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血管加压素V2受体/拮抗剂相互作用的分子模拟

Molecular modelling of the vasopressin V2 receptor/antagonist interactions.

作者信息

Czaplewski C, Kaźmierkiewicz R, Ciarkowski J

机构信息

Faculty of Chemistry, University of Gdańsk, Poland.

出版信息

Acta Biochim Pol. 1998;45(1):19-26.

PMID:9701492
Abstract

We predict some essential interactions between the V2 vasopressin renal receptor (V2R) and its selective peptide antagonist desGly9-[Mca1,D-Ile2,Ile4]AVP, and compare these predictions with the earlier ones for the non-peptide OPC-36120 antagonist- and the [Arg8]vasopressin (AVP) agonist-V2 receptor interactions. V2R controls antidiuresis in mammals and belongs to the superfamily of the heptahelical transmembrane (7TM) G protein-coupled receptors (GPCR)s. V2R was built, the ligands docked and the structures relaxed using advanced molecular modeling techniques. Both the agonist and the antagonists (no matter whether of peptide- or non-peptide type) appear to prefer a common V2R compartment for docking. The receptor amino-acid residues, potentially important in ligand binding, are mainly in the TM3-TM7 helices. A few of these residues are invariant for the whole GPCR superfamily while most of them are conserved in the subfamily of neurohypophyseal receptors, to which V2R belongs. Some of the equivalent residues in a related V1a receptor have been earlier reported as critical for the ligand affinity.

摘要

我们预测了V2血管加压素肾受体(V2R)与其选择性肽拮抗剂去甘氨酸9 - [Mca1,D - Ile2,Ile4]精氨酸加压素(AVP)之间的一些重要相互作用,并将这些预测结果与之前关于非肽OPC - 36120拮抗剂和[Arg8]血管加压素(AVP)激动剂与V2受体相互作用的预测结果进行比较。V2R控制哺乳动物的抗利尿作用,属于七螺旋跨膜(7TM)G蛋白偶联受体(GPCR)超家族。利用先进的分子建模技术构建了V2R,对接了配体并优化了结构。激动剂和拮抗剂(无论是肽类还是非肽类)似乎都倾向于在一个共同的V2R区域进行对接。在配体结合中可能起重要作用的受体氨基酸残基主要位于TM3 - TM7螺旋中。其中一些残基在整个GPCR超家族中是不变的,而大多数在V2R所属的神经垂体受体亚家族中是保守的。之前有报道称,相关V1a受体中的一些等效残基对配体亲和力至关重要。

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