Mourão P A, Pereira M S, Pavão M S, Mulloy B, Tollefsen D M, Mowinckel M C, Abildgaard U
Departamento de Bioquímica, Instituto de Ciências Biomédicas, Universidade Federal do Rio de Janeiro, Caixa Postal 68041, Rio de Janeiro, RJ, 21941-590, Brazil.
J Biol Chem. 1996 Sep 27;271(39):23973-84. doi: 10.1074/jbc.271.39.23973.
A polysaccharide isolated from the body wall of the sea cucumber Ludwigothurea grisea has a backbone like that of mammalian chondroitin sulfate: [4-beta-D-GlcA-1-->3-beta-D-GalNAc-1]n but substituted at the 3-position of the beta--glucuronic acid residues with sulfated alpha--fucopyranosyl branches (Vieira, R. P., Mulloy, B., and Mourão, P. A. S. (1991) J. Biol. Chem. 266, 13530-13536). Mild acid hydrolysis removes the sulfated alpha--fucose branches, and cleaved residues have been characterized by 1H NMR spectroscopy; the most abundant species is fucose 4-O-monosulfate, but 2,4- and 3, 4-di-O-sulfated residues are also present. Degradation of the remaining polysaccharide with chondroitin ABC lyase shows that the sulfated alpha-L-fucose residues released by mild acid hydrolysis are concentrated toward the non-reducing end of the polysaccharide chains; enzyme-resistant polysaccharide material includes the reducing terminal and carries acid-resistant -fucose substitution. The sulfated alpha-L-fucose branches confer anticoagulant activity on the polysaccharide. The specific activity of fucosylated chondroitin sulfate in the activated partial thromboplastin time assay is greater than that of a linear homopolymeric alpha-L-fucan with about the same level of sulfation; this activity is lost on defucosylation or desulfation but not on carboxyl-reduction of the polymer. Assays with purified reagents show that the fucosylated chondroitin sulfate can potentiate the thrombin inhibition activity of both antithrombin and heparin cofactor II.
从海参路德维希海参体壁中分离出的一种多糖,其主链与哺乳动物硫酸软骨素相似:[4-β-D-葡糖醛酸-1→3-β-D-氨基半乳糖-1]n,但在β-葡糖醛酸残基的3位被硫酸化的α-岩藻糖基分支取代(维埃拉,R.P.,穆洛伊,B.,和莫劳,P.A.S.(1991年)《生物化学杂志》266,13530 - 13536)。温和酸水解去除硫酸化的α-岩藻糖分支,裂解后的残基已通过1H NMR光谱进行了表征;最丰富的物种是4-O-单硫酸化岩藻糖,但也存在2,4-和3,4-二-O-硫酸化残基。用软骨素ABC裂解酶降解剩余的多糖表明,温和酸水解释放的硫酸化α-L-岩藻糖残基集中在多糖链的非还原端;抗酶多糖物质包括还原末端并带有抗酸的岩藻糖取代。硫酸化的α-L-岩藻糖分支赋予多糖抗凝血活性。在活化部分凝血活酶时间测定中,岩藻糖基化硫酸软骨素比具有大致相同硫酸化水平的线性同聚α-L-岩藻聚糖具有更高的比活性;这种活性在去岩藻糖基化或脱硫时丧失,但在聚合物的羧基还原时不丧失。用纯化试剂进行的测定表明,岩藻糖基化硫酸软骨素可以增强抗凝血酶和肝素辅因子II的凝血酶抑制活性。