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中性粒细胞识别需要Ca(2+)诱导GMP-140凝集素结构域发生构象变化。

Neutrophil recognition requires a Ca(2+)-induced conformational change in the lectin domain of GMP-140.

作者信息

Geng J G, Moore K L, Johnson A E, McEver R P

机构信息

Department of Medicine, University of Oklahoma Health Sciences Center, Oklahoma City 73104.

出版信息

J Biol Chem. 1991 Nov 25;266(33):22313-8.

PMID:1718992
Abstract

GMP-140, a receptor for myeloid cells that is expressed on surfaces of thrombin-activated platelets and endothelial cells, is a member of the selectin family of adhesion molecules that regulate leukocyte interactions with the blood vessel wall. Each selectin contains an N-terminal domain homologous to Ca(2+)-dependent lectins and mediates cell-cell contact by binding to oligosaccharide ligands in a Ca(2+)-dependent manner. The mechanisms by which Ca2+ promotes selectin-dependent cellular interactions have not been defined. We demonstrate that purified GMP-140 contains two high affinity binding sites for Ca2+ as measured by equilibrium dialysis (Kd = 22 +/- 2 microM). Occupancy of these sites by Ca2+ alters the conformation of the protein as detected by a reduction in intrinsic fluorescence emission intensity (Kd = 4.8 +/- 0.2 microM). This Ca(2+)-dependent conformational change exposes an epitope spanning residues 19-34 of the lectin domain that is recognized by a monoclonal antibody capable of blocking neutrophil adhesion to GMP-140 (half-maximal antibody binding at approximately 20 microM Ca2+). Furthermore, a synthetic peptide encoding this epitope, CQNRYTDLVAIQNKNE, inhibits neutrophil binding to GMP-140. Mg2+ also alters the conformation of the protein, but not in a manner that will support leukocyte recognition in the absence of Ca2+. There is a strong correlation between the Ca2+ levels required for neutrophil adhesion to GMP-140, for occupancy of the two Ca(2+)-binding sites, for the fluorescence-detected conformational change, and for exposure of the antibody epitope in the lectin domain. We conclude that binding of Ca2+ to high affinity sites on GMP-140 modulates the conformation of the lectin domain in a manner that is essential for leukocyte recognition.

摘要

GMP - 140是一种髓样细胞受体,表达于凝血酶激活的血小板和内皮细胞表面,是调节白细胞与血管壁相互作用的选择素家族黏附分子的成员。每个选择素都含有一个与钙依赖性凝集素同源的N端结构域,并通过以钙依赖性方式结合寡糖配体来介导细胞间接触。钙离子促进选择素依赖性细胞相互作用的机制尚未明确。我们通过平衡透析法测定发现,纯化的GMP - 140含有两个高亲和力的钙离子结合位点(解离常数Kd = 22 ± 2微摩尔)。钙离子占据这些位点会改变蛋白质的构象,这可通过内在荧光发射强度的降低检测到(Kd = 4.8 ± 0.2微摩尔)。这种钙依赖性构象变化会暴露出凝集素结构域中19 - 34位残基的一个表位,该表位可被一种能阻断中性粒细胞与GMP - 140黏附的单克隆抗体识别(在约20微摩尔钙离子浓度下抗体结合达到半数最大)。此外,编码该表位的合成肽CQNRYTDLVAIQNKNE可抑制中性粒细胞与GMP - 140的结合。镁离子也会改变蛋白质的构象,但在没有钙离子的情况下,其方式无法支持白细胞识别。中性粒细胞黏附于GMP - 140所需的钙离子水平、两个钙离子结合位点的占据情况、荧光检测到的构象变化以及凝集素结构域中抗体表位的暴露之间存在很强的相关性。我们得出结论,钙离子与GMP - 140上高亲和力位点的结合以一种对白细胞识别至关重要的方式调节凝集素结构域的构象。

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