Kingdom
- MR/N000676/1/MRC_/Medical Research Council/United Kingdom
- BB/G00594X/1/BB_/Biotechnology and Biological Sciences Research Council/United Kingdom
- PG/11/81/29130/BHF_/British Heart Foundation/United Kingdom
- PG/14/93/31237/BHF_/British Heart Foundation/United Kingdom
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