Stibenz Dietger, Gräfe Michael, Debus Nils, Hasbach Michael, Bahr Inke, Graf Kristof, Fleck Eckart, Thanabalasingam Usan, Bührer Christoph
Department of Neonatology, Charité Virchow Hospital, Humboldt University, Berlin, Germany.
Eur J Immunol. 2006 Feb;36(2):446-56. doi: 10.1002/eji.200425360.
Serum concentrations of soluble L-selectin by far exceed those of other soluble adhesion molecules, and serum soluble L-selectin concentrations are remarkably stable upon prolonged storage. We present evidence for Ca(2+)-dependent binding interactions between human serum amyloid P (SAP), a proteolysis-resistant pentraxin glycoprotein, and L-selectin, as shown by surface plasmon resonance measurements, protein band shift assays in a native PAGE system, and after SDS-PAGE and membrane transfer. Monoclonal antibodies to L-selectin strongly reduced binding of biotinylated SAP to L-selectin-IgG chimeras immobilized on microtiter plates. As binding was reduced by prior glycopeptidase F treatment of L-selectin but not of SAP, it appears to be based on SAP lectin domain interactions with N-linked L-selectin carbohydrates. In freshly prepared human lymphocytes, SAP incubation induced expression of a beta2 integrin neoepitope associated with high-affinity binding. This was partially blocked by pre-incubation with Fab fragments of two anti-L-selectin antibodies. In flow chamber experiments, SAP inhibited the adherence of human neutrophils to activated endothelium under shear stress. Thus, SAP binds to human L-selectin and affects L-selectin-dependent leukocyte-endothelial interactions.
血清中可溶性L-选择素的浓度远远超过其他可溶性黏附分子的浓度,并且血清可溶性L-选择素浓度在长时间储存后非常稳定。我们提供证据表明,一种抗蛋白水解的五聚体糖蛋白——人血清淀粉样蛋白P(SAP)与L-选择素之间存在Ca(2+)依赖性结合相互作用,表面等离子体共振测量、天然聚丙烯酰胺凝胶电泳系统中的蛋白带迁移分析以及十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和膜转移后的分析均证实了这一点。针对L-选择素的单克隆抗体强烈降低了生物素化的SAP与固定在微量滴定板上的L-选择素-IgG嵌合体的结合。由于用糖肽酶F预先处理L-选择素可降低结合,但处理SAP则不然,所以这种结合似乎基于SAP凝集素结构域与N-连接的L-选择素碳水化合物之间的相互作用。在新鲜制备的人淋巴细胞中,SAP孵育诱导了与高亲和力结合相关的β2整合素新表位的表达。这被两种抗L-选择素抗体的Fab片段预孵育部分阻断。在流动腔实验中,SAP在剪切应力下抑制了人中性粒细胞与活化内皮细胞的黏附。因此,SAP与人L-选择素结合并影响L-选择素依赖性白细胞-内皮细胞相互作用。