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Structural Insights into ?-Synuclein Fibril Polymorphism: Effects of Parkinson's Disease-Related C-Terminal Truncations.


ABSTRACT: Lewy bodies, hallmarks of Parkinson's disease, contain C-terminally truncated (?C) ?-synuclein (?-syn). Here, we report fibril structures of three N-terminally acetylated (Ac) ?-syn constructs, Ac1-140, Ac1-122, and Ac1-103, solved by cryoelectron microscopy. Both ?C-?-syn variants exhibited faster aggregation kinetics, and Ac1-103 fibrils efficiently seeded the full-length protein, highlighting their importance in pathogenesis. Interestingly, fibril helical twists increased upon the removal of C-terminal residues and can be propagated through cross-seeding. Compared to that of Ac1-140, increased electron densities were seen in the N-terminus of Ac1-103, whereas the C-terminus of Ac1-122 appeared more structured. In accord, the respective termini of ?C-?-syn exhibited increased protease resistance. Despite similar amyloid core residues, distinctive features were seen for both Ac1-122 and Ac1-103. Particularly, Ac1-103 has the tightest packed core with an additional turn, likely attributable to conformational changes in the N-terminal region. These molecular differences offer insights into the effect of C-terminal truncations on ?-syn fibril polymorphism.

SUBMITTER: Ni X 

PROVIDER: S-EPMC6733637 | biostudies-literature | 2019 Sep

REPOSITORIES: biostudies-literature

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Structural Insights into α-Synuclein Fibril Polymorphism: Effects of Parkinson's Disease-Related C-Terminal Truncations.

Ni Xiaodan X   McGlinchey Ryan P RP   Jiang Jiansen J   Lee Jennifer C JC  

Journal of molecular biology 20190708 19


Lewy bodies, hallmarks of Parkinson's disease, contain C-terminally truncated (ΔC) α-synuclein (α-syn). Here, we report fibril structures of three N-terminally acetylated (Ac) α-syn constructs, Ac1-140, Ac1-122, and Ac1-103, solved by cryoelectron microscopy. Both ΔC-α-syn variants exhibited faster aggregation kinetics, and Ac1-103 fibrils efficiently seeded the full-length protein, highlighting their importance in pathogenesis. Interestingly, fibril helical twists increased upon the removal of  ...[more]

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