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探索 NRs 超家族配体结合域的结构动态变化。

Exploring Ligand Binding Domain Dynamics in the NRs Superfamily.

机构信息

Department of Drug Science and Technology, University of Turin, Via Giuria 9, 10125 Turin, Italy.

Molecular Horizon Srl, Via Montelino 30, 06084 Bettona, Italy.

出版信息

Int J Mol Sci. 2022 Aug 5;23(15):8732. doi: 10.3390/ijms23158732.

Abstract

Nuclear receptors (NRs) are transcription factors that play an important role in multiple diseases, such as cancer, inflammation, and metabolic disorders. They share a common structural organization composed of five domains, of which the ligand-binding domain (LBD) can adopt different conformations in response to substrate, agonist, and antagonist binding, leading to distinct transcription effects. A key feature of NRs is, indeed, their intrinsic dynamics that make them a challenging target in drug discovery. This work aims to provide a meaningful investigation of NR structural variability to outline a dynamic profile for each of them. To do that, we propose a methodology based on the computation and comparison of protein cavities among the crystallographic structures of NR LBDs. First, pockets were detected with the FLAP algorithm and then an "all against all" approach was applied by comparing each pair of pockets within the same sub-family on the basis of their similarity score. The analysis concerned all the detectable cavities in NRs, with particular attention paid to the active site pockets. This approach can guide the investigation of NR intrinsic dynamics, the selection of reference structures to be used in drug design and the easy identification of alternative binding sites.

摘要

核受体(NRs)是转录因子,在多种疾病中发挥重要作用,如癌症、炎症和代谢紊乱。它们具有共同的结构组织,由五个结构域组成,其中配体结合域(LBD)可以根据底物、激动剂和拮抗剂的结合采用不同的构象,导致不同的转录效应。NRs 的一个关键特征是其内在的动力学,这使得它们成为药物发现中的一个具有挑战性的靶点。这项工作旨在对 NR 的结构变异性进行有意义的研究,为它们中的每一个描绘一个动态轮廓。为此,我们提出了一种基于计算和比较 NR LBD 晶体结构中蛋白质腔的方法。首先,使用 FLAP 算法检测口袋,然后应用“两两比较”方法,根据相似性得分比较同一亚家族中每对口袋。该分析涉及 NR 中所有可检测的腔,特别关注活性位点腔。这种方法可以指导 NR 内在动力学的研究、选择用于药物设计的参考结构以及易于识别替代结合位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5809/9369052/06429954ce0f/ijms-23-08732-g001.jpg

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