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作用于P2Y受体的核苷酸:连接结构与功能

Nucleotides Acting at P2Y Receptors: Connecting Structure and Function.

作者信息

Jacobson Kenneth A, Paoletta Silvia, Katritch Vsevolod, Wu Beili, Gao Zhan-Guo, Zhao Qiang, Stevens Raymond C, Kiselev Evgeny

机构信息

Molecular Recognition Section, Laboratory of Bioorganic Chemistry, National Institutes of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland (K.A.J., S.P., Z.-G.G., E.K.); The Bridge Institute, Dana and David Dornsife School of Letters, Arts, and Sciences, University of Southern California, Los Angeles, California (V.K., R.C.S.); and Chinese Academy of Sciences Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, China (B.W., Q.Z.)

Molecular Recognition Section, Laboratory of Bioorganic Chemistry, National Institutes of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland (K.A.J., S.P., Z.-G.G., E.K.); The Bridge Institute, Dana and David Dornsife School of Letters, Arts, and Sciences, University of Southern California, Los Angeles, California (V.K., R.C.S.); and Chinese Academy of Sciences Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, China (B.W., Q.Z.).

出版信息

Mol Pharmacol. 2015 Aug;88(2):220-30. doi: 10.1124/mol.114.095711. Epub 2015 Apr 2.

Abstract

Eight G protein-coupled P2Y receptor (P2YR) subtypes are important physiologic mediators. The human P2YRs are fully activated by ATP (P2Y2 and P2Y11), ADP (P2Y1, P2Y12, and P2Y13), UTP (P2Y2 and P2Y4), UDP (P2Y6 and P2Y14), and UDP glucose (P2Y14). Their structural elucidation is progressing rapidly. The X-ray structures of three ligand complexes of the Gi-coupled P2Y12R and two of the Gq-coupled P2Y1Rs were recently determined and will be especially useful in structure-based ligand design at two P2YR subfamilies. These high-resolution structures, which display unusual binding site features, complement mutagenesis studies for probing ligand recognition and activation. The structural requirements for nucleotide agonist recognition at P2YRs are relatively permissive with respect to the length of the phosphate moiety, but less so with respect to base recognition. Nucleotide-like antagonists and partial agonists are also known for P2Y1, P2Y2, P2Y4, and P2Y12Rs. Each P2YR subtype has the ability to be activated by structurally bifunctional agonists, such as dinucleotides, typically, dinucleoside triphosphates or tetraphosphates, and nucleoside polyphosphate sugars (e.g., UDP glucose) as well as the more conventional mononucleotide agonists. A range of dinucleoside polyphosphates, from triphosphates to higher homologs, occurs naturally. Earlier modeling predictions of the P2YRs were not very accurate, but recent findings have provided much detailed structural insight into this receptor family to aid in the rational design of new drugs.

摘要

八种G蛋白偶联P2Y受体(P2YR)亚型是重要的生理介质。人类P2YRs可被ATP(P2Y2和P2Y11)、ADP(P2Y1、P2Y12和P2Y13)、UTP(P2Y2和P2Y4)、UDP(P2Y6和P2Y14)以及UDP葡萄糖(P2Y14)完全激活。它们的结构解析进展迅速。最近确定了Gi偶联的P2Y12R的三种配体复合物以及Gq偶联的P2Y1R的两种配体复合物的X射线结构,这对于基于结构的两个P2YR亚家族的配体设计将特别有用。这些高分辨率结构显示出不同寻常的结合位点特征,补充了用于探究配体识别和激活的诱变研究。P2YRs对核苷酸激动剂识别的结构要求在磷酸部分长度方面相对宽松,但在碱基识别方面则不然。P2Y1、P2Y2、P2Y4和P2Y12R也有类似核苷酸的拮抗剂和部分激动剂。每种P2YR亚型都有能力被结构上的双功能激动剂激活,例如二核苷酸,通常是二核苷三磷酸或四磷酸,以及核苷多磷酸糖(如UDP葡萄糖)以及更传统的单核苷酸激动剂。一系列从三磷酸到更高同系物的二核苷多磷酸天然存在。早期对P2YRs的建模预测不是很准确,但最近的研究结果为这个受体家族提供了许多详细的结构见解,以帮助合理设计新药。

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