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淀粉样蛋白的三维结构

The Three-Dimensional Structures of Amyloids.

作者信息

Riek Roland

机构信息

Laboratory of Physical Chemistry, ETH Zürich, 8093 Zürich, Switzerland.

出版信息

Cold Spring Harb Perspect Biol. 2017 Feb 1;9(2):a023572. doi: 10.1101/cshperspect.a023572.

Abstract

Amyloids are highly ordered protein aggregates that are associated with both disease (including PrP prion, Alzheimer's, and Parkinson's) and biological function. The amyloid structure is composed of the cross-β-sheet entity, which is an almost indefinitely repeating two-layered intermolecular β-sheet motif. The three-dimensional (3D) structure is unique among protein folds because it folds only upon intermolecular contacts (for a folding to occur, only short sequences of amino acid residues are required), and the structure repeats itself at the atomic level (i.e., every 4.7 Å). As a consequence of this structure, among others, it can grow by recruiting corresponding amyloid peptide/protein and thus has the capacity to be an infectious protein (i.e., a prion). Furthermore, its repetitiveness can translate what would be a nonspecific activity as monomer into a potent one through cooperativity. Because of these and other properties, the activities of amyloids are manifold and include peptide storage, template assistance, loss of function, gain of function, generation of toxicity, membrane binding, infectivity, and more. This review summarizes the structural nature of the cross-β-sheet motif on the basis of a few high-resolution structural studies of amyloids in the context of potential biological activities.

摘要

淀粉样蛋白是高度有序的蛋白质聚集体,与疾病(包括朊病毒蛋白、阿尔茨海默病和帕金森病)以及生物学功能都有关联。淀粉样结构由交叉β-折叠实体组成,这是一种几乎无限重复的两层分子间β-折叠基序。三维(3D)结构在蛋白质折叠中是独特的,因为它仅在分子间接触时折叠(发生折叠仅需要短的氨基酸残基序列),并且该结构在原子水平上重复自身(即每隔4.7埃)。由于这种结构等原因,它可以通过招募相应的淀粉样肽/蛋白质而生长,因此有能力成为一种传染性蛋白质(即朊病毒)。此外,其重复性可以通过协同作用将作为单体时可能是非特异性的活性转化为强效活性。由于这些及其他特性,淀粉样蛋白的活性是多方面的,包括肽储存、模板辅助、功能丧失、功能获得、毒性产生、膜结合、传染性等等。本综述在淀粉样蛋白潜在生物学活性背景下,基于一些高分辨率结构研究,总结了交叉β-折叠基序的结构性质。

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