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α3/4 岩藻糖基转移酶 3 依赖性合成的 CD44 变体含有外显子 6 的 Sialyl Lewis A 介导多形核白细胞从肠上皮脱落在跨上皮迁移过程中。

α3/4 Fucosyltransferase 3-dependent synthesis of Sialyl Lewis A on CD44 variant containing exon 6 mediates polymorphonuclear leukocyte detachment from intestinal epithelium during transepithelial migration.

机构信息

Division of Neonatal-Perinatal Medicine, Emory University School of Medicine, Atlanta, GA 30322;

出版信息

J Immunol. 2013 Nov 1;191(9):4804-17. doi: 10.4049/jimmunol.1301307. Epub 2013 Sep 25.

Abstract

Polymorphonuclear leukocyte (PMN) migration across the intestinal epithelium closely parallels disease symptoms in patients with inflammatory bowel disease. PMN transepithelial migration (TEM) is a multistep process that terminates with PMN detachment from the apical epithelium into the lumen. Using a unique mAb (GM35), we have previously demonstrated that engagement of the CD44 variant containing exon 6 (CD44v6) blocks both PMN detachment and cleavage of CD44v6. In this article, we report that PMN binding to CD44v6 is mediated by protein-specific O-glycosylation with sialyl Lewis A (sLe(a)). Analyses of glycosyltransferase expression identified fucosyltransferase 3 (Fut3) as the key enzyme driving sLe(a) biosynthesis in human intestinal epithelial cells (IECs). Fut3 transfection of sLe(a)-deficient IECs resulted in robust expression of sLe(a). However, this glycan was not expressed on CD44v6 in these transfected IECs; therefore, engagement of sLe(a) had no effect on PMN TEM across these cells. Analyses of sLe(a) in human colonic mucosa revealed minimal expression in noninflamed areas, with striking upregulation under colitic conditions that correlated with increased expression of CD44v6. Importantly, intraluminal administration of mAb GM35 blocked PMN TEM and attenuated associated increases in intestinal permeability in a murine intestinal model of inflammation. These findings identify a unique role for protein-specific O-glycosylation in regulating PMN-epithelial interactions at the luminal surface of the intestine.

摘要

多形核白细胞(PMN)穿过肠道上皮细胞的迁移与炎症性肠病患者的疾病症状密切相关。PMN 跨上皮迁移(TEM)是一个多步骤的过程,最终导致 PMN 从顶上皮脱落到腔中。我们之前使用独特的单克隆抗体(GM35)证明,CD44 变体包含外显子 6(CD44v6)的结合会阻断 PMN 脱落和 CD44v6 的裂解。在本文中,我们报告 PMN 与 CD44v6 的结合是由蛋白特异性 O-糖基化与唾液酸化 Lewis A(sLe(a))介导的。糖基转移酶表达分析鉴定出岩藻糖基转移酶 3(Fut3)是在人肠道上皮细胞(IEC)中驱动 sLe(a)生物合成的关键酶。sLe(a)缺陷型 IEC 的 Fut3 转染导致 sLe(a)的强烈表达。然而,在这些转染的 IEC 中,这种糖基化不在 CD44v6 上表达;因此,sLe(a)的结合对这些细胞中 PMN TEM 没有影响。对人结肠黏膜中 sLe(a)的分析显示,在非炎症区域表达很少,在结肠炎条件下显著上调,与 CD44v6 的表达增加相关。重要的是,腔内给予 GM35 单抗可阻断 PMN TEM,并在炎症性肠道的小鼠模型中减轻相关的肠道通透性增加。这些发现确定了蛋白特异性 O-糖基化在调节肠道腔表面 PMN-上皮相互作用中的独特作用。

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