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Conformational changes and anticoagulant activity of chondroitin sulfate following its O-sulfonation

机译:O-磺化后硫酸软骨素的构象变化和抗凝活性

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Chondroitin sulfate from bovine tracheal cartilage, with the basic structure (4-O-sulfo-D-GalpNAc beta 1 --> 4-D-GlcpAA)(n), was chemically modified by O-sulfonation. Depending on the reaction conditions, the products showed a different degree of O-sulfonation. A fully O-sulfonated chondroitin sulfate, having no free hydroxyl groups, and a sulfo ester group:disaccharide unit ratio of 4.0 was prepared. This chondroitin sulfate derivative was shown by H-1 NMR spectroscopy to have a uronate residue with an altered conformation. Usually, the uronate residue in chondroitin sulfate resides in the C-4(1) form. Fully O-sulfonated chondroitin sulfate had an uronate residue in the C-1(4) form at 30 degrees C, similar to the preferred conformation of the 2-O-sulfo-iduronate residue most commonly found in heparin. The S-2(0) form of the uronate residue was also found in fully O-sulfonated chondroitin sulfate at 60 degrees C. The anti-factor IIa activity of fully O-sulfonated chondroitin sulfate was 40 units/mg. This value is similar to the activities reported for various low-molecular-weight heparins, and substantially higher than those previously reported for partially O-sulfonated chondroitin sulfates having an average sulfate group/disaccharide unit of 2.5 to 3.3. The anti-factor Xa activity of the fully O-sulfonated chondroitin sulfate was 12 units/mg. This value is considerably lower than the activities reported for various low-molecular-weight heparins, consistent with the critical importance of an antithrombin III pentasaccharide binding site for anti-factor Xa activity. These findings suggest that the conformational change of glucuronic acid residue in chondroitin sulfate resulting from its full O-sulfonation can result in enhanced anticoagulant activity, particularly as measured by anti-factor IIa assay. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 29]
机译:牛气管软骨中的硫酸软骨素具有基本结构(4-O-磺基-D-GalpNAc beta 1-> 4-D-GlcpAA)(n),通过O-磺化反应进行了化学修饰。根据反应条件,产物显示出不同程度的O-磺化。制备了完全O-磺化的软骨素硫酸盐,其没有游离羟基,并且磺基酯基:二糖的单位比为4.0。通过H-1 NMR光谱法表明该硫酸软骨素衍生物具有具有改变的构象的尿酸盐残基。通常,硫酸软骨素中的尿酸盐残基以C-4(1)形式存在。完全O磺化的软骨素硫酸盐在30摄氏度时具有C-1(4)形式的尿酸残基,类似于最常在肝素中发现的2-O-磺基异氰酸酯残基的优选构象。还在60摄氏度下在完全O磺化的软骨素硫酸盐中发现了S-2(0)形式的尿酸盐残基。完全O磺化的软骨素硫酸盐的抗因子IIa活性为40单位/毫克。该值类似于所报道的各种低分子量肝素的活性,并且显着高于先前所报道的具有平均硫酸根基团/二糖单元为2.5至3.3的部分O-磺化软骨素硫酸盐的活性。完全被O磺化的硫酸软骨素的抗因子Xa活性为12单位/ mg。该值大大低于所报道的各种低分子量肝素的活性,这与抗凝血酶III五糖结合位点对抗Xa因子活性的至关重要性相一致。这些发现表明硫酸软骨素中的葡萄糖醛酸残基的构象变化,由于其完全的O-磺化而引起,可以导致增强的抗凝活性,特别是通过抗因子IIa测定法。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:29]

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