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Alpha-synuclein stepwise aggregation reveals features of an early onset mutation in Parkinson's disease.


ABSTRACT: Amyloid formation is a process involving interconverting protein species and results in toxic oligomers and fibrils. Aggregated alpha-synuclein (?S) participates in neurodegenerative maladies, but a closer understanding of the early ?S polymerization stages and polymorphism of heritable ?S variants is sparse still. Here, we distinguished ?S oligomer and protofibril interconversions in Thioflavin T polymerization reactions. The results support a hypothesis reconciling the nucleation-polymerization and nucleation-conversion-polymerization models to explain the dissimilar behaviors of wild-type and the A53T mutant. Cryo-electron microscopy with a direct detector shows the polymorphic nature of ?S fibrils formed by heritable A30P, E46K, and A53T point mutations. By showing that A53T rapidly nucleates competent species, continuously elongates fibrils in the presence of increasing amounts of seeds, and overcomes wild-type surface requirements for growth, our findings place A53T with features that may explain the early onset of familial Parkinson's disease cases bearing this mutation.

SUBMITTER: de Oliveira GAP 

PROVIDER: S-EPMC6789109 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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Alpha-synuclein stepwise aggregation reveals features of an early onset mutation in Parkinson's disease.

de Oliveira Guilherme A P GAP   Silva Jerson L JL  

Communications biology 20191011


Amyloid formation is a process involving interconverting protein species and results in toxic oligomers and fibrils. Aggregated alpha-synuclein (αS) participates in neurodegenerative maladies, but a closer understanding of the early αS polymerization stages and polymorphism of heritable αS variants is sparse still. Here, we distinguished αS oligomer and protofibril interconversions in Thioflavin T polymerization reactions. The results support a hypothesis reconciling the nucleation-polymerizatio  ...[more]

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2015-06-01 | GSE57475 | GEO