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首页> 外文期刊>Journal of Medicinal Chemistry >Homology modeling using multiple molecular dynamics simulations and docking studies of the human androgen receptor ligand binding domain bound to testosterone and nonsteroidal ligands.
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Homology modeling using multiple molecular dynamics simulations and docking studies of the human androgen receptor ligand binding domain bound to testosterone and nonsteroidal ligands.

机译:使用多种分子动力学模拟进行的同源性建模,以及与睾丸激素和非甾体配体结合的人类雄激素受体配体结合域的对接研究。

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摘要

To facilitate the rational design of novel and more potent androgen receptor ligands, three-dimensional models for the human androgen receptor ligand binding domain bound to testosterone have been developed. These models of the androgen receptor were based on the crystal structure of the highly homologous human progesterone receptor ligand binding domain. The homology modeled androgen receptor was refined using unrestrained multiple molecular dynamics simulations in explicit solvent. Key H-bonding partners with the 17-hydroxy group and 3-keto group of testosterone are Asn705 and Thr877, and Gln711 and Arg752, respectively. These models show the presence of a unique unoccupied cavity within the androgen receptor binding pocket which may be valuable in the development of novel selective androgen receptor ligands. A qualitative analysis of amino acid mutations within the hAR binding pocket that affect ligand binding are consistent with these androgen receptor models. In addition to testosterone, the binding modes of several hydroxyflutamide-like nonsteroidal ligands for the androgen receptor are investigated using flexible docking with FlexX followed by refinement of the initial complexes with molecular dynamics simulations. These docking studies indicate that Asn705 is an important determinant in binding hydroxyflutamide and its derivatives by participating in H-bond interactions with the alpha-hydroxy moiety of these ligands. In addition, the nitro functionality mimics the 3-keto group of the natural ligand testosterone and is involved in H-bonding interactions with Gln711 and Arg752. From these docking studies, we suggest a mechanism for the enantioselective binding of chiral hydroxyflutamide derivatives and expand upon the previously reported structure-activity relationship for hydroxyflutamide and its derivatives.
机译:为了促进新颖和更有效的雄激素受体配体的合理设计,已开发了与睾丸激素结合的人雄激素受体配体结合域的三维模型。这些雄激素受体模型基于高度同源的人类孕激素受体配体结合域的晶体结构。在显性溶剂中使用不受限制的多分子动力学模拟,对同源性建模的雄激素受体进行了改进。具有17-羟基和3-酮基睾丸激素的关键H键结合伙伴分别是Asn705和Thr877,以及Gln711和Arg752。这些模型表明,在雄激素受体结合口袋中存在一个独特的空洞,这在开发新型选择性雄激素受体配体中可能是有价值的。 hAR结合口袋中影响配体结合的氨基酸突变的定性分析与这些雄激素受体模型一致。除睾丸激素外,还通过使用FlexX与FlexX的对接进行了研究,研究了几种羟基氟他胺类非甾体配体与雄激素受体的结合模式,随后通过分子动力学模拟对初始复合物进行了改进。这些对接研究表明,Asn705通过参与与这些配体的α-羟基部分的氢键相互作用,是结合羟基氟他胺及其衍生物的重要决定因素。另外,硝基官能团模拟天然配体睾丸激素的3-酮基,并参与与Gln711和Arg752的氢键相互作用。从这些对接研究中,我们提出了一种手性羟基氟他胺衍生物的对映选择性结合的机制,并扩展了先前报道的羟基氟他胺及其衍生物的结构-活性关系。

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