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L-Selectin Ligands That Are O-glycoprotease Resistant and Distinct from MECA-79 Antigen are Sufficient for Tethering and Rolling of Lymphocytes on Human High Endothelial Venules

机译:抵抗O-糖基蛋白酶且与MECA-79抗原不同的L-选择素配体足以在人高内皮小静脉上束缚和滚动淋巴细胞

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摘要

During the process of lymphocyte recirculation, lymphocytes bind via L-selectin to sulfated sialyl-Lewisx (sLex)–containing carbohydrate ligands expressed on the surface of high endothelial venules (HEV). We have examined the expression of sLex on HEV using a panel of mAbs specific for sLex and sLex-related structures, and have examined the function of different sLex-bearing structures using an in vitro assay of lymphocyte rolling on HEV. We report that three sLex mAbs, 2F3, 2H5, and CSLEX-1, previously noted to bind with high affinity to glycolipid-linked sLex, vary in their ability to stain HEV in different lymphoid tissues and bind differentially to O-linked versus N-linked sLex on glycoproteins. Treatment of tissue sections with neuraminidase abolished staining with all three mAbs but slightly increased staining with MECA-79, a mAb to a sulfation-dependent HEV-associated carbohydrate determinant. Treatment of tissue sections with O-sialoglycoprotease under conditions that removed the vast majority of MECA-79 staining, only partially reduced staining with the 2F3 and 2H5 mAbs. Using a novel rolling assay in which cells bind under flow to HEV of frozen tissue sections, we demonstrate that a pool of O-sialoglycoprotease–resistant molecules is present on HEV that is sufficient for attachment and rolling of lymphocytes via L-selectin. This interaction is not inhibited by the mAb MECA-79. Furthermore, MECA-79 mAb blocks binding to untreated sections by only 30%, whereas the sLex mAb 2H5 blocks binding by ∼60% and a combination of MECA-79 and 2H5 mAb blocks binding by 75%. We conclude that a pool of O-glycoprotease-resistant sLex-like L-selectin ligands exist on human HEV that is distinct from the mucin-associated moieties recognized by MECA-79 mAb. We postulate that these ligands may participate in lymphocyte binding to HEV.
机译:在淋巴细胞再循环过程中,淋巴细胞通过L-选择素与高内皮小静脉(HEV)表面表达的含硫酸唾液酸化-Lewisx(sLex)的碳水化合物配体结合。我们已经使用一组专门针对sLex和sLex相关结构的单克隆抗体检查了sLex在HEV上的表达,并使用了在HEV上滚动淋巴细胞的体外测定方法来检查了不同的sLex携带结构的功能。我们报告说,三种sLex mAb,2F3、2H5和CSLEX-1(先前已指出与糖脂连接的sLex具有高亲和力结合),它们在不同淋巴组织中对HEV染色的能力各不相同,并且与O连接的抗体与N-连接的抗体差异结合在糖蛋白上连接了sLex。用神经氨酸酶处理组织切片可消除所有三种mAb的染色,但用MECA-79(一种与硫酸盐依赖的HEV相关的碳水化合物决定簇的mAb)的染色会稍微增加染色。在去除绝大多数MECA-79染色的条件下,用O-唾液酸蛋白酶处理组织切片,而2F3和2H5 mAb仅部分减少了染色。使用一种新颖的滚动测定法,其中细胞在流动下结合到冷冻的组织切片的HEV上,我们证明了在HEV上存在大量的O-唾液酸蛋白酶抗性分子,这些分子足以通过L-选择素附着和滚动淋巴细胞。 mAb MECA-79不会抑制这种相互作用。此外,MECA-79 mAb仅能阻止与未处理部分的结合30%,而sLex mAb 2H5能够阻止约60%的结合,而MECA-79和2H5 mAb的结合能阻止75%的结合。我们得出的结论是,人类HEV上存在O-糖蛋白抵抗性sLex样L-选择素配体池,与MECA-79 mAb识别的粘蛋白相关部分不同。我们假设这些配体可能参与淋巴细胞与HEV的结合。

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