Toppila S, Lauronen J, Mattila P, Turunen J P, Penttilä L, Paavonen T, Renkonen O, Renkonen R
Haartman Institute, Department of Bacteriology and Immunology, University of Helsinki, Finland.
Eur J Immunol. 1997 Jun;27(6):1360-5. doi: 10.1002/eji.1830270610.
Lymphocyte homing is initiated by their tethering to and rolling on the high endothelium and is followed by extravasation into the lymph nodes. We show here that glycosylated cell adhesion molecule-1 (GlyCAM-1), CD34, and sialyl Lewis x (sLex) are present on rat lymph node high endothelium analyzed by using monoclonal antibodies. alpha (1,3)fucosyltransferase VII (Fuc-TVII), the last enzyme involved in the synthesis of the sLex sequence is also expressed on the rat lymph node high endothelium. We have synthesized a family of sLex-decorated oligosaccharide structures and used them to inhibit lymphocyte binding to high endothelium in the Stamper-Woodruff assay. Monovalent sLex, branched di- and tetravalent sLex, as well as a linear tetravalent sLex significantly reduce lymphocyte binding to endothelium. The branched and linear forms of tetravalent sLex were clearly superior inhibitors of the L-selectin-dependent lymphocyte adhesion, with IC50 values in low nanomolar range. In contrast, the fucose-free analogs having the same charge and approximately the same size as the corresponding sLex glycans had no effect on lymphocyte binding and served as negative controls. Taken together, these data show the crucial importance of sLex in the endothelial ligands for L-selectin. Furthermore, we suggest that L-selectin acts as an oligomer on the lymphocyte surface as it binds multivalent sLex glycans.
淋巴细胞归巢始于它们与高内皮细胞的栓系和滚动,随后渗入淋巴结。我们在此表明,通过使用单克隆抗体分析,糖基化细胞粘附分子-1(GlyCAM-1)、CD34和唾液酸化路易斯x(sLex)存在于大鼠淋巴结高内皮细胞上。α(1,3)岩藻糖基转移酶VII(Fuc-TVII)是参与sLex序列合成的最后一种酶,也在大鼠淋巴结高内皮细胞上表达。我们合成了一系列装饰有sLex的寡糖结构,并在斯坦珀-伍德拉夫试验中用它们来抑制淋巴细胞与高内皮细胞的结合。单价sLex、分支二价和四价sLex以及线性四价sLex显著降低淋巴细胞与内皮细胞的结合。四价sLex的分支和线性形式是L-选择素依赖性淋巴细胞粘附的明显更好的抑制剂,IC50值在低纳摩尔范围内。相比之下,与相应的sLex聚糖具有相同电荷和大致相同大小的无岩藻糖类似物对淋巴细胞结合没有影响,并用作阴性对照。综上所述,这些数据表明sLex在内皮细胞配体中对L-选择素至关重要。此外,我们认为L-选择素在淋巴细胞表面作为寡聚体起作用,因为它结合多价sLex聚糖。