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首页> 外文期刊>The Journal of Experomental Medicine >Human vascular adhesion protein 1 (VAP-1) is a unique sialoglycoprotein that mediates carbohydrate-dependent binding of lymphocytes to endothelial cells.
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Human vascular adhesion protein 1 (VAP-1) is a unique sialoglycoprotein that mediates carbohydrate-dependent binding of lymphocytes to endothelial cells.

机译:人血管粘附蛋白1(VAP-1)是一种独特的唾液蛋白,其介导淋巴细胞与内皮细胞的碳水化合物依赖性结合。

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摘要

The regulated interactions of leukocytes with vascular endothelial cells are crucial in controlling leukocyte traffic between blood and tissues. Vascular adhesion protein-1 (VAP-1) is a novel, human endothelial cell molecule that mediates tissue-selective lymphocyte binding. Two species (90 and 170 kD) of VAP-1 exist in lymphoid tissues. Glycosidase digestions revealed that the mature 170-kD form of VAP-1 expressed on the lumenal surfaces of vessels is a heavily sialylated glycoprotein. The sialic acids are indispensable for the function of VAP-1, since the desialylated form of VAP-1 no longer mediates lymphocyte binding. We also show that L-selectin is not required for binding of activated lymphocytes to VAP-1 under conditions of shear stress. The 90-kD form of VAP-1 was only seen in an organ culture model, and may represent a monomeric or proteolytic form of the larger species. These data indicate that L-selectin negative lymphocytes can bind to tonsillar venules via the VAP- 1-mediated pathway. Moreover, our findings extend the role of carbohydrate-mediated binding in lymphocyte-endothelial cell interactions beyond the known selectins. In conclusion, VAP-1 naturally exists as a 170-kD sialoglycoprotein that uses sialic acid residues to interact with its counter-receptors on lymphocytes under nonstatic conditions.
机译:白细胞与血管内皮细胞的调节相互作用对于控制血液和组织之间的白细胞交通至关重要。血管粘附蛋白-1(VAP-1)是一种新型人内皮细胞分子,介导组织选择性淋巴细胞结合。淋巴组织中的两个物种(90和170kd)的VAP-1存在。糖苷酶消化揭示了在血管内腔表面上表达的成熟170kd形式的VAP-1是重唾液酸化的糖蛋白。唾液酸对于VAP-1的功能是必不可少的,因为脱裂化的VAP-1形式不再介导淋巴细胞结合。我们还表明,在剪切应力条件下,不需要L-SELECTIN在剪切应力条件下将活性淋巴细胞与VAP-1的结合。在器官培养模型中仅在器官培养模型中看到90kD形式的VAP-1,并且可以代表较大物种的单体或蛋白水解形式。这些数据表明L-选择蛋白阴性淋巴细胞可以通过VAP-1介导的途径与扁桃体静脉结合。此外,我们的发现将碳水化合物介导的结合在已知选择超出的淋巴细胞 - 内皮细胞相互作用中的作用扩展。总之,VAP-1天然存在为170 kd的唾液蛋白,其使用唾液酸残基在非静态条件下与其对淋巴细胞上的反感器相互作用。

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