Fujiwara S, Shinkai H, Timpl R
Department of Dermatology, Medical College of Oita, Japan.
Matrix. 1991 Nov;11(5):307-12. doi: 10.1016/s0934-8832(11)80201-5.
Asparagine-linked oligosaccharides were liberated from pepsin-treated type VI collagen and the 7S domain of type IV collagen by hydrazinolysis and their structures analysed by exoglycosidase treatment. The major component in both proteins was complex biantennary oligosaccharide being partly modified by the addition of fucose and sialic acid residues. The 7S domain contained in addition distinct amounts of truncated biantennary structures lacking one or two beta-galactose residues and a minor triantennary structure. Carbohydrate analysis indicated that all of the N-linked and 80-90% of the O-linked acceptor sites are occupied. The lack of galactosamine content in both collagens showed the O-linked oligosaccharides were only those attached to hydroxylysine and not to serine or threonine. The high carbohydrate density along both triple helical domains is discussed with regard to their limited ability to form lateral aggregates.
通过肼解从经胃蛋白酶处理的VI型胶原蛋白和IV型胶原蛋白的7S结构域中释放出天冬酰胺连接的寡糖,并通过外切糖苷酶处理分析其结构。两种蛋白质中的主要成分都是复杂的双天线寡糖,部分被岩藻糖和唾液酸残基修饰。7S结构域还含有不同数量的缺少一个或两个β-半乳糖残基的截短双天线结构以及少量的三天线结构。碳水化合物分析表明,所有N-连接和80-90%的O-连接受体位点都被占据。两种胶原蛋白中半乳糖胺含量的缺乏表明,O-连接寡糖仅与羟赖氨酸相连,而不与丝氨酸或苏氨酸相连。针对它们形成侧向聚集体的能力有限,讨论了沿两个三螺旋结构域的高碳水化合物密度。