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Formation of Partially Ordered Oligomers of Amyloidogenic Hexapeptide (NFGAIL) in Aqueous Solution Observed in Molecular Dynamics Simulations

机译:分子动力学模拟中观察到的淀粉样六肽(NFGAIL)部分有序的低聚物在水溶液中的形成。

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摘要

A combined total of more than 600.0 ns molecular dynamics simulations with explicit solvent have been carried on systems containing either four peptides or a single peptide to investigate the early-stage aggregation process of an amyloidogenic hexapeptide, NFGAIL (residues 22–27 of the human islet amyloid polypeptide). Direct observation of the aggregation process was made possible by placing four peptides in a box of water with an effective concentration of 158 mg/ml to enhance the rate of aggregation. Partially ordered oligomers containing multistrand β-sheets were observed which could be the precursory structures leading to the amyloid-forming embryonic nuclei. Comparative simulations on a single peptide suggested that the combined effect of higher peptide concentration and periodic boundary condition promoted compact monomers and the short-range interpeptide interactions favored the β-extended conformation. Of particular interest was the persistent fluctuation of the size of the aggregates throughout the simulations, suggesting that dissociation of peptides from the disordered aggregates was an obligatory step toward the formation of ordered oligomers. Although 95% of peptides formed oligomers and 44% were in β-extended conformations, only 16% of peptides formed multistrand β-sheets. The disordered aggregates were mainly stabilized by hydrophobic interactions while cross-strand main-chain hydrogen bonds manifested the ordered oligomers. The transition to the β-extended conformation was mildly cooperative due to short-range interactions between β-extended peptides. Taken together, we propose that the role of hydrophobic interaction in the early stage of aggregation is to promote disordered aggregates and disfavor the formation of ordered nuclei and dissociation of the disordered oligomers could be the rate-limiting step at the initiation stage.
机译:已在包含四个肽或单个肽的系统上进行了总计超过600.0 ns的含明确溶剂的分子动力学模拟,以研究淀粉样蛋白六肽NFGAIL的早期聚集过程(人类胰岛的22-27位残基淀粉样多肽)。通过将四种肽放入一盒水中,有效浓度为158 mg / ml以提高聚集速率,可以直接观察聚集过程。观察到含有多链β-折叠的部分有序的低聚物可能是导致形成淀粉样蛋白的胚核的前体结构。对单个肽的比较模拟表明,更高的肽浓度和周期性边界条件的共同作用促进了紧密单体的形成,而短程肽间相互作用则有利于β延伸构象。特别令人感兴趣的是在整个模拟过程中聚集体尺寸的持续波动,这表明肽与无序聚集体的解离是向有序寡聚物形成的必然步骤。尽管95%的肽形成了寡聚物,而44%的肽形成了β延伸构象,但只有16%的肽形成了多链β-折叠。无序聚集体主要由疏水相互作用稳定,而交叉链主链氢键则表现出有序的低聚物。由于β-延伸的肽之间的短程相互作用,向β-延伸的构象的过渡是轻度协作的。两者合计,我们建议疏水作用在聚集的早期阶段的作用是促进无序的聚集体和不利于有序核的形成和无序的低聚物的解离可能是启动阶段的限速步骤。

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