Identification of apposite antagonist for androgen receptor in prostate cancer: an in silico study of fenugreek compounds

雄激素受体 前列腺癌 化学 公共化学 生物信息学 山奈酚 药理学 绿原酸 计算生物学 癌症 医学 生物化学 生物 内科学 色谱法 槲皮素 基因 抗氧化剂
作者
Ezekiel A. Olugbogi,Oluwatobiloba Amusa Arobadade,Damilola S. Bodun,Shola D. Omoseeye,Emmanuel S. Omirin,Oluwaseun Fapohunda,Oluwafemi Emmanuel Ekun,Damilohun Samuel Metibemu,Sidiqat A. Shodehinde,Jamiyu Ayodeji Saliu,Olaposi Idowu Omotuyi
出处
期刊:Journal of Biomolecular Structure & Dynamics [Taylor & Francis]
卷期号:: 1-17 被引量:2
标识
DOI:10.1080/07391102.2023.2273988
摘要

Benign Prostate Cancer (BPC), a prevalent condition predominantly affecting elderly males, manifests with voiding difficulties and urinary retention. A library of compounds from Trigonella foenum-graecum, commonly known as fenugreek was used in this study. We aimed to explore its potential anti-cancer effects by computationally assessing its inhibitory activity on the androgen receptor (AR). For in-silico drug assessment, we employed Maestro 12.8, part of the Schrödinger Suite, to identify the most promising candidates acting as androgen receptor antagonists in the treatment of BPC. Subsequently, 59 fenugreek compounds were retrieved from the PubChem database and subjected to molecular docking against the active site of the target protein, 1E3G. 100-nanosecond molecular dynamics (MD) simulations were performed to assess the stability and compactness of the AR-ligand complexes. Notably, the AR-kaempferol complex exhibited the least fluctuation within the AR active site throughout the simulation trajectory, followed by chlorogenic acid and the reference ligand, hydroxyflutamide. The MM/GBSA values revealed the compounds' maximum free binding energy (-103.3 ± 6, -87.4 ± 23, -68.5 ΔGbind) for chlorogenic acid, kaempferol, and hydroxyflutamide, respectively. These findings suggest their potential as promising leads for drug development. Further lead optimization and comprehensive studies on the top-ranked ligands identified in this investigation are warranted to advance their potential as therapeutic agents for BPC treatment.Communicated by Ramaswamy H. Sarma.

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