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孤儿受体C5L2对补体片段C5a和C5a去精氨酸(74)具有高亲和力结合位点。

The orphan receptor C5L2 has high affinity binding sites for complement fragments C5a and C5a des-Arg(74).

作者信息

Cain Stuart A, Monk Peter N

机构信息

Department of Neurology, University of Sheffield Medical School, Beech Hill Road, Sheffield, S10 2RX, United Kingdom.

出版信息

J Biol Chem. 2002 Mar 1;277(9):7165-9. doi: 10.1074/jbc.C100714200. Epub 2001 Dec 31.

Abstract

The substantial variations in the responses of cells to the anaphylatoxin C5a and its desarginated form, C5adR(74), suggest that more than one type of cell surface receptor for these ligands might exist. However, only a single receptor for C5a and C5adR(74), CD88, has been characterized to date. Here we report that the orphan receptor C5L2/gpr77, which shares 35% amino acid identity with CD88, binds C5a with high affinity but has a 10-fold higher affinity for C5adR(74) than CD88. C5L2 also has a moderate affinity for anaphylatoxin C3a, but cross-competition studies suggest that C3a binds to a distinct site from C5a. C4a was able to displace C3a, suggesting that C5L2, like the C3a receptor, may have a low binding affinity for this anaphylatoxin. Unlike CD88 and C3a receptor, C5L2 transfected into RBL-2H3 cells does not support degranulation or increases in intracellular [Ca(2+)] and is not rapidly internalized in response to ligand binding. However, ligation of C5L2 by anaphylatoxin did potentiate the degranulation response to cross-linkage of the high affinity IgE receptor by a pertussis toxin-sensitive mechanism. These results suggest that C5L2 is an anaphylatoxin-binding protein with unique ligand binding and signaling properties.

摘要

细胞对过敏毒素C5a及其去精氨酸形式C5adR(74)的反应存在显著差异,这表明可能存在不止一种类型的这些配体的细胞表面受体。然而,迄今为止,仅鉴定出一种C5a和C5adR(74)的受体,即CD88。在此我们报告,与CD88具有35%氨基酸同一性的孤儿受体C5L2/gpr77以高亲和力结合C5a,但对C5adR(74)的亲和力比对CD88高10倍。C5L2对过敏毒素C3a也具有中等亲和力,但交叉竞争研究表明,C3a与C5a结合于不同位点。C4a能够取代C3a,这表明C5L2与C3a受体一样,可能对这种过敏毒素具有低结合亲和力。与CD88和C3a受体不同,转染到RBL-2H3细胞中的C5L2不支持脱颗粒或细胞内[Ca(2+)]增加,并且在配体结合后不会迅速内化。然而,过敏毒素对C5L2的连接通过百日咳毒素敏感机制增强了对高亲和力IgE受体交联的脱颗粒反应。这些结果表明,C5L2是一种具有独特配体结合和信号特性的过敏毒素结合蛋白。

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