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利用结合位点特征预测 G 蛋白偶联受体的多功能性。

Predicting GPCR promiscuity using binding site features.

机构信息

Institute of Biochemistry, Food Science and Nutrition, Robert H. Smith Faculty of Agriculture Food and Environment, The Hebrew University , Rehovot 76100, Israel.

出版信息

J Chem Inf Model. 2014 Jan 27;54(1):184-94. doi: 10.1021/ci400552z. Epub 2013 Dec 27.

Abstract

G protein-coupled receptors (GPCRs) represent a large family of signaling proteins that includes many therapeutic targets. GPCR ligands include odorants, tastants, and neurotransmitters and vary in size and properties. Dramatic chemical diversity may occur even among ligands of the same receptor. Our goal is to unravel the structural and chemical features that determine GPCRs' promiscuity toward their ligands. We perform statistical analysis using more than 30 descriptors related to the sequence, physicochemical, structural, and energetic properties of the GPCR binding sites-we find that the chemical variability of antagonists significantly correlates with the binding site hydrophobicity and anticorrelates with the number of hydrogen bond donors in the binding site. The number of disulfide bridges in the extracellular region of a receptor anticorrelates with the range of molecular weights of its antagonists, highlighting the role of the entrance pathway in determining the size selectivity for GPCR antagonists. The predictive capability of the model is successfully validated using a separate set of GPCRs, using either X-ray structures or homology models.

摘要

G 蛋白偶联受体 (GPCR) 是一大类信号蛋白家族,其中包含许多治疗靶点。GPCR 配体包括气味、味道和神经递质,其大小和性质各不相同。即使是同一受体的配体,也可能存在显著的化学多样性。我们的目标是揭示决定 GPCR 对其配体的混杂性的结构和化学特征。我们使用超过 30 个与 GPCR 结合位点的序列、物理化学、结构和能量特性相关的描述符进行统计分析——我们发现,拮抗剂的化学可变性与结合位点疏水性显著相关,与结合位点中氢键供体的数量呈反相关。受体细胞外区域中二硫键的数量与拮抗剂的分子量范围呈反相关,突出了进入途径在确定 GPCR 拮抗剂的尺寸选择性方面的作用。该模型的预测能力使用另一组 GPCR 进行了成功验证,这些 GPCR 使用 X 射线结构或同源模型。

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