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模拟法舒地尔在α-突触核蛋白早期二聚化过程中的抗聚集作用。

Simulating the anti-aggregative effect of fasudil in early dimerisation process of α-synuclein.

机构信息

Tata Institute of Fundamental Research Hyderabad, 36/P Gopanapalli village, Serilingampally Mandal, Hyderabad, Telangana 500046, India.

Tata Institute of Fundamental Research Hyderabad, 36/P Gopanapalli village, Serilingampally Mandal, Hyderabad, Telangana 500046, India.

出版信息

Biophys Chem. 2024 Nov;314:107319. doi: 10.1016/j.bpc.2024.107319. Epub 2024 Aug 30.

Abstract

The aggregation of the protein α-synuclein into amyloid deposits is associated with multiple neurological disorders, including Parkinson's disease. Soluble amyloid oligomers are reported to exhibit higher toxicity than insoluble amyloid fibrils, with dimers being the smallest toxic oligomer. Small molecule drugs, such as fasudil, have shown potential in targeting α-synuclein aggregation and reducing its toxicity. In this study, we use atomistic molecular dynamics simulations to demonstrate how fasudil affects the earliest stage of aggregation, namely dimerization. Our results show that the presence of fasudil reduces the propensity for intermolecular contact formation between protein chains. Consistent with previous reports, our analysis confirms that fasudil predominantly interacts with the negatively charged C-terminal region of α-synuclein. However, we also observe transient interactions with residues in the charged N-terminal and hydrophobic NAC regions. Our simulations indicate that while fasudil prominently interacts with the C-terminal region, it is the transient interactions with residues in the N-terminal and NAC regions that effectively block the formation of intermolecular contacts between protein chains and prevent early dimerization of this disordered protein.

摘要

蛋白质 α-突触核蛋白的聚集与多种神经紊乱相关,包括帕金森病。据报道,可溶性淀粉样寡聚体比不溶性淀粉样纤维具有更高的毒性,而二聚体是毒性最小的寡聚体。小分子药物,如法舒地尔,已显示出在靶向 α-突触核蛋白聚集和降低其毒性方面的潜力。在这项研究中,我们使用原子分子动力学模拟来演示法舒地尔如何影响聚集的最早阶段,即二聚化。我们的结果表明,法舒地尔的存在降低了蛋白质链之间形成分子间接触的倾向。与之前的报告一致,我们的分析证实法舒地尔主要与 α-突触核蛋白的带负电荷的 C 端区域相互作用。然而,我们还观察到与带电荷的 N 端和疏水性 NAC 区域的残基的瞬时相互作用。我们的模拟表明,虽然法舒地尔与 C 端区域显著相互作用,但与 N 端和 NAC 区域残基的瞬时相互作用有效地阻止了蛋白质链之间的分子间接触的形成,并阻止了这种无序蛋白质的早期二聚化。

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