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Potential roles of N-glycosylation in cell adhesion

机译:potential roles of N-glycosylation in cell adhesion

摘要

The functional units of cell adhesion are typically multiprotein complexes made up of three general classes of proteins; the adhesion receptors, the cell-extracellular matrix (ECM) proteins, and the cytoplasmic plaque/peripheral membrane proteins. The cell adhesion receptors are usually transmembrane glycoproteins (for example E-cadherin and integrin) that mediate binding at the extracellular surface and determine the specificity of cell-cell and cell-ECM recognition. E-cadherin-mediated cell-cell adhesion can be both temporally and spatially regulated during development, and represents a key step in the acquisition of the invasive phenotype for many tumors. On the other hand, integrin-mediated cell-ECM interactions play important roles in cytoskeleton organization and in the transduction of intracellular signals to regulate various processes such as proliferation, differentiation and cell migration. ECM proteins are typically large glycoproteins, including the collagens, fibronectins, laminins, and proteoglycans that assemble into fibrils or other complex macromolecular arrays. The most of these adhesive proteins are glycosylated. Here, we focus mainly on the modification of N-glycans of integrins and laminin-332, and a mutual regulation between cell adhesion and bisected N-glycan expression, to address the important roles of N-glycans in cell adhesion.
机译:细胞粘附的功能单元通常是由三大类蛋白质组成的多蛋白质复合物。粘附受体,细胞外基质蛋白(ECM)和细胞质斑块/外周膜蛋白。细胞粘附受体通常是跨膜糖蛋白(例如E-钙黏着蛋白和整联蛋白),介导细胞外表面的结合并决定细胞对细胞和细胞ECM识别的特异性。 E-钙黏着蛋白介导的细胞之间的粘附可以在发育过程中在时间和空间上得到调节,并且代表了获得许多肿瘤的侵入表型的关键步骤。另一方面,整联蛋白介导的细胞-ECM相互作用在细胞骨架组织和细胞内信号转导以调节各种过程如增殖,分化和细胞迁移中起重要作用。 ECM蛋白通常是大型糖蛋白,包括胶原蛋白,纤连蛋白,层粘连蛋白和蛋白聚糖,它们组装成原纤维或其他复杂的大分子阵列。这些粘附蛋白大多数是糖基化的。在这里,我们主要侧重于整合素和层粘连蛋白332的N-聚糖的修饰,以及细胞黏附和一分为二的N-聚糖表达之间的相互调节,以解决N-聚糖在细胞黏附中的重要作用。

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