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Pristine and Hydroxylated Fullerenes Prevent the Aggregation of Human Islet Amyloid Polypeptide and Display Different Inhibitory Mechanisms

机译:原始和羟基化的富勒烯预防人胰岛淀粉样蛋白多肽的聚集并显示不同的抑制机制

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摘要

Protein aggregation, involving the formation of dimers, oligomers, and fibrils, is associated with many human diseases. Type 2 diabetes is one of the common amyloidosis and linked with the aggregation of human islet amyloid polypeptide (hIAPP). A series of nanoparticles are reported to be able to interact with proteins and enhance/inhibit protein aggregation. However, the effects of C60 (a model system of hydrophobic nanoparticle) and C60(OH)8 (a hydroxylated fullerene) on hIAPP aggregation remain unknown. In this study, we investigate the influences of pristine fullerene C60 and hydroxylated C60 on the dimerization of hIAPP using molecular dynamics (MD) simulations. Extensive replica exchange molecular dynamics (REMD) simulations show that isolated hIAPP dimers adopt β-sheet structure containing the amyloid-precursor (β-hairpin). Both C60 and C60(OH)8 notably inhibit the β-sheet formation of hIAPP dimer and induce the formation of collapsed disordered coil-rich conformations. Protein—nanoparticle interaction analyses reveal that the inhibition of hIAPP aggregation by C60 is mainly via hydrophobic and aromatic-stacking interactions, while the prevention of hIAPP aggregation by C60(OH)8 is mostly through collective hydrogen bonding and aromatic-stacking interactions. Conventional MD simulations indicate that both C60 and C60(OH)8 weaken the interactions within hIAPP protofibril and disrupt the β-sheet structure. These results provide mechanistic insights into the possible inhibitory mechanism of C60 and C60(OH)8 toward hIAPP aggregation, and they are of great reference value for the screening of potent amyloid inhibitors.
机译:涉及形成二聚体,低聚物和原纤维的蛋白质聚集与许多人类疾病有关。 2型糖尿病是常见的淀粉样蛋白症之一,与人胰岛淀粉样蛋白多肽(HIAPP)的聚集有关。据报道,一系列纳米颗粒能够与蛋白质相互作用并增强/抑制蛋白质聚集。然而,C60(疏水性纳米粒子的模型系统)和C60(OH)8(羟基化富勒烯)对HIAPP聚集的影响仍然未知。在这项研究中,我们研究了原始富勒烯C60和羟基化C60对使用分子动力学(MD)模拟的HIAPP二聚化的影响。广泛的复制交换分子动力学(REMD)模拟表明,分离的HIAPP二聚体采用含有淀粉样蛋白前体(β-发夹)的β-片状结构。 C60和C60(OH)8均显着抑制HIAPP二聚体的β-片形成,并诱导形成倒塌的无序线圈的致力化构象。蛋白质纳米粒子相互作用分析表明,C60的HIAPP聚集的抑制主要通过疏水和芳族堆叠相互作用,而C60(OH)8的预防HIAPP聚集主要是通过集体氢键和芳族堆叠相互作用。常规MD模拟表明C60和C60(OH)8均削弱了HIAPP原纤维内的相互作用并破坏了β-片状结构。这些结果为C60和C60(OH)8的可能抑制机制提供了趋向HIAPP聚集的机械洞察力,它们具有很大的参考值,用于筛选有效的淀粉样蛋白抑制剂。

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