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基于结构的药效团模型构建、虚拟筛选和模拟研究,以鉴定针对细胞周期蛋白依赖性激酶 2 的有潜力的抗癌植物化学先导物。

Structure-based pharmacophore modeling, virtual screening and simulation studies for the identification of potent anticancerous phytochemical lead targeting cyclin-dependent kinase 2.

机构信息

Department of Biosciences, Integral University, Lucknow, India.

Department of Bioengineering, Integral University, Lucknow, India.

出版信息

J Biomol Struct Dyn. 2022;40(20):9815-9832. doi: 10.1080/07391102.2021.1936178. Epub 2021 Jun 21.

Abstract

Cyclin-dependent kinases are of critical importance in directing various cell cycle phases making them as potential tumor targets. Cyclin-dependent kinase 2 (CDK2) in particular plays a significant part during cell cycle events and its imbalance roots out tumorogenic environment. Herein, we built a structure-based pharmacophore model complementing the ATP pocket site of CDK2 with four pharmacophoric features, using a series of structures obtained from cluster analysis during MD simulation assessment. This was followed by its validation and further database screening against Taiwan indigenous plants database (5284 compounds). The screened compounds were subjected toward Lipinski's rule (RO5) and ADMET filter followed by docking analysis and simulation study. In filtering hits (10 compounds) via molecular docking against CDK2, Schinilenol with -8.1 kcal/mol fetched out as a best lead phytoinhibitor in the presence of standard drug (Dinaciclib). Additionally, pharmacophore mapping analysis also indicated relative fit values of dinaciclib and schinilenol as 2.37 and 2.31, respectively. Optimization, flexibility prediction and the stability of CDK2 in complex with the ligands were also ascertained by means of molecular dynamics for 50 ns, which further proposed schinilenol having better binding stability than dinaciclib with RMSD values ranging from 0.31 to 0.34 nm. Reactivity site, biological activity detection and cardiotoxicity assessment also proposed schinilenol as a better phytolead inhibitor than the existing dinaciclib. CDK2: Cyclin dependent kinase2; ATP: Adenosine triphosphate; MD: Molecular dynamics, RO5: Rule of five; ADMET: Absorption, distribution, metabolism, and excretion; RMSD: Root mean square deviation; DS: Discovery Studio; SOM: Site of metabolism; RBPM: receptor based pharmacophore model; TIP: Schinilenol; hERG: human Ether-à-go-go - Related GeneCommunicated by Ramaswamy H. Sarma.

摘要

细胞周期蛋白依赖性激酶在指导各种细胞周期阶段中至关重要,使它们成为潜在的肿瘤靶点。特别是细胞周期蛋白依赖性激酶 2(CDK2)在细胞周期事件中起着重要作用,其失衡导致肿瘤发生环境。在此,我们使用一系列在 MD 模拟评估期间通过聚类分析获得的结构,在 CDK2 的 ATP 口袋部位构建了一个基于结构的药效团模型,该模型具有四个药效团特征。随后对其进行验证,并进一步对台湾本土植物数据库(5284 种化合物)进行数据库筛选。筛选出的化合物经过 Lipinski 规则(RO5)和 ADMET 筛选,然后进行对接分析和模拟研究。在通过分子对接对 CDK2 进行筛选命中(10 种化合物)时,Schinilenol 以-8.1kcal/mol 的值成为标准药物(Dinaciclib)存在时的最佳植物抑制剂先导物。此外,药效团映射分析还表明,Dinaciclib 和 Schinilenol 的相对拟合值分别为 2.37 和 2.31。还通过分子动力学对配体与 CDK2 复合物的优化、灵活性预测和稳定性进行了确定,持续时间为 50ns,这进一步表明 Schinilenol 比 Dinaciclib 具有更好的结合稳定性,RMSD 值范围为 0.31 至 0.34nm。反应性位点、生物活性检测和心脏毒性评估也表明 Schinilenol 比现有的 Dinaciclib 更适合作为植物先导抑制剂。

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