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FUNCTIONALLY DISTINCT ROLES for GLYCOSYLATION of ALPHA-INTEGRIN and BETA-INTEGRIN CHAINS in CELL MATRIX INTERACTIONS

机译:细胞基质相互作用中α-整合素和β-整合素链糖基化的功能性独特作用

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摘要

Laminin interaction with gp120/140, a B16-F10 laminin-binding protein immunologically related to alpha6beta1 integrin, has been shown to be dependent on oligosaccharides from both ligand and receptor. Lectin analysis of gp120/140 led to the conclusion that this integrin is a sialoglycoprotein bearing mainly complex antennary structures. By means of exoglycosidase treatment, it was possible to identify alpha-galactosyl residues on the integrin alpha chain as the laminin-binding determinants. These residues are involved in cell adhesion to laminin. On the other hand, beta-chain complex antennary structures, whose synthesis could be inhibited by swainsonine, were associated with cell spreading rather than cell adhesion. Thus, it was possible to modulate integrin-mediated cell adhesion and spreading through changes in the glycosylation state of integrin alpha and beta chains.
机译:层粘连蛋白与gp120 / 140(一种与α6beta1整联蛋白免疫学相关的B16-F10层粘连蛋白结合蛋白)的相互作用已显示依赖于配体和受体的寡糖。 gp120 / 140的凝集素分析得出结论,该整联蛋白是一种唾液酸糖蛋白,主要携带复杂的触角结构。通过外切糖苷酶处理,可以鉴定整联蛋白α链上的α-半乳糖基残基为层粘连蛋白结合决定簇。这些残基参与细胞对层粘连蛋白的粘附。另一方面,β-链复杂的触角结构,其合成可能被swainsonine抑制,与细胞扩散而不是细胞粘附有关。因此,有可能通过整联蛋白α和β链的糖基化状态的改变来调节整联蛋白介导的细胞粘附和扩散。

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