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原子尺度模拟证实,可溶性β-折叠丰富肽自组装提供了类似构象特性的淀粉样模拟物。

Atomic-scale simulations confirm that soluble beta-sheet-rich peptide self-assemblies provide amyloid mimics presenting similar conformational properties.

机构信息

Department of Chemical and Biomolecular Engineering, University of Akron, Akron, Ohio, USA.

出版信息

Biophys J. 2010 Jan 6;98(1):27-36. doi: 10.1016/j.bpj.2009.10.003.

DOI:10.1016/j.bpj.2009.10.003
PMID:20085717
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2800962/
Abstract

The peptide self-assembly mimic (PSAM) from the outer surface protein A (OspA) can form highly stable but soluble beta-rich self-assembly-like structures similar to those formed by native amyloid-forming peptides. However, unlike amyloids that predominantly form insoluble aggregates, PSAMs are highly water-soluble. Here, we characterize the conformations of these soluble beta-sheet-rich assemblies. We simulate PSAMs with different-sized beta-sheets in the presence and absence of end-capping proteins using all-atom explicit-solvent molecular dynamics, comparing the structural stability, conformational dynamics, and association force. Structural and free-energy comparisons among beta-sheets with different numbers of layers and sequences indicate that in similarity to amyloids, the intersheet side chain-side chain interactions and hydrogen bonds combined with intrasheet salt bridges are the major driving forces in stabilizing the overall structural organization. A detailed structural analysis shows that in similarity to amyloid fibrils, all wild-type and mutated PSAM structures display twisted and bent beta-sheets to some extent, implying that a twisted and bent beta-sheet is a general motif of beta-rich assemblies. Thus, our studies indicate that soluble beta-sheet-rich peptide self-assemblies can provide good amyloid mimics, and as such confirm on the atomic scale that they are excellent systems for amyloid studies. These results provide further insight into the usefulness of such mimics for nanostructure design.

摘要

来自外表面蛋白 A (OspA) 的肽自组装模拟物 (PSAM) 可以形成高度稳定但可溶的富含β的自组装样结构,类似于由天然淀粉样肽形成的结构。然而,与主要形成不溶性聚集体的淀粉样蛋白不同,PSAMs 高度水溶性。在这里,我们描述了这些可溶性β-折叠丰富组装体的构象。我们使用全原子显式溶剂分子动力学模拟了具有不同大小β-折叠的 PSAMs,同时存在和不存在端盖蛋白,比较了结构稳定性、构象动力学和结合力。具有不同层数和序列的β-折叠之间的结构和自由能比较表明,与淀粉样蛋白相似,层间侧链-侧链相互作用和氢键与层内盐桥结合是稳定整体结构组织的主要驱动力。详细的结构分析表明,与淀粉样纤维相似,所有野生型和突变型 PSAM 结构都在某种程度上显示出扭曲和弯曲的β-折叠,这意味着扭曲和弯曲的β-折叠是富含β的组装体的一般特征。因此,我们的研究表明,可溶性β-折叠丰富的肽自组装可以提供良好的淀粉样模拟物,因此在原子尺度上证实它们是淀粉样研究的优秀系统。这些结果为这些模拟物在纳米结构设计中的有用性提供了进一步的见解。

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本文引用的文献

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Structures and thermodynamics of Alzheimer's amyloid-beta Abeta(16-35) monomer and dimer by replica exchange molecular dynamics simulations: implication for full-length Abeta fibrillation.通过副本交换分子动力学模拟研究阿尔茨海默病淀粉样β蛋白Aβ(16 - 35)单体和二聚体的结构与热力学:对全长Aβ纤维化的启示
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Factors that affect the degree of twist in beta-sheet structures: a molecular dynamics simulation study of a cross-beta filament of the GNNQQNY peptide.影响β-折叠结构中扭曲程度的因素:GNNQQNY肽交叉β-纤维的分子动力学模拟研究
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