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Agonist-bound structure of the human P2Y12 receptor

机译:人类P2Y12受体的激动剂结合结构

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摘要

The P2Y12 receptor (P2Y12R), one of eight members of the P2YR family expressed in humans, has been identified as one of the most prominent clinical drug targets for inhibition of platelet aggregation. Consequently, extensive mutagenesis and modeling studies of the P2Y12R have revealed many aspects of agonist/antagonist binding-. However, the details of agonist and antagonist recognition and function at the P2Y12R remain poorly understood at the molecular level. Here, we report the structures of the human P2Y12R in complex with a full agonist 2-methylthio-adenosine-5′-diphosphate (2MeSADP, a close analogue of endogenous agonist ADP) at 2.5 Å resolution, and the corresponding ATP derivative 2-methylthio-adenosine-5′-triphosphate (2MeSATP) at 3.1 Å resolution. Analysis of these structures, together with the structure of the P2Y12R with antagonist ethyl 6-(4-((benzylsulfonyl)carbamoyl)piperidin-1-yl)-5-cyano-2-methylnicotinate (AZD1283), reveals dramatic conformational changes between nucleotide and non-nucleotide ligand complexes in the extracellular regions, providing the first insight into a different ligand binding landscape in the δ-group of class A G protein-coupled receptors (GPCRs). Agonist and non-nucleotide antagonist adopt different orientations in the P2Y12R, with only partially overlapped binding pockets. The agonist-bound P2Y12R structure answers long-standing ambiguities surrounding P2Y12R-agonist recognition, and reveals interactions with several residues that had not been reported to be involved in agonist binding. As a first example of a GPCR where agonist access to the binding pocket requires large scale rearrangements in the highly malleable extracellular region, the structural studies therefore will provide invaluable insight into the pharmacology and mechanisms of action of agonists and different classes of antagonists for the P2Y12R and potentially for other closely related P2YRs.
机译:P2Y12受体(P2Y12R)是在人类中表达的P2YR家族的八个成员之一,已被确定为抑制血小板聚集的最重要的临床药物靶标之一。因此,对P2Y12R的广泛诱变和模型研究已经揭示了激动剂/拮抗剂结合的许多方面-。但是,在分子水平上对P2Y12R激动剂和拮抗剂的识别和功能的细节仍然知之甚少。在这里,我们报告了以2.5Å分辨率与完整的激动剂2-甲硫基腺苷5'-二磷酸(2MeSADP,内源性激动剂ADP的紧密类似物)和相应的ATP衍生物2-甲硫醇复合的人P2Y12R的结构。 -腺苷5'-三磷酸(2MeSATP),分辨率为3.1Å。分析这些结构,以及带有拮抗剂乙基6-(4-(((苄基磺酰基)氨基甲酰基)哌啶-1-基)-5-氰基-2-甲基烟酸酯(AZD1283)的P2Y12R的结构 ,揭示了胞外区域核苷酸和非核苷酸配体复合物之间的巨大构象变化,提供了对AG类蛋白偶联受体(GPCR)的δ组中不同配体结合格局的初步了解。激动剂和非核苷酸拮抗剂在P2Y12R中采用不同的方向,只有部分重叠的结合口袋。激动剂结合的P2Y12R结构回答了围绕P2Y12R激动剂识别的长期歧义,并揭示了与尚未报道参与激动剂结合的几个残基的相互作用。作为GPCR的第一个例子,其中激动剂进入结合袋需要在高度延展性的细胞外区域进行大规模重排,因此结构研究将为激动剂和P2Y12R的不同类别拮抗剂的药理学和作用机理提供宝贵的见解以及其他紧密相关的P2YR。

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