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新型 SNCA 突变与早发性突触核蛋白病中α-突触核蛋白丝的结构

New SNCA mutation and structures of α-synuclein filaments from juvenile-onset synucleinopathy.

机构信息

Medical Research Council Laboratory of Molecular Biology, Cambridge, UK.

Department of Pathology and Laboratory Medicine, Indiana University School of Medicine, Indianapolis, IN, USA.

出版信息

Acta Neuropathol. 2023 May;145(5):561-572. doi: 10.1007/s00401-023-02550-8. Epub 2023 Feb 27.

Abstract

A 21-nucleotide duplication in one allele of SNCA was identified in a previously described disease with abundant α-synuclein inclusions that we now call juvenile-onset synucleinopathy (JOS). This mutation translates into the insertion of MAAAEKT after residue 22 of α-synuclein, resulting in a protein of 147 amino acids. Both wild-type and mutant proteins were present in sarkosyl-insoluble material that was extracted from frontal cortex of the individual with JOS and examined by electron cryo-microscopy. The structures of JOS filaments, comprising either a single protofilament, or a pair of protofilaments, revealed a new α-synuclein fold that differs from the folds of Lewy body diseases and multiple system atrophy (MSA). The JOS fold consists of a compact core, the sequence of which (residues 36-100 of wild-type α-synuclein) is unaffected by the mutation, and two disconnected density islands (A and B) of mixed sequences. There is a non-proteinaceous cofactor bound between the core and island A. The JOS fold resembles the common substructure of MSA Type I and Type II dimeric filaments, with its core segment approximating the C-terminal body of MSA protofilaments B and its islands mimicking the N-terminal arm of MSA protofilaments A. The partial similarity of JOS and MSA folds extends to the locations of their cofactor-binding sites. In vitro assembly of recombinant wild-type α-synuclein, its insertion mutant and their mixture yielded structures that were distinct from those of JOS filaments. Our findings provide insight into a possible mechanism of JOS fibrillation in which mutant α-synuclein of 147 amino acids forms a nucleus with the JOS fold, around which wild-type and mutant proteins assemble during elongation.

摘要

在一种先前描述的疾病中,一个等位基因的 SNCA 中有 21 个核苷酸重复,这种疾病中有丰富的 α-突触核蛋白包涵体,我们现在称之为少年发病的突触核蛋白病 (JOS)。该突变导致 α-突触核蛋白的 22 位之后插入 MAAAEKT,导致蛋白质的长度为 147 个氨基酸。野生型和突变型蛋白都存在于从 JOS 个体的额皮质提取的 Sarkosyl 不溶性物质中,并通过电子低温显微镜检查。JOS 纤维的结构,包括单个原纤维或一对原纤维,揭示了一种新的 α-突触核蛋白折叠,与路易体病和多系统萎缩 (MSA) 的折叠不同。JOS 折叠由一个紧凑的核心组成,其序列(野生型 α-突触核蛋白的 36-100 位氨基酸)不受突变的影响,还有两个不连续的混合序列密度岛(A 和 B)。核心和岛 A 之间有一个非蛋白辅因子结合。JOS 折叠类似于 MSA Type I 和 Type II 二聚体纤维的常见亚结构,其核心片段与 MSA 原纤维 B 的 C 末端体近似,其岛类似于 MSA 原纤维 A 的 N 末端臂。JOS 和 MSA 折叠的部分相似性延伸到它们辅因子结合位点的位置。重组野生型 α-突触核蛋白、其插入突变体及其混合物的体外组装产生的结构与 JOS 纤维的结构不同。我们的发现为 JOS 纤维形成的可能机制提供了线索,其中 147 个氨基酸的突变型 α-突触核蛋白形成具有 JOS 折叠的核,野生型和突变型蛋白在伸长过程中围绕该核组装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e3a/10119069/866ab6366226/401_2023_2550_Fig1_HTML.jpg

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