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藏红花素抑制人α-突触核蛋白的纤维形成并使其解聚:来自分子动力学模拟的实验发现和机制见解。

Crocin Inhibits the Fibrillation of Human α-synuclein and Disassembles Mature Fibrils: Experimental Findings and Mechanistic Insights from Molecular Dynamics Simulation.

机构信息

Department of Cell and Molecular Biology, School of Biology, College of Science, University of Tehran, Tehran 14155-6455, Iran.

出版信息

ACS Chem Neurosci. 2021 Nov 3;12(21):4037-4057. doi: 10.1021/acschemneuro.1c00379. Epub 2021 Oct 12.

Abstract

The aggregation of human alpha-synuclein (hαS) is pivotally implicated in the development of most types of synucleinopathies. Molecules that can inhibit or reverse the aggregation process of amyloidogenic proteins have potential therapeutic value. The anti-aggregating activity of multiple carotenoid compounds has been reported over the past decades against a growing list of amyloidogenic polypeptides. Here, we aimed to determine whether crocin, the main carotenoid glycoside component of saffron, would inhibit hαS aggregation or could disassemble its preformed fibrils. By employing a series of biochemical and biophysical techniques, crocin was exhibited to inhibit hαS fibrillation in a dose-dependent fashion by stabilizing very early aggregation intermediates in off-pathway non-toxic conformations with little β-sheet content. We also observed that crocin at high concentrations could efficiently destabilize mature fibrils and disassemble them into seeding-incompetent intermediates by altering their β-sheet conformation and reshaping their structure. Our atomistic molecular dynamics (MD) simulations demonstrated that crocin molecules bind to both the non amyloid-β component (NAC) region and C-terminal domain of hαS. These interactions could thereby stabilize the autoinhibitory conformation of the protein and prevent it from adopting aggregation-prone structures. MD simulations further suggested that ligand molecules prefer to reside longitudinally along the fibril axis onto the edges of the inter-protofilament interface where they establish hydrogen and hydrophobic bonds with steric zipper stabilizing residues. These interactions turned out to destabilize hαS fibrils by altering the interstrand twist angles, increasing the rigidity of the fibril core, and elevating its radius of gyration. Our findings suggest the potential pharmaceutical implication of crocin in synucleinopathies.

摘要

人源α-突触核蛋白(hαS)的聚集与大多数类型的突触核蛋白病的发展密切相关。能够抑制或逆转淀粉样蛋白聚集过程的分子具有潜在的治疗价值。在过去的几十年中,已有报道称多种类胡萝卜素化合物对不断增加的淀粉样多肽具有抗聚集活性。在这里,我们旨在确定藏红花的主要类胡萝卜素糖苷成分藏红花酸是否会抑制 hαS 聚集,或者是否可以分解其预先形成的纤维。通过采用一系列生化和生物物理技术,我们发现藏红花酸以剂量依赖的方式抑制 hαS 纤维化,通过稳定非淀粉样β成分(NAC)区域和 C 末端结构域的早期聚集中间产物,形成具有较少β-折叠含量的无毒性构象。我们还观察到,藏红花酸在高浓度时可以通过改变其β-折叠构象并重塑其结构,有效地使成熟纤维不稳定并将其分解为无成核能力的中间产物。我们的原子分子动力学(MD)模拟表明,藏红花酸分子与 hαS 的非淀粉样β成分(NAC)区域和 C 末端结构域都结合。这些相互作用可以稳定蛋白质的自动抑制构象,防止其采用易于聚集的结构。MD 模拟进一步表明,配体分子更喜欢沿着纤维轴纵向位于原纤维之间的界面边缘,在那里它们与空间拉链稳定残基建立氢键和疏水键。这些相互作用通过改变链间扭转角、增加纤维核心的刚性和提高其回转半径,从而使 hαS 纤维不稳定。我们的研究结果表明藏红花酸在突触核蛋白病中的潜在药用意义。

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