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哺乳动物趋化因子的达菲抗原/受体的序列、进化及配体结合特性

Sequence, evolution and ligand binding properties of mammalian Duffy antigen/receptor for chemokines.

作者信息

Tournamille Christophe, Blancher Antoine, Le Van Kim Caroline, Gane Pierre, Apoil Pol André, Nakamoto Wilson, Cartron Jean Pierre, Colin Yves

机构信息

INSERM U76, Institut National de la Transfusion Sanguine, 6 rue Alexandre Cabanel, 75015, Paris, France.

出版信息

Immunogenetics. 2004 Jan;55(10):682-94. doi: 10.1007/s00251-003-0633-2. Epub 2004 Jan 8.

Abstract

The Duffy antigen/ receptor for chemokine, DARC, acts as a widely expressed promiscuous chemokine receptor and as the erythrocyte receptor for Plasmodium vivax. To gain insight into the evolution and structure/function relations of DARC, we analyzed the binding of anti-human Fy monoclonal antibodies (mAbs) and human chemokines to red blood cells (RBCs) from 11 nonhuman primates and two nonprimate mammals, and we elucidated the structures of the DARC genes from gorilla, gibbon, baboon, marmoset, tamarin, night monkey and cattle. CXCL-8 and CCL-5 chemokine binding analysis indicated that the promiscuous binding profile characteristic of DARC is conserved across species. Among three mAbs that detected the Fy6 epitope by flow cytometric analysis of human and chimpanzee RBCs, only one reacted with night monkey and squirrel monkey. Only chimpanzee RBCs bound a significant amount of the anti-Fy3 mAb. Fy3 was also poorly detected on RBCs from gorilla, baboon and rhesus monkey, but not from new world monkeys. Alignment of DARC homologous sequences allowed us to construct a phylogenetic tree in which all branchings were in accordance with current knowledge of primate phylogeny. Although DARC was expected to be under strong internal and external selection pressure, in order to maintain chemokine binding and avoid Plasmodium vivax binding, respectively, our present study did not provide arguments in favor of a selection pressure on the extracellular domains involved in ligand specificity. The amino acid variability of DARC-like polypeptides was found to be well correlated with the hydrophilicity indexes, with the highest divergence on the amino-terminal extracellular domain. Analysis of the deduced amino acid sequences highlighted the conservation of some amino acid residues, which should prove to be critical for the structural and functional properties of DARC.

摘要

达菲抗原/趋化因子受体(DARC)作为一种广泛表达的多特异性趋化因子受体,同时也是间日疟原虫的红细胞受体。为深入了解DARC的进化及其结构/功能关系,我们分析了抗人Fy单克隆抗体(mAb)和人趋化因子与11种非人类灵长类动物及两种非灵长类哺乳动物的红细胞(RBC)的结合情况,并阐明了大猩猩、长臂猿、狒狒、狨猴、绢毛猴、夜猴和牛的DARC基因结构。CXCL - 8和CCL - 5趋化因子结合分析表明,DARC的多特异性结合特征在物种间具有保守性。在通过流式细胞术分析人和黑猩猩红细胞检测到Fy6表位的三种mAb中,只有一种与夜猴和松鼠猴发生反应。只有黑猩猩的红细胞能结合大量的抗Fy3 mAb。在大猩猩、狒狒和恒河猴的红细胞上也很难检测到Fy3,但在新大陆猴的红细胞上未检测到。DARC同源序列的比对使我们能够构建一个系统发育树,其中所有分支均与当前灵长类系统发育知识一致。尽管预计DARC会分别受到强烈的内部和外部选择压力,以维持趋化因子结合并避免间日疟原虫结合,但我们目前的研究并未提供支持对参与配体特异性的细胞外结构域存在选择压力的证据。发现DARC样多肽的氨基酸变异性与亲水性指数高度相关,在氨基末端细胞外结构域的差异最大。对推导的氨基酸序列的分析突出了一些氨基酸残基的保守性,这些残基对于DARC的结构和功能特性至关重要。

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