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人多形核白细胞补体C5a受体的强效环状拮抗剂。结构与活性之间的关系。

Potent cyclic antagonists of the complement C5a receptor on human polymorphonuclear leukocytes. Relationships between structures and activity.

作者信息

March Darren R, Proctor Lavinia M, Stoermer Martin J, Sbaglia Robert, Abbenante Giovanni, Reid Robert C, Woodruff Trent M, Wadi Khemar, Paczkowski Natalii, Tyndall Joel D A, Taylor Stephen M, Fairlie David P

机构信息

Institute for Molecular Bioscience, University of Queensland, Brisbane, Queensland, Australia.

出版信息

Mol Pharmacol. 2004 Apr;65(4):868-79. doi: 10.1124/mol.65.4.868.

Abstract

Human C5a is a plasma protein with potent chemoattractant and pro-inflammatory properties, and its overexpression correlates with severity of inflammatory diseases. C5a binds to its G protein-coupled receptor (C5aR) on polymorphonuclear leukocytes (PMNLs) through a high-affinity helical bundle and a low-affinity C terminus, the latter being solely responsible for receptor activation. Potent and selective C5a antagonists are predicted to be effective anti-inflammatory drugs, but no pharmacophore for small molecule antagonists has yet been developed, and it would significantly aid drug design. We have hypothesized that a turn conformation is important for activity of the C terminus of C5a and herein report small cyclic peptides that are stable turn mimics with potent antagonism at C5aR on human PMNLs. A comparison of solution structures for the C terminus of C5a, small acyclic peptide ligands, and cyclic antagonists supports the importance of a turn for receptor binding. Competition between a cyclic antagonist and either C5a or an acyclic agonist for C5aR on PMNLs supports a common or overlapping binding site on the C5aR. Structure-activity relationships for 60 cyclic analogs were evaluated by competitive radioligand binding with C5a (affinity) and myeloperoxidase release (antagonist potency) from human PMNLs, with 20 compounds having high antagonist potencies (IC(50), 20 nM-1 microM). Computer modeling comparisons reveal that potent antagonists share a common cyclic backbone shape, with affinity-determining side chains of defined volume projecting from the cyclic scaffold. These results define a new pharmacophore for C5a antagonist development and advance our understanding of ligand recognition and receptor activation of this G protein-coupled receptor.

摘要

人C5a是一种具有强大趋化性和促炎特性的血浆蛋白,其过表达与炎症性疾病的严重程度相关。C5a通过高亲和力螺旋束和低亲和力C末端与多形核白细胞(PMNLs)上的G蛋白偶联受体(C5aR)结合,后者单独负责受体激活。强效和选择性C5a拮抗剂预计将成为有效的抗炎药物,但尚未开发出小分子拮抗剂的药效团,而这将极大地有助于药物设计。我们推测一种转角构象对C5a的C末端活性很重要,并且在此报告了稳定的转角模拟物小环肽,它们在人PMNLs的C5aR上具有强效拮抗作用。对C5a的C末端、小的无环肽配体和环拮抗剂的溶液结构进行比较,支持了转角对受体结合的重要性。环拮抗剂与C5a或无环激动剂在PMNLs上对C5aR的竞争支持了C5aR上存在一个共同或重叠的结合位点。通过与C5a的竞争性放射性配体结合(亲和力)以及人PMNLs中髓过氧化物酶释放(拮抗剂效力),评估了60种环类似物的构效关系,其中20种化合物具有高拮抗剂效力(IC(50),20 nM - 1 microM)。计算机建模比较表明,强效拮抗剂具有共同的环骨架形状,具有确定体积的亲和力决定侧链从环支架伸出。这些结果定义了一种用于C5a拮抗剂开发的新药效团,并推进了我们对这种G蛋白偶联受体的配体识别和受体激活的理解。

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