首页> 外文期刊>The Journal of biological chemistry >X-ray Structures of Progesterone Receptor Ligand Binding Domain in Its Agonist State Reveal Differing Mechanisms for Mixed Profiles of 11β-Substituted Steroids
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X-ray Structures of Progesterone Receptor Ligand Binding Domain in Its Agonist State Reveal Differing Mechanisms for Mixed Profiles of 11β-Substituted Steroids

机译:其激动剂状态下孕酮受体配体结合结构域的X射线结构揭示了11β取代类固醇的混合谱的不同机制

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We present here the x-ray structures of the progesterone receptor (PR) in complex with two mixed profile PR modulators whose functional activity results from two differing molecular mechanisms. The structure of Asoprisnil bound to the agonist state of PR demonstrates the contribution of the ligand to increasing stability of the agonist conformation of helix-12 via a specific hydrogen-bond network including Glu723. This interaction is absent when the full antagonist, RU486, binds to PR. Combined with a previously reported structure of Asoprisnil bound to the antagonist state of the receptor, this structure extends our understanding of the complex molecular interactions underlying the mixed agonist/antagonist profile of the compound. In addition, we present the structure of PR in its agonist conformation bound to the mixed profile compound Org3H whose reduced antagonistic activity and increased agonistic activity compared with reference antagonists is due to an induced fit around Trp755, resulting in a decreased steric clash with Met909 but inducing a new internal clash with Val912 in helix-12. This structure also explains the previously published observation that 16α attachments to RU486 analogs induce mixed profiles by altering the binding of 11β substituents. Together these structures further our understanding of the steric and electrostatic factors that contribute to the function of steroid receptor modulators, providing valuable insight for future compound design.
机译:我们在此呈现孕激素受体(PR)的X射线结构与两个混合型材PR调节剂,其功能活性由两种不同的分子机制产生。与激动剂的Asoprisnil的结构的结构证明了配体通过包括Glu723的特定氢键网络的螺旋-12的激动剂构象的稳定性的贡献。当完整的拮抗剂ru486与pr结合时,这种相互作用不存在。结合先前报道的Asoprisnil结构与受体的拮抗状态结合,这种结构延伸了我们对化合物的混合激动剂/拮抗剂曲线的复杂分子相互作用的理解。此外,我们介绍了其激动剂构象的Pr结构与混合型化合物组合,其与参考拮抗剂相比减少拮抗活性和增加的激动活性,这是由于TRP755周围的诱导拟合,导致具有MAT909的次数减少但是在Helix-12中使用Val912引起新内部冲突。该结构还解释了先前发表的观察,即Ru486类似物的16α附着通过改变11β取代基的结合来诱导混合型材。这些结构进一步了解有助于类固醇受体调节剂的静物和静电因素的理解,为未来的复合设计提供有价值的见解。

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