Oeben M, Keller R, Stuhlsatz H W, Greiling H
Department of Clinical Chemistry and Pathobiochemistry, Medical Faculty, Aachen University of Technology (RWTH Aachen), Federal Republic of Germany.
Biochem J. 1987 Nov 15;248(1):85-93. doi: 10.1042/bj2480085.
Four peptidokeratan sulphate fractions of different Mr and degree of sulphation were cut from the pig corneal keratan sulphate distribution spectrum. After exhaustive digestion with keratanase, the fragments were separated on DEAE-Sephacel and Bio-Gel P-10 and analysed for their Mr, degree of sulphation and amino sugar and neutral sugar content. It was found that every glycosaminoglycan chain is constructed of a constant domain of non-sulphated and monosulphated disaccharide units and a variable domain of disulphated disaccharide units. Total neuraminic acid of the four peptidokeratan sulphates was recovered from their isolated linkage-region oligosaccharides. In kinetic studies, the four peptidokeratan sulphates were investigated for Mr distribution after various incubation times with keratanase. There was a continuous shift towards lower Mr and no appearance of a distinct intermediate-sized product at any degradation time. The linkage-region oligosaccharide was already being liberated after a very short incubation period. From the results of these kinetic investigations in connection with the results of neuraminic acid analyses it is suggested that there exists only one disaccharide chain per peptidokeratan sulphate molecule. A model of corneal keratan sulphate is postulated. One of the alpha-mannose residues in the linkage region is bound to an oligosaccharide consisting of a lactosamine and a terminal sialic acid. The other alpha-mannose residue is attached to the disaccharide chain. This chain contains one or two non-sulphated disaccharide units at the reducing end, followed by 10-12 monosulphated disaccharide units. The disulphated disaccharide moiety of variable length is positioned at the non-reducing end of the chain.
从猪角膜硫酸角质素分布谱中切下四个不同分子量(Mr)和硫酸化程度的硫酸肽角质素组分。用角质酶彻底消化后,将片段在DEAE-琼脂糖凝胶和Bio-Gel P-10上分离,并分析其分子量、硫酸化程度以及氨基糖和中性糖含量。结果发现,每条糖胺聚糖链均由非硫酸化和单硫酸化二糖单位的恒定结构域以及双硫酸化二糖单位的可变结构域构成。从分离出的连接区寡糖中回收了四种硫酸肽角质素的总神经氨酸。在动力学研究中,研究了四种硫酸肽角质素与角质酶孵育不同时间后的分子量分布。分子量持续向更低值转移,在任何降解时间均未出现明显的中等大小产物。孵育很短时间后连接区寡糖就已开始释放。结合神经氨酸分析结果,这些动力学研究结果表明每个硫酸肽角质素分子仅存在一条二糖链。据此推测出角膜硫酸角质素的模型。连接区的一个α-甘露糖残基与一个由乳糖胺和末端唾液酸组成的寡糖相连。另一个α-甘露糖残基连接到二糖链上。该链在还原端含有一个或两个非硫酸化二糖单位,随后是10 - 12个单硫酸化二糖单位。可变长度的双硫酸化二糖部分位于链的非还原端。