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New aryl hydrocarbon receptor homology model targeted to improve docking reliability

机译:旨在提高对接可靠性的新型芳烃受体同源性模型

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The aryl hydrocarbon receptor (AhR) is a ligand-dependent, basic helix-loop-helix Per-ARNT-Sim (PAS) containing transcription factor that can bind and be activated by structurally diverse chemicals, including the toxic environmental contaminant 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD). As no experimentally determined structures of the AhR ligand binding domain (LBD) are available and previous homology models were only derived from apo template structures, we developed a new model based on holo X-ray structures of the hypoxia-inducible factor 2α (HIF-2α) PAS B domain, targeted to improve the accuracy of the binding site for molecular docking applications. We experimentally confirmed the ability of two HIF-2α crystallographic ligands to bind to the mAhR with relatively high affinity and demonstrated that they are AhR agonists, thus justifying the use of the holo HIF-2α structures as templates. A specific modeling/docking approach was proposed to predict the binding modes of AhR ligands in the modeled LBD. It was validated by comparison of the calculated and the experimental binding affinities of active THS ligands and TCDD for the mAhR and by functional activity analysis using several mAhR mutants generated on the basis of the modeling results. Finally the ability of the proposed approach to reproduce the different affinities of TCDD for AhRs of different species was confirmed, and a first test of its reliability in virtual screening is carried out by analyzing the correlation between the calculated and experimental binding affinities of a set of 14 PCDDs.
机译:芳基烃受体(AhR)是依赖配体的基本螺旋-环-螺旋Per-ARNT-Sim(PAS),其转录因子可以结合并被结构多样的化学物质激活,包括有毒的环境污染物2,3, 7,8-四氯二苯并-对二恶英(TCDD)。由于尚无实验确定的AhR配体结合域(LBD)结构,且以前的同源性模型仅来自apo模板结构,因此我们基于缺氧诱导因子2α(HIF- 2α)PAS B结构域,旨在提高分子对接应用中结合位点的准确性。我们通过实验证实了两个HIF-2α晶体配体以相对较高的亲和力与mAhR结合的能力,并证明它们是AhR激动剂,从而证明了使用整体HIF-2α结构作为模板是合理的。提出了一种特定的建模/对接方法来预测建模的LBD中AhR配体的结合模式。通过比较活性THS配体和TCDD对mAhR的计算亲和力和实验结合亲和力,以及通过使用基于建模结果生成的几种mAhR突变体的功能活性分析,验证了这一点。最后,证实了所提方法对于不同物种的AhRs再现TCDD的不同亲和力的能力,并通过分析一组计算的亲和力与实验结合亲和力之间的相关性,对其虚拟筛选的可靠性进行了首次测试。 14个PCDD。

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