Ototani N, Kikuchi M, Yosizawa Z
Biochem J. 1982 Jul 1;205(1):23-30. doi: 10.1042/bj2050023.
Finback-whale (Balaenoptera physalus L.) heparin was partially digested with a purified heparinase and an octasaccharide with high affinity for antithrombin III was isolated from the digest by gel filtration, followed by affinity chromatography on a column of antithrombin III immobilized on Sepharose 4B. This octasaccharide possessed high inhibitory activity for Factor Xa in the presence of antithrombin III, but was essentially inactive for thrombin-antithrombin III reaction. The anticoagulant activity determined by the activated-partial-thromboplastin-time method was very low (40-70 units/mg), although the initial whale heparin exhibited high activity (252 units/mg). On the basis of the results of chemical analyses, 13C n.m.r. spectrum and enzymic studies with purified heparinase, heparitinases 1 and 2, the predominant structure of the octasaccharide was proposed as follows: delta UA(2S) alpha 1 leads to 4GlcNS alpha 1 leads to 4IdUA alpha 1 leads to 4GlcNAc(6S) alpha 1 leads to 4GlcUA beta 1 leads to 4GlcNS(3S) alpha 1 leads to 4IdUA(2S) alpha 1 leads to 4GlcNS. Comparing this structure with those of the heparin octasaccharides so far reported, the presence of the critical structural elements for binding to antithrombin III was suggested in the pentasaccharide region situated at the reducing end of this octasaccharide. Binding to antithrombin III of the critical structural elements alone would appear to elicit the acceleration of the Factor Xa-antithrombin III reaction. Additional structural elements required for the acceleration of the thrombin-antithrombin III reaction and for the manifestation of high anticoagulant activity are discussed.
长须鲸(Balaenoptera physalus L.)肝素用纯化的肝素酶进行部分消化,然后通过凝胶过滤从消化物中分离出对抗凝血酶III具有高亲和力的八糖,接着在固定于琼脂糖4B上的抗凝血酶III柱上进行亲和层析。这种八糖在抗凝血酶III存在下对因子Xa具有高抑制活性,但对凝血酶-抗凝血酶III反应基本无活性。尽管最初的鲸肝素表现出高活性(252单位/毫克),但通过活化部分凝血活酶时间法测定的抗凝血活性非常低(40 - 70单位/毫克)。基于化学分析、13C核磁共振光谱以及用纯化的肝素酶、硫酸乙酰肝素酶1和2进行的酶学研究结果,提出该八糖的主要结构如下:ΔUA(2S)α1→4GlcNSα1→4IdUAα1→4GlcNAc(6S)α1→4GlcUAβ1→4GlcNS(3S)α1→4IdUA(2S)α1→4GlcNS。将此结构与迄今报道的肝素八糖结构进行比较,表明在该八糖还原端的五糖区域存在与抗凝血酶III结合的关键结构元件。单独的关键结构元件与抗凝血酶III结合似乎会引发因子Xa - 抗凝血酶III反应的加速。还讨论了加速凝血酶 - 抗凝血酶III反应和表现出高抗凝血活性所需的其他结构元件。