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New Insights for Drug Design from the X-Ray Crystallographic Structures of G-Protein-Coupled Receptors

机译:G蛋白偶联受体的X射线晶体学结构对药物设计的新见解

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摘要

Methodological advances in X-ray crystallography have made possible the recent solution of X-ray structures of pharmaceutically important G protein-coupled receptors (GPCRs), including receptors for biogenic amines, peptides, a nucleoside, and a sphingolipid. These high-resolution structures have greatly increased our understanding of ligand recognition and receptor activation. Conformational changes associated with activation common to several receptors entail outward movements of the intracellular side of transmembrane helix 6 (TM6) and movements of TM5 toward TM6. Movements associated with specific agonists or receptors have also been described [e.g., extracellular loop (EL) 3 in the A2A adenosine receptor]. The binding sites of different receptors partly overlap but differ significantly in ligand orientation, depth, and breadth of contact areas in TM regions and the involvement of the ELs. A current challenge is how to use this structural information for the rational design of novel potent and selective ligands. For example, new chemotypes were discovered as antagonists of various GPCRs by subjecting chemical libraries to in silico docking in the X-ray structures. The vast majority of GPCR structures and their ligand complexes are still unsolved, and no structures are known outside of family A GPCRs. Molecular modeling, informed by supporting information from site-directed mutagenesis and structure-activity relationships, has been validated as a useful tool to extend structural insights to related GPCRs and to analyze docking of other ligands in already crystallized GPCRs.
机译:X射线晶体学方法学上的进步使得最近重要的G蛋白偶联受体(GPCR)的X射线结构解决方案成为可能,这些受体包括生物胺,肽,核苷和鞘脂的受体。这些高分辨率结构极大地增加了我们对配体识别和受体激活的理解。与几种受体共有的激活相关的构象变化需要跨膜螺旋6(TM6)的细胞内侧向外运动以及TM5向TM6的运动。还已经描述了与特定激动剂或受体相关的运动[例如,A2A腺苷受体中的细胞外环(EL)3]。不同受体的结合位点部分重叠,但是在TM区域的配体取向,深度和接触区域的广度以及EL的参与方面存在显着差异。当前的挑战是如何利用这种结构信息来合理设计新型有效和选择性配体。例如,通过使化学文库经受X射线结构的计算机对接,发现了新的化学型作为各种GPCR的拮抗剂。绝大多数GPCR结构及其配体复合物仍未溶解,在A族GPCR之外没有已知的结构。通过支持定点诱变和结构-活性关系的信息,进行分子建模已被验证为将结构见解扩展到相关GPCR并分析已经结晶的GPCR中其他配体对接的有用工具。

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