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核受体结构域间的通讯由具有配体特异性的铰链介导。

Nuclear receptor interdomain communication is mediated by the hinge with ligand specificity.

作者信息

Hazarika Saurov, Yu Tracy, Biswas Arumay, Dube Namita, Villalona Priscilla, Okafor C Denise

机构信息

Department of Chemistry, Pennsylvania State University, University Park, PA, 16802, USA.

Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, PA, 16802, USA.

出版信息

bioRxiv. 2024 Apr 15:2024.02.10.579785. doi: 10.1101/2024.02.10.579785.

Abstract

Nuclear receptors are ligand-induced transcription factors that bind directly to target genes and regulate their expression. Ligand binding initiates conformational changes that propagate to other domains, allosterically regulating their activity. The nature of this interdomain communication in nuclear receptors is poorly understood, largely owing to the difficulty of experimentally characterizing full-length structures. We have applied computational modeling approaches to describe and study the structure of the full length farnesoid X receptor (FXR), approximated by the DNA binding domain (DBD) and ligand binding domain (LBD) connected by the flexible hinge region. Using extended molecular dynamics simulations (> 10 microseconds) and enhanced sampling simulations, we provide evidence that ligands selectively induce domain rearrangement, leading to interdomain contact. We use protein-protein interaction assays to provide experimental evidence of these interactions, identifying a critical role of the hinge in mediating interdomain contact. Our results illuminate previously unknown aspects of interdomain communication in FXR and provide a framework to enable characterization of other full length nuclear receptors.

摘要

核受体是配体诱导的转录因子,可直接与靶基因结合并调节其表达。配体结合引发构象变化,该变化会传播到其他结构域,通过变构调节其活性。核受体中这种结构域间通讯的本质目前了解甚少,这主要是由于难以通过实验表征全长结构。我们应用了计算建模方法来描述和研究全长法尼醇X受体(FXR)的结构,该结构由通过柔性铰链区连接的DNA结合结构域(DBD)和配体结合结构域(LBD)近似表示。通过扩展分子动力学模拟(> 10微秒)和增强采样模拟,我们提供了证据表明配体选择性地诱导结构域重排,从而导致结构域间接触。我们使用蛋白质-蛋白质相互作用测定法为这些相互作用提供实验证据,确定了铰链在介导结构域间接触中的关键作用。我们的结果揭示了FXR中结构域间通讯以前未知的方面,并提供了一个框架,以能够表征其他全长核受体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fc2/11042617/67051d8a51a5/nihpp-2024.02.10.579785v2-f0001.jpg

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