Umemoto Eiji, Takeda Akira, Jin Soojung, Luo Zhijuan, Nakahogi Naoki, Hayasaka Haruko, Lee Chun Man, Tanaka Toshiyuki, Miyasaka Masayuki
Laboratory of Immunodynamics, Department of Microbiology and Immunology, Osaka University Graduate School of Medicine, Suita, Osaka, Japan ; Laboratory of Immunodynamics, World Premier International Research Center Initiative-Immunology Frontier Research Center, Osaka University, Suita, Osaka, Japan.
Laboratory of Immunodynamics, Department of Microbiology and Immunology, Osaka University Graduate School of Medicine, Suita, Osaka, Japan.
PLoS One. 2013 Dec 23;8(12):e83681. doi: 10.1371/journal.pone.0083681. eCollection 2013.
Vascular endothelial cells often change their phenotype to adapt to their local microenvironment. Here we report that the vascular endothelial adhesion molecule nepmucin/CD300LG, which is implicated in lymphocyte binding and transmigration, shows unique expression patterns in the microvascular endothelial cells of different tissues. Under physiological conditions, nepmucin/CD300LG was constitutively and selectively expressed at the luminal surface of the small arterioles, venules, and capillaries of most tissues, but it was only weakly expressed in the microvessels of the splenic red pulp and thymic medulla. Furthermore, it was barely detectable in immunologically privileged sites such as the brain, testis, and uterus. The nepmucin/CD300LG expression rapidly decreased in lymph nodes receiving acute inflammatory signals, and this loss was mediated at least in part by TNF-α. It was also down-regulated in tumors and tumor-draining lymph nodes, indicating that nepmucin/CD300LG expression is negatively regulated by locally produced signals under these circumstances. In contrast, nepmucin/CD300LG was induced in the high endothelial venule-like blood vessels of chronically inflamed pancreatic islets in an animal model of non-obese diabetes. Interestingly, the activated CD4(+) T cells infiltrating the inflamed pancreas expressed high levels of the nepmucin/CD300LG ligand(s), supporting the idea that nepmucin/CD300LG and its ligand interactions are locally involved in pathological T cell trafficking. Taken together, these observations indicate that the nepmucin/CD300LG expression in microvascular endothelial cells is influenced by factor(s) that are locally produced in tissues, and that its expression is closely correlated with the level of leukocyte infiltration in certain tissues.
血管内皮细胞常改变其表型以适应局部微环境。在此我们报告,参与淋巴细胞结合和迁移的血管内皮黏附分子nepmucin/CD300LG在不同组织的微血管内皮细胞中呈现独特的表达模式。在生理条件下,nepmucin/CD300LG在大多数组织的小动脉、小静脉和毛细血管的管腔表面组成性且选择性地表达,但在脾红髓和胸腺髓质的微血管中仅微弱表达。此外,在脑、睾丸和子宫等免疫特惠部位几乎检测不到它。在接受急性炎症信号的淋巴结中,nepmucin/CD300LG的表达迅速下降,这种下降至少部分是由肿瘤坏死因子-α介导的。在肿瘤及引流肿瘤的淋巴结中它也下调,表明在这些情况下nepmucin/CD300LG的表达受到局部产生的信号的负调控。相反,在非肥胖糖尿病动物模型中,慢性炎症胰岛的高内皮微静脉样血管中诱导了nepmucin/CD300LG的表达。有趣的是,浸润发炎胰腺的活化CD4(+) T细胞表达高水平的nepmucin/CD300LG配体,支持了nepmucin/CD300LG及其配体相互作用局部参与病理性T细胞 trafficking的观点。综上所述,这些观察结果表明微血管内皮细胞中nepmucin/CD300LG的表达受组织局部产生的因子影响,且其表达与某些组织中白细胞浸润水平密切相关。