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通过计算建模和突变分析推导的人类P2Y11核苷酸受体的结构和配体结合位点特征

Structure and ligand-binding site characteristics of the human P2Y11 nucleotide receptor deduced from computational modelling and mutational analysis.

作者信息

Zylberg Jacques, Ecke Denise, Fischer Bilha, Reiser Georg

机构信息

Gonda-Goldschmied Medical Research Center, Department of Chemistry, Bar-Ilan University, Ramat-Gan 52900, Israel.

出版信息

Biochem J. 2007 Jul 15;405(2):277-86. doi: 10.1042/BJ20061728.

Abstract

The P2Y11-R (P2Y11 receptor) is a less explored drug target. We computed an hP2Y11-R (human P2Y11) homology model with two templates, bovine-rhodopsin (2.6 A resolution; 1 A=0.1 nm) and a hP2Y1-ATP complex model. The hP2Y11-R model was refined using molecular dynamics calculations and validated by virtual screening methods, with an enrichment factor of 5. Furthermore, mutational analyses of Arg106, Glu186, Arg268, Arg307 and Ala313 confirmed the adequacy of our hP2Y11-R model and the computed ligand recognition mode. The E186A and R268A mutants reduced the potency of ATP by one and three orders of magnitude respectively. The R106A and R307A mutants were functionally inactive. We propose that residues Arg106, Arg268, Arg307 and Glu186 are involved in ionic interactions with the phosphate moiety of ATP. Arg307 is possibly also H-bonded to N6 of ATP via the backbone carbonyl. Activity of ATP at the F109I mutant revealed that the proposed p-stacking of Phe109 with the adenine ring is a minor interaction. The mutation A313N, which is part of a hydrophobic pocket in the vicinity of the ATP C-2 position, partially explains the high activity of 2-MeS-ATP at P2Y1-R as compared with the negligible activity at the P2Y11-R. Inactivity of ATP at the Y261A mutant implies that Tyr261 acts as a molecular switch, as in other G-protein-coupled receptors. Moreover, analysis of cAMP responses seen with the mutants showed that the efficacy of coupling of the P2Y11-R with Gs is more variable than coupling with Gq. Our model also indicates that Ser206 forms an H-bond with Pgamma (the gamma-phosphate of the triphosphate chain of ATP) and Met310 interacts with the adenine moiety.

摘要

P2Y11受体(P2Y11 -R)是一个研究较少的药物靶点。我们利用两个模板构建了人P2Y11受体(hP2Y11 -R)的同源模型,这两个模板分别是牛视紫红质(分辨率为2.6埃;1埃 = 0.1纳米)和人P2Y1 -ATP复合物模型。hP2Y11 -R模型通过分子动力学计算进行了优化,并采用虚拟筛选方法进行了验证,富集因子为5。此外,对精氨酸106(Arg106)、谷氨酸186(Glu186)、精氨酸268(Arg268)、精氨酸307(Arg307)和丙氨酸313(Ala313)的突变分析证实了我们构建的hP2Y11 -R模型以及计算得到的配体识别模式的合理性。E186A和R268A突变体分别使ATP效力降低了一个和三个数量级。R106A和R307A突变体在功能上无活性。我们推测,精氨酸106、精氨酸268、精氨酸307和谷氨酸186参与了与ATP磷酸基团的离子相互作用。精氨酸307可能还通过主链羰基与ATP的N6形成氢键。F109I突变体处ATP的活性表明,所推测的苯丙氨酸109(Phe109)与腺嘌呤环的π-堆积是一种次要相互作用。A313N突变位于ATP C -2位置附近的一个疏水口袋中,这部分解释了2 -甲硫基ATP(2 -MeS -ATP)在P2Y1受体处具有高活性,而在P2Y11受体处活性可忽略不计的原因。Y261A突变体处ATP无活性意味着酪氨酸261(Tyr261)如同其他G蛋白偶联受体一样,起到分子开关的作用。此外,对突变体的环磷酸腺苷(cAMP)反应分析表明,P2Y11 -R与Gs的偶联效率比与Gq的偶联更具变异性。我们的模型还表明,丝氨酸206(Ser206)与Pγ(ATP三磷酸链的γ-磷酸)形成氢键,甲硫氨酸310(Met310)与腺嘌呤部分相互作用。

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