Smith P L, Gersten K M, Petryniak B, Kelly R J, Rogers C, Natsuka Y, Alford J A, Scheidegger E P, Natsuka S, Lowe J B
Howard Hughes Medical Institute, University of Michigan, Ann Arbor, 48109-0650, USA.
J Biol Chem. 1996 Apr 5;271(14):8250-9. doi: 10.1074/jbc.271.14.8250.
Lymphocyte homing to lymph nodes and Peyer's patches is mediated, in part, by adhesive interactions between L-selectin expressed by lymphocytes and L-selectin ligands displayed at the surface of the cuboidal endothelial cells lining the post-capillary venules within lymphoid aggregates. Candidate terminal oligosaccharide structures thought to be essential for effective L-selectin ligand activity include a sulfated derivative of the sialyl Lewis x tetrasaccharide. Cell type-specific synthesis of this oligosaccharide is presumed to require one or more alpha(1,3)fucosyltransferases, operating upon common 3'-sialylated and/or sulfated N-acetyllactosamine-type precursors. The identity of the alpha(1,3)fucosyltransferase(s) expressed in cells that bear L-selectin ligands has not been defined. We report here the molecular cloning and characterization of a murine alpha(1,3)fucosyltransferase locus whose expression pattern correlates with expression of high affinity ligands for L-selectin. In situ hybridization and immunohistochemical analyses demonstrate that this cDNA and its cognate alpha(1,3)fucosyltransferase are expressed in endothelial cells lining the high endothelial venules of peripheral lymph nodes, mesenteric lymph nodes, and Peyer's patches. These expression patterns correlate precisely with the expression pattern of L-selectin ligands identified with a chimeric L-selectin/IgM immunohistochemical probe and by the high endothelial venule-reactive monoclonal antibody MECA-79. Transcripts corresponding to this cDNA are also detected in isolated bone marrow cells, a source rich in the surface-localized ligands for E- and P-selectins. Sequence and functional analyses indicate that this murine enzyme corresponds to the human Fuc-TVII locus. These observations suggest that Fuc-TVII participates in the generation of alpha(1,3)fucosylated ligands for L-selectin and provide further evidence for a role for this enzyme in E- and P-selectin ligand expression in leukocytes.
淋巴细胞归巢至淋巴结和派尔集合淋巴结,部分是由淋巴细胞表达的L-选择素与淋巴样聚集区内毛细血管后微静脉内衬的立方形内皮细胞表面展示的L-选择素配体之间的黏附相互作用介导的。被认为对有效的L-选择素配体活性至关重要的候选末端寡糖结构包括唾液酸化路易斯x四糖的硫酸化衍生物。推测这种寡糖的细胞类型特异性合成需要一种或多种α(1,3)岩藻糖基转移酶,作用于常见的3'-唾液酸化和/或硫酸化的N-乙酰乳糖胺型前体。在带有L-选择素配体的细胞中表达的α(1,3)岩藻糖基转移酶的身份尚未确定。我们在此报告一个小鼠α(1,3)岩藻糖基转移酶基因座的分子克隆和特性分析,其表达模式与L-选择素高亲和力配体的表达相关。原位杂交和免疫组织化学分析表明,该cDNA及其同源α(1,3)岩藻糖基转移酶在外周淋巴结、肠系膜淋巴结和派尔集合淋巴结的高内皮微静脉内衬的内皮细胞中表达。这些表达模式与用嵌合L-选择素/IgM免疫组织化学探针和高内皮微静脉反应性单克隆抗体MECA-79鉴定的L-选择素配体的表达模式精确相关。在分离的骨髓细胞中也检测到与该cDNA对应的转录本,骨髓细胞是富含E-选择素和P-选择素表面定位配体的来源。序列和功能分析表明,这种小鼠酶对应于人类Fuc-TVII基因座。这些观察结果表明,Fuc-TVII参与L-选择素的α(1,3)岩藻糖基化配体的生成,并为该酶在白细胞E-选择素和P-选择素配体表达中的作用提供了进一步的证据。