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趋化因子的达菲抗原受体:结构分析及在脑中的表达

The Duffy antigen receptor for chemokines: structural analysis and expression in the brain.

作者信息

Horuk R, Martin A, Hesselgesser J, Hadley T, Lu Z H, Wang Z X, Peiper S C

机构信息

Department of Immunology, Berlex Biosciences, Richmond, California 94804, USA.

出版信息

J Leukoc Biol. 1996 Jan;59(1):29-38. doi: 10.1002/jlb.59.1.29.

Abstract

The Duffy antigen receptor for chemokines (DARC) is expressed in human erythrocytes and on endothelial cells lining postcapillary venules in kidney and spleen. DARC is a promiscuous chemokine receptor and a binding protein for the malarial parasite Plasmodium vivax. The expression of DARC by subsets of endothelial cells and neurons in discrete anatomic sites in the brain suggests that this enigmatic receptor may have multiple roles in normal and pathological physiology. Conservation of this promiscuous chemokine binding function is evident from the similarity in nucleotide sequence of DARC homologues from multiple species, as well as the high-affinity binding of human chemokines to murine and avian erythrocytes. Analysis of the functional domains of DARC using chimeric receptors and and monoclonal antibodies to multiple extracellular domains localized chemokine binding to structures in the amino terminal extracellular domain (E1). Scatchard analysis demonstrated that a chimeric DARC receptor, composed of the E1 domain of DARC and the predicted hydrophobic helices and loops of interleukin-8RB (IL-8RB), bound IL-8, and MGSA with KD values almost identical to the wild type receptors and bound a repertoire of C-X-C and C-C chemokines characteristic of DARC. Although numerous reports have demonstrated that chemokines such as IL-8 are expressed in the brain, presumably by glial cells, little insight into the nature of their role in normal or pathological physiology in the nervous system has developed because the target cells that express the corresponding receptors have not yet been identified. Northern blotting experiments suggest that mRNA encoding DARC are expressed in the central nervous system, however, interpretation of this is unclear because of the ubiquitous expression of DARC lining postcapillary venules. This study provides direct evidence to localize expression of DARC in the central nervous system. Immunohistochemical examination of human archival sections of the brain with monoclonal antibodies specific for DARC localize expression of DARC to cell bodies and processes of Purkinjie cells in the cerebellum. The immunohistochemical findings were supported by analysis of chemokine binding and radioligand crosslinking with membranes made from various brain fractions. The hierarchical expression of DARC in neurons in the cerebellum suggest that chemokines may play an important role in the modulation of neuronal activity by glial cells.

摘要

趋化因子的达菲抗原受体(DARC)在人类红细胞以及肾脏和脾脏中毛细血管后微静脉的内皮细胞上表达。DARC是一种杂乱的趋化因子受体,也是疟原虫间日疟原虫的结合蛋白。大脑中离散解剖部位的内皮细胞和神经元亚群对DARC的表达表明,这种神秘的受体可能在正常和病理生理学中具有多种作用。从多个物种的DARC同源物的核苷酸序列相似性,以及人类趋化因子与小鼠和禽类红细胞的高亲和力结合,可以明显看出这种杂乱的趋化因子结合功能的保守性。使用嵌合受体和针对多个细胞外结构域的单克隆抗体对DARC的功能结构域进行分析,将趋化因子结合定位到氨基末端细胞外结构域(E1)中的结构。Scatchard分析表明,由DARC的E1结构域以及白细胞介素8RB(IL-8RB)的预测疏水螺旋和环组成的嵌合DARC受体与IL-8和MGSA结合,其KD值几乎与野生型受体相同,并结合了一系列DARC特有的C-X-C和C-C趋化因子。尽管许多报告表明诸如IL-8之类的趋化因子在大脑中表达,推测是由神经胶质细胞表达的,但由于尚未鉴定出表达相应受体的靶细胞,因此对其在神经系统正常或病理生理学中的作用性质了解甚少。Northern印迹实验表明,编码DARC的mRNA在中枢神经系统中表达,然而,由于毛细血管后微静脉内衬的DARC普遍表达,对此的解释尚不清楚。这项研究提供了直接证据来定位DARC在中枢神经系统中的表达。用对DARC特异的单克隆抗体对人脑存档切片进行免疫组织化学检查,将DARC的表达定位到小脑中浦肯野细胞的细胞体和突起。趋化因子结合分析以及与由各种脑部分制成的膜进行放射性配体交联分析支持了免疫组织化学结果。DARC在小脑中神经元中的分级表达表明,趋化因子可能在神经胶质细胞对神经元活动的调节中起重要作用。

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