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基于结构的方法调节小分子与多功能配体激活蛋白的结合。

Structure-guided approach to modulate small molecule binding to a promiscuous ligand-activated protein.

机构信息

Department of Chemical Biology and Therapeutics, St. Jude Children's Research Hospital, Memphis, TN 38105.

Department of Structural Biology, St. Jude Children's Research Hospital, Memphis, TN 38105.

出版信息

Proc Natl Acad Sci U S A. 2023 Mar 7;120(10):e2217804120. doi: 10.1073/pnas.2217804120. Epub 2023 Feb 27.

Abstract

Ligand-binding promiscuity in detoxification systems protects the body from toxicological harm but is a roadblock to drug development due to the difficulty in optimizing small molecules to both retain target potency and avoid metabolic events. Immense effort is invested in evaluating metabolism of molecules to develop safer, more effective treatments, but engineering specificity into or out of promiscuous proteins and their ligands is a challenging task. To better understand the promiscuous nature of detoxification networks, we have used X-ray crystallography to characterize a structural feature of pregnane X receptor (PXR), a nuclear receptor that is activated by diverse molecules (with different structures and sizes) to up-regulate transcription of drug metabolism genes. We found that large ligands expand PXR's ligand-binding pocket, and the ligand-induced expansion occurs through a specific unfavorable compound-protein clash that likely contributes to reduced binding affinity. Removing the clash by compound modification resulted in more favorable binding modes with significantly enhanced binding affinity. We then engineered the unfavorable ligand-protein clash into a potent, small PXR ligand, resulting in marked reduction in PXR binding and activation. Structural analysis showed that PXR is remodeled, and the modified ligands reposition in the binding pocket to avoid clashes, but the conformational changes result in less favorable binding modes. Thus, ligand-induced binding pocket expansion increases ligand-binding potential of PXR but is an unfavorable event; therefore, drug candidates can be engineered to expand PXR's ligand-binding pocket and reduce their safety liability due to PXR binding.

摘要

解毒系统中的配体结合混杂性可以保护身体免受毒理学伤害,但由于难以优化小分子以保留靶标效力并避免代谢事件,这成为了药物开发的障碍。人们投入了巨大的努力来评估分子的代谢,以开发更安全、更有效的治疗方法,但将特异性引入或剔除混杂蛋白及其配体是一项具有挑战性的任务。为了更好地理解解毒网络的混杂性质,我们使用 X 射线晶体学来描述了一种孕激素相关受体(PXR)的结构特征,该受体是一种核受体,可被多种分子(具有不同的结构和大小)激活,从而上调药物代谢基因的转录。我们发现,大的配体扩展了 PXR 的配体结合口袋,而配体诱导的扩展是通过一种特定的不利的化合物-蛋白质冲突来实现的,这种冲突可能导致结合亲和力降低。通过化合物修饰消除这种冲突,会产生更有利的结合模式,从而显著提高结合亲和力。然后,我们将不利的配体-蛋白质冲突引入到一种有效的、小分子的 PXR 配体中,导致 PXR 结合和激活明显减少。结构分析表明,PXR 发生了重塑,修饰后的配体在结合口袋中重新定位以避免冲突,但构象变化导致结合模式不太有利。因此,配体诱导的结合口袋扩展增加了 PXR 的配体结合潜力,但这是一个不利的事件;因此,可以对药物候选物进行工程改造,以扩展 PXR 的配体结合口袋,并降低其因 PXR 结合而产生的安全性风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5aa/10013835/59fc1f90ef30/pnas.2217804120fig01.jpg

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