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理性发现微管稳定肽。

Rational Discovery of Microtubule-Stabilizing Peptides.

机构信息

Departamento de Ciencias Químicas, Facultad de Ciencias Exactas, Universidad Andres Bello, Sede Concepción, Autopista Concepción-Talcahuano 7100, Talcahuano, Chile 4300866.

出版信息

J Chem Inf Model. 2022 Dec 26;62(24):6844-6856. doi: 10.1021/acs.jcim.2c00849. Epub 2022 Sep 8.

Abstract

Microtubule (MT) stabilization is an attractive pharmacological strategy to hamper the progress of neurodegenerative diseases. In this regard, seeking peptides with MT-stabilizing properties has awoken great interest. This work reports the rational discovery of two structurally related MT-stabilizing octapeptides using a combination of protein-peptide docking, conventional molecular dynamics, Gaussian accelerated molecular dynamics (GaMD), and tubulin polymerization assays. FASTA sequences for ∼1000 peptides were crafted from single and double mutants of davunetide (NAP) and docked against the Taxol (TX) site on an octameric MT model representing a portion of the MT wall. Docked peptides were rescored after MM minimization and binding free energy refinement through single-point MM/GBSA calculations. The 60 best-ranked peptides were subjected to 50 ns MD simulations on peptide-MT complexes at the terminal TX site in the octameric Tau-MT model resulting in 11 complexes with occupancies greater than 99% and peptide-protein binding free energies less than -40 kcal/mol. Selected peptides were then examined through 300 ns GaMD simulations in complexes containing two identical ligands at the terminal and intermediate TX sites in the Tau-MT model to account for the differential association of MT-binding peptides to different regions of the MT structure. Six candidates showed a favorable MT-binding potential based on the analysis of interaction frequencies and relative mobilities of the complex components, suggesting a pivotal role of Arg278, Gln281, and Arg369 residues for peptides recognition. Four candidates were predicted to preserve an adequate balance of longitudinal and lateral interactions between tubulin dimers in peptide-MT complexes such that MT-stabilizing effects could be expected. MT polymerization experiments confirmed that four peptides (HAPVSIHQ, NYPVSIHQ, NWPVSIWQ, HAPVSIIQ) exhibit MT-stabilizing activity with NWPVSIWQ () and HAPVSIIQ () being the most active. Tryptophan quenching assays verified that and bind to nonpolymeric tubulin, whereas viability experiments on HEK cells confirmed their safety to pursue future pharmacological studies. The results herein presented are valuable to making progress in the rational design of MT-stabilizing peptides.

摘要

微管(MT)稳定化是一种有吸引力的药理学策略,可阻止神经退行性疾病的进展。在这方面,寻找具有 MT 稳定化特性的肽引起了极大的兴趣。这项工作报告了使用蛋白质-肽对接、常规分子动力学、高斯加速分子动力学(GaMD)和微管聚合测定的组合,合理发现了两种结构相关的 MT 稳定化八肽。从 davunetide(NAP)的单突变体和双突变体设计了 ∼1000 个肽的 FAST 序列,并与 Taxol(TX)结合位点对接,该结合位点代表 MT 壁的一部分八聚体 MT 模型。对接肽在 MM 最小化后进行重评分,并通过单点 MM/GBSA 计算进行结合自由能细化。前 60 个评分最高的肽在八聚体 Tau-MT 模型中终端 TX 位点的肽-MT 复合物上进行了 50 ns MD 模拟,导致 11 个复合物的占有率大于 99%,肽-蛋白结合自由能小于-40 kcal/mol。选择的肽然后在包含两个相同配体的终端和中间 TX 位点的 Tau-MT 模型中的复合物中进行 300 ns GaMD 模拟,以解释 MT 结合肽与 MT 结构不同区域的差异结合。基于对复合物成分相互作用频率和相对迁移率的分析,有 6 个候选物显示出有利的 MT 结合潜力,表明 Arg278、Gln281 和 Arg369 残基对肽识别具有关键作用。预测有 4 个候选物在肽-MT 复合物中保持微管二聚体之间的纵向和横向相互作用之间的适当平衡,从而可以预期 MT 稳定化作用。MT 聚合实验证实,四种肽(HAPVSIHQ、NYPVSIHQ、NWPVSIWQ、HAPVSIIQ)具有 MT 稳定化活性,其中 NWPVSIWQ()和 HAPVSIIQ()最活跃。色氨酸猝灭实验证实和结合非聚合微管,而对 HEK 细胞的活力实验证实了它们用于进一步药理学研究的安全性。本文介绍的结果对合理设计 MT 稳定化肽的研究进展具有重要意义。

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