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Effect of Post-Translational Amidation on Islet Amyloid Polypeptide Conformational Ensemble: Implications for Its Aggregation Early Steps

机译:翻译后酰胺化对胰岛淀粉样多肽构象集合的影响:对其聚合早期步骤的影响。

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摘要

The human islet amyloid polypeptide (hIAPP) is an intrinsically disordered protein that can self-assemble into fibrillar aggregates that play a key role in the pathogenesis of the type II diabetes mellitus. hIAPP can transiently adopt α-helix and β-strand conformations that could be important intermediate species on the fibrillization pathway. However, experimental studies of the monomeric peptide conformations are limited due to its high aggregation propensity, and the early steps of the hIAPP association are not clearly characterized. In particular, the question of whether the aggregation-prone conformation is α-helical or β-strand-rich is still debated. In this study, combining extensive all-atom molecular dynamics (MD) and replica exchange molecular dynamics (REMD) simulations in explicit water, we shed some light on the differences between the amidated and non-amidated hIAPP conformational ensembles. Our study shows that, when compared to the amidated monomer, the non-amidation of hIAPP induces a significantly lower propensity to form β-strands, especially aggregation-prone β-hairpins. Since the fibrillization of the non-amidated hIAPP is significantly slower than that of the amidated peptide, this indicates that the early steps of the peptide oligomerization involve the association of β-hairpins or β-strands structures.
机译:人胰岛淀粉样多肽(hIAPP)是一种内在失调的蛋白质,可以自组装成纤维状聚集体,在II型糖尿病的发病机理中起关键作用。 hIAPP可以暂时采用α-螺旋和β链构象,这可能是原纤维形成途径上的重要中间物种。但是,由于单体肽构象的高聚集倾向,其实验研究受到限制,并且hIAPP缔合的早期步骤尚未明确表征。尤其是,聚集倾向构象是富含α-螺旋还是富含β-链的问题仍在争论中。在这项研究中,结合了在纯水中的大量全原子分子动力学(MD)和复制品交换分子动力学(REMD)模拟,我们对酰胺化和非酰胺化hIAPP构象集合体之间的差异有了一些了解。我们的研究表明,与酰胺化单体相比,hIAPP的非酰胺化诱导形成β链(尤其是易于聚集的β-发夹)的倾向明显降低。由于未酰胺化的hIAPP的原纤维化比酰胺化的肽的原纤维化显着慢,这表明肽低聚的早期步骤涉及β-发夹或β-链结构的缔合。

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