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Critical Role of Desolvation in the Binding of 20-Hydroxyecdysone to the Ecdysone Receptor.

机译:去溶剂化在20-羟基蜕皮激素与蜕皮激素受体结合中的关键作用。

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摘要

The insect steroid hormone 20-hydroxyecdysone (20E) binds to its cognate nuclear receptor composed of the ecdysone receptor (EcR) and Ultraspiracle (USP) and triggers the main developmental transitions, in particular molting and metamorphosis. We present the crystal structure of the ligand-binding domains of EcR/USP in complex with 20E at 2.4A resolution and compare it with published structures of EcR/USP bound to ponasterone A (ponA). ponA is essentially identical to 20E but lacks the 25-OH group of 20E. The structure of 20E-bound EcR indicates that an additional hydrogen bond is formed compared with the ponA-bound receptor, yet, paradoxically, ponA has a significantly higher affinity for EcR than 20E. Theoretical studies based on docking and free energy methods lead to a rationale for understanding the difference in binding affinities between 20E and ponA. Results of the calculations indicate that the favorable contribution from the extra H-bond made by 25-OH of 20E is counterbalanced by its larger desolvation cost compared with that of ponA. The contribution of 25-OH to the binding affinity is further compared with those of 20- and 22-OH groups. Ligands that lack the 20- or 22-OH group are indeed known to bind less favorably to EcR than 20E, an effect opposite to that observed for ponA. The results indicate that their respective contributions to receptor-ligand complex stability reside mostly in their different contributions to solvation/desolvation. Together, the data demonstrate the critical role of ligand desolvation in determining binding affinity, with general implications for the binding of hormones to their cognate nuclear receptors.
机译:昆虫类固醇激素20-羟基蜕皮激素(20E)结合其由蜕皮激素受体(EcR)和超细气瓶(USP)组成的同源核受体,并触发主要的发育转变,特别是蜕皮和变态。我们目前在2.4A分辨率与20E复杂的EcR / USP的配体结合域的晶体结构,并将其与EcR / USP绑定到ponasterone A(ponA)的已发布的结构进行比较。 ponA与20E基本相同,但缺少20E的25-OH基团。结合20E的EcR的结构表明与ponA结合的受体相比,形成了一个额外的氢键,然而,矛盾的是,ponA对EcR的亲和力比20E高得多。基于对接和自由能方法的理论研究为理解20E和ponA之间的结合亲和力差异提供了理论依据。计算结果表明,与ponA相比,由25-OH的20E产生的额外H键的有利贡献被其较高的去溶剂化成本所抵消。将25-OH对结合亲和力的贡献进一步与20-和22-OH基团的贡献相比较。确实知道,缺少20-或22-OH基团的配体与EcR的结合要比20E弱,这与ponA观察到的相反。结果表明,它们各自对受体-配体复合物稳定性的贡献主要在于它们对溶剂化/去溶剂化的不同贡献。在一起,数据证明配体去溶剂化在确定结合亲和力中的关键作用,对激素与其同源核受体的结合具有一般意义。

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