Baenziger J U, Fiete D
Cell. 1980 Nov;22(2 Pt 2):611-20. doi: 10.1016/0092-8674(80)90371-2.
We have examined the kinetics of binding and uptake of iodinated glycoproteins and glycopeptides bearing terminal Gal or GalNAc moieties in an isolated rat hepatocyte system. Asparagine-linked, triantennary complex oligosaccharides with three terminal Gal residues are endocytosed with the same kinetics as asialo-orosomucoid, whereas biantennary, complex oligosaccharides with one or two terminal Gal residues are not endocytosed Glycopeptides bearing as few as four O-glycosidically-linked Gal beta 1, 3GalNAc or GalNAc moieties are also rapidly endocytosed, while glycopeptides with one or two more closely spaced moieties are not endocytosed. All the endocytosable glycoproteins and glycopeptides have similar apparent dissociation constants and a similar number of binding sites on the surface of the intact hepatocyte. The ligand-binding properties of the receptor in the plasma membrane of intact cells differ from those of the solubilized receptor, suggesting that interaction with other as yet undefined cellular components confers the ability to discriminate among closely related oligosaccharide structures. This is consistent with a model in which only glycopeptides bearing terminal Gal or GalNAc residues that fall within a restricted spatial relationship can induce a conformational alteration in the receptor which is required for uptake to occur. The endocytosis of a number of glycoproteins such as human asialo-ceruloplasmin can be accounted for by the presence of a single, complex oligosaccharide with the appropriate structure.
我们在分离的大鼠肝细胞系统中研究了带有末端半乳糖(Gal)或N-乙酰半乳糖胺(GalNAc)基团的碘化糖蛋白和糖肽的结合及摄取动力学。具有三个末端Gal残基的天冬酰胺连接的三分支复合寡糖以内吞唾液酸缺乏的血清类黏蛋白相同的动力学被内吞,而具有一个或两个末端Gal残基的双分支复合寡糖则不被内吞。带有少至四个O-糖苷键连接的Galβ1,3GalNAc或GalNAc基团的糖肽也能迅速被内吞,而具有一个或两个间隔更近基团的糖肽则不被内吞。所有可被内吞的糖蛋白和糖肽在完整肝细胞表面都有相似的表观解离常数和相似数量的结合位点。完整细胞质膜中受体的配体结合特性与可溶受体的不同,这表明与其他尚未明确的细胞成分的相互作用赋予了区分密切相关寡糖结构的能力。这与一个模型一致,在该模型中,只有带有处于受限空间关系内的末端Gal或GalNAc残基的糖肽才能诱导受体发生构象改变,而摄取的发生需要这种构象改变。许多糖蛋白如人唾液酸缺乏的铜蓝蛋白的内吞作用可以通过存在单个具有适当结构的复合寡糖来解释。