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酸性 pH 值会由于组氨酸的静电排斥作用而减缓人胰岛淀粉样多肽的纤维化。

Acidic pH retards the fibrillization of human Islet Amyloid Polypeptide due to electrostatic repulsion of histidines.

机构信息

State Key Laboratory of Precision Spectroscopy, Department of Physics, East China Normal University, Shanghai 200062, China.

出版信息

J Chem Phys. 2013 Aug 7;139(5):055102. doi: 10.1063/1.4817000.

Abstract

The human Islet Amyloid Polypeptide (hIAPP) is the major constituent of amyloid deposits in pancreatic islets of type-II diabetes. IAPP is secreted together with insulin from the acidic secretory granules at a low pH of approximately 5.5 to the extracellular environment at a neutral pH. The increased accumulation of extracellular hIAPP in diabetes indicates that changes in pH may promote amyloid formation. To gain insights and underlying mechanisms of the pH effect on hIAPP fibrillogenesis, all-atom molecular dynamics simulations in explicit solvent model were performed to study the structural properties of five hIAPP protofibrillar oligomers, under acidic and neutral pH, respectively. In consistent with experimental findings, simulation results show that acidic pH is not conducive to the structural stability of these oligomers. This provides a direct evidence for a recent experiment [L. Khemtemourian, E. Domenech, J. P. F. Doux, M. C. Koorengevel, and J. A. Killian, J. Am. Chem. Soc. 133, 15598 (2011)], which suggests that acidic pH inhibits the fibril formation of hIAPP. In addition, a complementary coarse-grained simulation shows the repulsive electrostatic interactions among charged His18 residues slow down the dimerization process of hIAPP by twofold. Besides, our all-atom simulations reveal acidic pH mainly affects the local structure around residue His18 by destroying the surrounding hydrogen-bonding network, due to the repulsive interactions between protonated interchain His18 residues at acidic pH. It is also disclosed that the local interactions nearby His18 operating between adjacent β-strands trigger the structural transition, which gives hints to the experimental findings that the rate of hIAPP fibril formation and the morphologies of the fibrillar structures are strongly pH-dependent.

摘要

人胰岛淀粉样多肽(hIAPP)是 2 型糖尿病患者胰岛中淀粉样沉积物的主要成分。hIAPP 与胰岛素一起从酸性分泌颗粒中在 pH 值约为 5.5 的低 pH 下分泌到细胞外环境中在 pH 值为中性的环境中。在糖尿病中,细胞外 hIAPP 的积累增加表明 pH 值的变化可能促进淀粉样形成。为了深入了解 pH 值对 hIAPP 原纤维形成的影响及其潜在机制,我们分别在酸性和中性 pH 条件下,使用显式溶剂模型进行了全原子分子动力学模拟,研究了五个 hIAPP 原纤维寡聚物的结构特性。与实验结果一致,模拟结果表明酸性 pH 不利于这些寡聚物的结构稳定性。这为最近的一项实验提供了直接证据 [L. Khemtemourian、E. Domenech、J. P. F. Doux、M. C. Koorengevel 和 J. A. Killian,J. Am. Chem. Soc. 133, 15598 (2011)],表明酸性 pH 抑制 hIAPP 的纤维形成。此外,补充的粗粒化模拟表明,带电荷的 His18 残基之间的排斥静电相互作用将 hIAPP 的二聚化过程减慢了两倍。此外,我们的全原子模拟揭示了酸性 pH 主要通过破坏周围氢键网络来影响残基 His18 周围的局部结构,这是由于酸性 pH 下链间质子化的 His18 残基之间的排斥相互作用所致。还揭示了附近 His18 残基之间的局部相互作用在相邻β-折叠之间触发结构转变,这为实验结果提供了启示,即 hIAPP 纤维形成的速度和纤维状结构的形态强烈依赖于 pH 值。

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