Campo R D
Calcif Tissue Int. 1981;33(2):89-99. doi: 10.1007/BF02409419.
Soluble proteoglycans (SPG) were extracted from bovine (BCC) and human (HCC) costal cartilages by the dissociative method using 4 M guanidinium chloride (GuHCl). Proteoglycans which are resistant to extraction (RPG) were obtained following collagenase digestion or hydroxylamine treatment of the cartilage residues. Similarly, SPG were extracted from bovine metaphyseal and cortical bone using EDTA. The RPG were extracted from the bones using hydroxylamine. Density gradient fractionation under dissociative conditions of cartilage SPG and RPG followed by chromatography on Sepharose 2B revealed that A1D1 RPG are smaller than the SPG. SPG reacted with either collagenase or hydroxylamine are also smaller than the parent SPG. A1D1 fractions obtained from BCC-SPG and RPG or from mixtures of SPG and acid-soluble collagen are free of hydroxyproline. Hydroxyproline is not completely separated from HCC-RPG. Density gradient fractionation of bone proteoglycans and Sepharose chromatography of the A1 and A1D1 fractions showed that those obtained from metaphysis are larger than those from cortical bone. This was attributed to the presence of calcified cartilage in metaphyseal bone. The A1D1 fractions of the metaphyseal proteoglycans seemed to undergo self-association since this fraction is larger than the A1 fraction from which it is derived. Cortical bone proteoglycans do not behave similarly. Density gradient purification under dissociative conditions failed to separate hydroxyproline from the proteoglycans obtained from bone. It is hypothesized that in bone proteoglycans and collagen might be linked.
采用4M氯化胍(GuHCl)的解离方法从牛(BCC)和人(HCC)肋软骨中提取可溶性蛋白聚糖(SPG)。通过对软骨残渣进行胶原酶消化或羟胺处理,可获得抗提取的蛋白聚糖(RPG)。同样,使用乙二胺四乙酸(EDTA)从牛干骺端和皮质骨中提取SPG。使用羟胺从骨中提取RPG。在软骨SPG和RPG的解离条件下进行密度梯度分级分离,随后在琼脂糖2B上进行色谱分析,结果表明A1D1 RPG比SPG小。与胶原酶或羟胺反应的SPG也比母体SPG小。从BCC-SPG和RPG或从SPG与酸溶性胶原的混合物中获得的A1D1级分不含羟脯氨酸。羟脯氨酸不能与HCC-RPG完全分离。对骨蛋白聚糖进行密度梯度分级分离以及对A1和A1D1级分进行琼脂糖色谱分析表明,从干骺端获得的那些级分比从皮质骨获得的级分大。这归因于干骺端骨中存在钙化软骨。干骺端蛋白聚糖的A1D1级分似乎会发生自缔合,因为该级分比其来源的A1级分大。皮质骨蛋白聚糖的行为则不同。在解离条件下进行密度梯度纯化未能将羟脯氨酸与从骨中获得的蛋白聚糖分离。据推测,在骨中蛋白聚糖和胶原可能是相连的。