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基于集合的虚拟筛选方法和分子动力学模拟发现新型 S6K1 抑制剂。

Discovery of novel S6K1 inhibitors by an ensemble-based virtual screening method and molecular dynamics simulation.

机构信息

College of Life Science, Northwest Normal University, Lanzhou, Gansu, 730070, People's Republic of China.

出版信息

J Mol Model. 2023 Mar 18;29(4):102. doi: 10.1007/s00894-023-05504-9.

DOI:10.1007/s00894-023-05504-9
PMID:36933164
Abstract

Ribosomal protein S6 kinase beta-1 (S6K1) is considered a potential target for the treatment of various diseases, such as obesity, type II diabetes, and cancer. Development of novel S6K1 inhibitors is an urgent and important task for the medicinal chemists. In this research, an effective ensemble-based virtual screening method, including common feature pharmacophore model, 3D-QSAR pharmacophore model, naïve Bayes classifier model, and molecular docking, was applied to discover potential S6K1 inhibitors from BioDiversity database with 29,158 compounds. Finally, 7 hits displayed considerable properties and considered as potential inhibitors against S6K1. Further, carefully analyzing the interactions between these 7 hits and key residues in the S6K1 active site, and comparing them with the reference compound PF-4708671, it was found that 2 hits exhibited better binding patterns. In order to further investigate the mechanism of the interactions between 2 hits and S6K1 at simulated physiological conditions, the molecular dynamics simulation was performed. The ΔG energies for S6K1-Hit1 and S6K1-Hit2 were - 111.47 ± 1.29 and - 54.29 ± 1.19 kJ mol, respectively. Furthermore, deep analysis of these results revealed that Hit1 was the most stable complex, which can stably bind to S6K1 active site, interact with all of the key residues, and induce H1, H2, and M-loop regions changes. Therefore, the identified Hit1 may be a promising lead compound for developing new S6K1 inhibitor for various metabolic diseases treatment.

摘要

核糖体蛋白 S6 激酶β-1(S6K1)被认为是治疗肥胖症、2 型糖尿病和癌症等多种疾病的潜在靶点。开发新型 S6K1 抑制剂是药物化学家的一项紧迫而重要的任务。在这项研究中,应用了一种有效的基于组合的虚拟筛选方法,包括常见特征药效团模型、3D-QSAR 药效团模型、朴素贝叶斯分类器模型和分子对接,从生物多样性数据库中发现了 29158 种化合物中潜在的 S6K1 抑制剂。最后,有 7 个命中物显示出相当的性质,并被认为是 S6K1 的潜在抑制剂。此外,通过仔细分析这 7 个命中物与 S6K1 活性部位关键残基之间的相互作用,并将其与参考化合物 PF-4708671 进行比较,发现有 2 个命中物表现出更好的结合模式。为了进一步研究这 2 个命中物与 S6K1 在模拟生理条件下相互作用的机制,进行了分子动力学模拟。S6K1-Hit1 和 S6K1-Hit2 的ΔG 能量分别为-111.47±1.29和-54.29±1.19 kJ/mol。此外,对这些结果进行深入分析表明,Hit1 是最稳定的复合物,它可以稳定地结合到 S6K1 活性部位,与所有关键残基相互作用,并诱导 H1、H2 和 M 环区域的变化。因此,鉴定出的 Hit1 可能是开发用于治疗各种代谢性疾病的新型 S6K1 抑制剂的有前途的先导化合物。

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