The Influence of Pathogenic Mutations in α-Synuclein on Biophysical and Structural Characteristics of Amyloid Fibrils

被引:63
作者
Ruggeri, Francesco Simone [2 ]
Flagmeier, Patrick [2 ]
Kumita, Janet R. [2 ]
Meisl, Georg [2 ]
Chirgadze, Dimitri Y. [3 ]
Bongiovanni, Marie N. [2 ]
Knowles, Tuomas P. J. [1 ]
Dobson, Christopher M. [2 ]
机构
[1] Univ Cambridge, Ctr Misfolding Dis, Dept Phys, Dept Chem & Cavendish Lab, Cambridge CB2 1EW, England
[2] Univ Cambridge, Ctr Misfolding Dis, Dept Chem, Cambridge CB2 1EW, England
[3] Univ Cambridge, Dept Biochem, Cambridge CB2 1GA, England
基金
瑞士国家科学基金会; 英国惠康基金;
关键词
neurodegenerative disorders; protein misfolding; single-molecule biophysics; atomic force microscopy; infrared spectroscopy; PARKINSONS-DISEASE; WILD-TYPE; PROTEIN; AGGREGATION; KINETICS; NANOMECHANICS; SECRETION; BINDING; NMR;
D O I
10.1021/acsnano.9b09676
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Proteinaceous deposits of alpha-synuclein amyloid fibrils are a hallmark of human disorders including Parkinson's disease. The onset of this disease is also associated with five familial mutations of the gene encoding the protein. However, the mechanistic link between single point mutations and the kinetics of aggregation, biophysical properties of the resulting amyloid fibrils, and an increased risk of disease is still elusive. Here, we demonstrate that the disease-associated mutations of alpha-synuclein generate different amyloid fibril polymorphs compared to the wild type protein. Remarkably, the alpha-synuclein variants forming amyloid fibrils of a comparable structure, morphology, and heterogeneity show similar microscopic steps defining the aggregation kinetics. These results demonstrate that a single point mutation can significantly alter the distribution of fibrillar polymorphs in alpha-synuclein, suggesting that differences in the clinical phenotypes of familial Parkinson's disease could be associated with differences in the mechanism of formation and the structural characteristics of the aggregates.
引用
收藏
页码:5213 / 5222
页数:10
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