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小分子抑制 Aβ 肽聚集及其通过 POPC 脂双层的渗透:分子动力学模拟研究的见解。

Inhibition of Aβ Peptide Aggregation by Small Molecules and Their Permeation through POPC Lipid Bilayer: Insight from Molecular Dynamics Simulation Study.

机构信息

Department of Chemistry, Indian Institute of Technology, Guwahati, Assam, India 781039.

出版信息

J Chem Inf Model. 2022 Nov 14;62(21):5193-5207. doi: 10.1021/acs.jcim.1c01366. Epub 2022 Mar 20.

DOI:10.1021/acs.jcim.1c01366
PMID:35306811
Abstract

Alzheimer's Disease is a rapidly progressing irreversible neurodegenerative disorder characterized by neuronal cell deterioration that endangers human health. With its proper therapeutic treatment being unavailable, several research groups throughout the world are involved in designing efficient drug molecules. However, the elusive mechanism of action of the drugs as well as their debilitating side effects pose major challenges in this regard. In the present article, we investigated the inhibitory effect of an indanone-carbamate-based molecule on Aβ peptide aggregation by employing a series of all-atom molecular dynamics simulation study. To gain explicit insights, we studied the role of inhibitor molecules on the disruption of highly arranged β-sheet of peptides by various types of analyses such as structural analysis, Cα-Cα-atom distance, residue-wise contact map, and solvent accessible surface area. The results obtained from various analyses revealed that the inhibitor molecules interacted with Aβ peptides to destabilize its arranged β-sheet conformer via hydrophobic interaction. To further comprehend the effect of inhibitors on amyloid aggregation, we also determined interaction energy, hydration number, radial distribution function, hydrogen bonding, and potential of mean forces. In addition, the permeability of the inhibitors through model POPC lipid bilayer via passive diffusion was also analyzed. Our study is noteworthy in that it elucidates the strong interaction between inhibitors and the central hydrophobic core of peptides comprising aromatic phenylalanine residues, as well as the passive translocation of inhibitors across POPC lipid bilayers.

摘要

阿尔茨海默病是一种快速进展的不可逆神经退行性疾病,其特征是神经元细胞恶化,危害人类健康。由于缺乏适当的治疗方法,世界各地的多个研究小组都在致力于设计有效的药物分子。然而,药物作用机制难以捉摸,且具有致残副作用,这在这方面构成了重大挑战。在本文中,我们通过一系列全原子分子动力学模拟研究,研究了基于茚酮-氨基甲酸酯的分子对 Aβ肽聚集的抑制作用。为了获得明确的见解,我们通过结构分析、Cα-Cα 原子距离、残基接触图和溶剂可及表面积等各种分析来研究抑制剂分子在破坏肽的高度排列的β-折叠结构中的作用。各种分析的结果表明,抑制剂分子与 Aβ肽相互作用,通过疏水相互作用使肽的排列β-折叠构象不稳定。为了进一步了解抑制剂对淀粉样蛋白聚集的影响,我们还确定了相互作用能、水合数、径向分布函数、氢键和平均力势能。此外,还通过被动扩散分析了抑制剂通过模型 POPC 脂质双层的渗透性。我们的研究具有重要意义,因为它阐明了抑制剂与包含芳香苯丙氨酸残基的肽的中心疏水区之间的强相互作用,以及抑制剂在 POPC 脂质双层中的被动转运。

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