Bogoevska Valentina, Horst Andrea, Klampe Birgit, Lucka Lothar, Wagener Christoph, Nollau Peter
Institute of Clinical Chemistry, University Clinic Hamburg-Eppendorf, Martinistr, 52, 20251 Hamburg, Germany.
Glycobiology. 2006 Mar;16(3):197-209. doi: 10.1093/glycob/cwj057. Epub 2005 Nov 10.
The CEA-related cell adhesion molecule 1, CEACAM1, is a glycoprotein expressed on the surface of human granulocytes and lymphocytes, endothelia, and many epithelia. CEACAM1 is involved in the regulation of important biological processes, such as tumor growth, angiogenesis, and modulation of the immune response. CEACAM1, a member of the immunoglobulin superfamily carries several Lewis x (Lex) structures as we recently demonstrated by mass spectrometry of native CEACAM1 from human granulocytes. Since Lex residues of pathogens bind to the C-type lectin dendritic cell-specific ICAM-3 grabbing nonintegrin (DC-SIGN) expressed on human DCs, we hypothesized that Lex glycans of CEACAM1 are recognized by DC-SIGN. Here, we demonstrate that CEACAM1, the major carrier of Lex residues in human granulocytes, is specifically recognized by DC-SIGN via Lex residues mediating the internalization of CEACAM1 into immature DCs. Expression studies with CEACAM1 in combination with different fucosyltransferases (FUTs) revealed that FUTIX plays a key role in the synthesis of Lex groups of CEACAM1. As Lex groups on CEACAM1 are selectively attached and specifically interact with DC-SIGN, our findings suggest that CEACAM1 participates in immune regulation in physiological conditions and in pathological conditions, such as inflammation, autoimmune disease, and cancer.
癌胚抗原相关细胞黏附分子1(CEACAM1)是一种糖蛋白,表达于人类粒细胞、淋巴细胞、内皮细胞及许多上皮细胞表面。CEACAM1参与重要生物学过程的调控,如肿瘤生长、血管生成及免疫反应调节。免疫球蛋白超家族成员CEACAM1带有多个Lewis x(Lex)结构,这是我们最近通过对人粒细胞天然CEACAM1进行质谱分析所证实的。由于病原体的Lex残基可与人树突状细胞(DC)表面表达的C型凝集素树突状细胞特异性细胞间黏附分子3抓取非整合素(DC-SIGN)结合,我们推测CEACAM1的Lex聚糖可被DC-SIGN识别。在此,我们证明,作为人粒细胞中Lex残基的主要载体,CEACAM1可通过Lex残基被DC-SIGN特异性识别,介导CEACAM1内化进入未成熟DC。对CEACAM1与不同岩藻糖基转移酶(FUT)进行的表达研究表明,FUTIX在CEACAM1的Lex基团合成中起关键作用。由于CEACAM1上的Lex基团是选择性附着且能与DC-SIGN特异性相互作用,我们的研究结果提示,CEACAM1在生理条件及病理条件下(如炎症、自身免疫性疾病和癌症)均参与免疫调节。