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Combined Ligand/Structure-Based Virtual Screening and Molecular Dynamics Simulations of Steroidal Androgen Receptor Antagonists

机译:结合的基于配体/结构的虚拟筛选和甾体雄激素受体拮抗剂的分子动力学模拟

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摘要

The antiandrogens, such as bicalutamide, targeting the androgen receptor (AR), are the main endocrine therapies for prostate cancer (PCa). But as drug resistance to antiandrogens emerges in advanced PCa, there presents a high medical need for exploitation of novel AR antagonists. In this work, the relationships between the molecular structures and antiandrogenic activities of a series of 7α-substituted dihydrotestosterone derivatives were investigated. The proposed MLR model obtained high predictive ability. The thoroughly validated QSAR model was used to virtually screen new dihydrotestosterones derivatives taken from PubChem, resulting in the finding of novel compounds CID_70128824, CID_70127147, and CID_70126881, whose in silico bioactivities are much higher than the published best one, even higher than bicalutamide. In addition, molecular docking, molecular dynamics (MD) simulations, and MM/GBSA have been employed to analyze and compare the binding modes between the novel compounds and AR. Through the analysis of the binding free energy and residue energy decomposition, we concluded that the newly discovered chemicals can in silico bind to AR with similar position and mechanism to the reported active compound and the van der Waals interaction is the main driving force during the binding process.
机译:靶向雄激素受体(AR)的抗雄激素,例如比卡鲁胺,是前列腺癌(PCa)的主要内分泌治疗方法。但是随着对抗雄激素的耐药性在晚​​期PCa中出现,对新型AR拮抗剂的开发提出了很高的医学需求。在这项工作中,研究了一系列7α-取代的二氢睾丸激素衍生物的分子结构与抗雄激素活性之间的关系。提出的MLR模型具有较高的预测能力。经过充分验证的QSAR模型用于虚拟筛选取自PubChem的新二氢睾丸激素衍生物,从而发现了新型化合物CID_70128824,CID_70127147和CID_70126881,其计算机生物活性远远高于已发表的最佳化合物,甚至高于比卡鲁胺。此外,分子对接,分子动力学(MD)模拟和MM / GBSA已被用来分析和比较新型化合物与AR之间的结合模式。通过对结合自由能和残余能分解的分析,我们得出结论,新发现的化学物质可以在硅胶上以与报告的活性化合物相似的位置和机理与AR结合,范德华相互作用是结合过程中的主要驱动力。处理。

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