Levander L, Gunnarsson P, Grenegård M, Rydén I, Påhlsson P
Department of Experimental and Clinical Medicine, Linköping University, Linköping, Sweden.
Scand J Immunol. 2009 May;69(5):412-20. doi: 10.1111/j.1365-3083.2009.02240.x. Epub 2009 Feb 26.
We recently showed that the acute-phase protein alpha(1)-acid glycoprotein (AGP) induces rises in cytosolic calcium concentration, Ca(2+) in neutrophils through sialic acid dependent interactions with the neutrophil receptors siglec-5 and/or siglec-14. Whereas both siglec-5 and siglec-14 have a relatively broad specificity for sialylated oligosaccharide structures, including both structures with terminal alpha2-3 or alpha2-6 linked sialic acid, there is a markedly reduced affinity to the fucosylated epitope sialyl Lewis x (SLe(x)). Increased fucosylation, leading to increased expression of SLe(x) on AGP is commonly associated with inflammatory conditions. In the present study, we investigated whether an increased SLe(x) expression would affect the Ca(2+)-mobilizing effect of AGP. AGP with elevated fucose content isolated from patients with untreated chronic joint inflammation showed a decreased Ca(2+) modulatory effect on neutrophils compared to normally fucosylated AGP. Furthermore a hyperfucosylated AGP form produced by in vitro fucosylation, that consequently had an elevated expression of SLe(x), could not elicit a Ca(2+) increase in neutrophils. The role of the carbohydrate portion of AGP in modulating neutrophil responses was further strengthened by showing that synthetic glycoconjugates carrying oligosaccharides with terminal alpha2-3 or alpha2-6 linked sialic acid were able to mimic the Ca(2+)-mobilizing effect of AGP whereas a synthetic glycoconjugate carrying SLe(x) was not. Based on these data, we conclude that increased fucosylation can alter the ability of AGP to induce neutrophil signalling and further supports an important role of the oligosaccharide chains of AGP in the modulation of leukocyte functions during an inflammatory process.
我们最近发现,急性期蛋白α(1)-酸性糖蛋白(AGP)通过与中性粒细胞受体唾液酸结合免疫球蛋白样凝集素-5(siglec-5)和/或唾液酸结合免疫球蛋白样凝集素-14(siglec-14)的唾液酸依赖性相互作用,诱导中性粒细胞胞质钙浓度[Ca(2+)]i升高。虽然siglec-5和siglec-14对唾液酸化寡糖结构都具有相对广泛的特异性,包括具有末端α2-3或α2-6连接唾液酸的结构,但对岩藻糖基化表位唾液酸路易斯x(SLe(x))的亲和力明显降低。岩藻糖基化增加导致AGP上SLe(x)表达增加,这通常与炎症状态相关。在本研究中,我们调查了SLe(x)表达增加是否会影响AGP的钙动员作用。与正常岩藻糖基化的AGP相比,从未经治疗的慢性关节炎症患者中分离出的岩藻糖含量升高的AGP对中性粒细胞的[Ca(2+)]i调节作用降低。此外,通过体外岩藻糖基化产生的超岩藻糖基化AGP形式,其SLe(x)表达升高,不能引起中性粒细胞[Ca(2+)]i增加。通过显示携带末端α2-3或α2-6连接唾液酸的寡糖的合成糖缀合物能够模拟AGP的钙动员作用,而携带SLe(x)的合成糖缀合物则不能,进一步加强了AGP碳水化合物部分在调节中性粒细胞反应中的作用。基于这些数据,我们得出结论,岩藻糖基化增加可改变AGP诱导中性粒细胞信号传导的能力,并进一步支持AGP寡糖链在炎症过程中调节白细胞功能的重要作用。