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重新出现针对耐药性前列腺癌治疗的孤儿治疗靶点 - ROR-γ 蛋白的全面构象和结合分析。

Re-emergence of an orphan therapeutic target for the treatment of resistant prostate cancer - a thorough conformational and binding analysis for ROR-γ protein.

机构信息

a Molecular Modelling and Drug Design Research Group, School of Health Sciences, University of KwaZulu-Natal , Westville , Durban 4000 , South Africa.

出版信息

J Biomol Struct Dyn. 2018 Feb;36(2):335-350. doi: 10.1080/07391102.2016.1277555. Epub 2017 Jan 16.

Abstract

Recent studies have linked a deadly form of prostate cancer known as metastatic castration-resistant prostate cancer to retinoic acid-related orphan-receptor gamma (ROR-γ). Most of these studies continued to place ROR-γ as orphan because of unidentifiable inhibitor. Recently identified inhibitors of ROR-γ and their therapeutic potential were evaluated, among which inhibitor XY018 was the potent. However, molecular understanding of the conformational features of XY018-ROR-γ complex is still elusive. Herein, molecular dynamics simulations were conducted on HC9-ROR-γ and XY018-ROR-γ complexes to understand their conformational features at molecular level and the influence of XY018 binding on the dynamics of ROR-γ with the aid of post-dynamic analytical tools. These include; principal component analysis, radius of gyration, binding free energy calculation (MM/GBSA), per-residue fluctuation and hydrogen bond occupancy. Findings from this study revealed that (1) hydrophobic packing contributes significantly to binding free energy, (2) Ile136 and Leu60 exhibited high hydrogen-bond occupancy in XY018-ROR-γ and HC9-ROR-γ, respectively, (3) XY018-ROR-γ displayed a relatively high loop region residue fluctuation compared to HC9-ROR-γ, (4) electrostatic interactions are a potential binding force in XY018-ROR-γ complex compared to HC9-ROR-γ, (5) XY018-ROR-γ assumes a rigid conformation which is highlighted by a decrease in residual fluctuation, (6) XY018 could potentially induce pseudoporphyria, nephritis and interstitial nephritis but potentially safe in renal failure. This study could serve as a base line for the design of new potential ROR-γ inhibitors.

摘要

最近的研究将一种称为转移性去势抵抗性前列腺癌的致命形式的前列腺癌与维甲酸相关孤儿受体γ(ROR-γ)联系起来。由于无法识别抑制剂,这些研究大多继续将 ROR-γ 归类为孤儿受体。最近评估了 ROR-γ 的抑制剂及其治疗潜力,其中抑制剂 XY018 是有效的。然而,对于 XY018-ROR-γ 复合物的构象特征的分子理解仍然难以捉摸。在此,对 HC9-ROR-γ 和 XY018-ROR-γ 复合物进行了分子动力学模拟,以了解它们在分子水平上的构象特征,以及 XY018 结合对 ROR-γ 动力学的影响,同时借助动态后分析工具。这些工具包括:主成分分析、回转半径、结合自由能计算(MM/GBSA)、残基波动和氢键占有率。这项研究的结果表明:(1)疏水性堆积对结合自由能有重要贡献;(2)Ile136 和 Leu60 在 XY018-ROR-γ 和 HC9-ROR-γ 中分别表现出高氢键占有率;(3)与 HC9-ROR-γ 相比,XY018-ROR-γ 的环区残基波动较大;(4)与 HC9-ROR-γ 相比,静电相互作用是 XY018-ROR-γ 复合物中的潜在结合力;(5)与 HC9-ROR-γ 相比,XY018-ROR-γ 呈现出刚性构象,其特征是残余波动减小;(6)XY018 可能潜在地引起假卟啉症、肾炎和间质性肾炎,但在肾衰竭时可能是安全的。这项研究可以作为设计新的潜在 ROR-γ 抑制剂的基础。

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