Ouyang C, Huang T F
Biochim Biophys Acta. 1979 Dec 7;571(2):270-83. doi: 10.1016/0005-2744(79)90097-4.
By means of DEAE-Sephadex A-50 Column chromatography, Trimeresurus gramineus venom was separated into twelve fractions. The fibrinogenolytic activities were distributed in Fractions 1 and 10. These enzymes were further purified by gel filtration and were homogeneous as judged by cellulose acetate membrane, sodium dodecyl sulfate polyacrylamide gel electrophoresis and ultracentrifugal analysis. Both of them were single peptide chains. The sedimentation constants of alpha- (Fraction 1) and beta-fibrinogenases (Fraction 10) were 2.20 and 3.60, respectively. The molecular weights of alpha- and beta-fibrinogenases were 23 500 and 25 000 respectively. The contents of proline and glycine were higher in beta-fibrinogenase than in alpha-fibrinogenase. The isoelectric points of alpha-fibrinogenase and beta-fibrinogenase were pH greater than 10 and 4.5, respectively. The optimal pH of alpha-fibrinogenase was approx. 7.4 and that of beta-fibrinogenase was approx. 9.0. The activity of alpha-fibrinogenase was completely destroyed after 30 min at 60 degrees C, pH 5.4, 7.4 and 9.0, while that of beta-fibrinogenase was much less affected by the same treatment. The specific fibrinogenolytic activity alpha-fibrinogenase was 31 mg fibrinogen/min per mg protein, while that of beta-fibrinogenase was 9 mg fibrinogen/min per mg protein. alpha-Fibrinogenase cleaved specifically the alpha(A) chain of monomeric fibrinogen without cleaving the beta(B) chain and gamma-chain. beta-fibrinogenase preferentially cleaved the beta(B) chain, and the alpha(A) chain was also partially cleaved by beta-fibrinogenase, if the incubation time was prolonged. Both enzymes showed proteolytic activities toward fibrinogen, fibrin and casein, but were devoid of phospholipase A, alkaline phosphomonoesterase and phosphodiesterase activities found in the crude venom. The tosyl-L-arginine methylester esterase activity of beta-fibrinogenase was about 14 times that of crude venom, while alpha-fibrinogenase was completely devoid of this activity. The fibrinogenolytic activity of alpha-fibrinogenase was markedly inhibited by EDTA and cysteine, while that of beta-fibrinogenase was inhibited markedly by phenylmethanesulfonylfluoride. alpha- and beta-fibrinogenases exert their fibrinogenolytic activity by a direct action on fibrinogen or fibrin without activation of plasminogen.
通过DEAE-葡聚糖A-50柱色谱法,将竹叶青蛇毒分离成12个组分。纤维蛋白原溶解活性分布在组分1和组分10中。这些酶通过凝胶过滤进一步纯化,经醋酸纤维素膜、十二烷基硫酸钠聚丙烯酰胺凝胶电泳和超速离心分析判断为均一。它们均为单肽链。α-(组分1)和β-纤维蛋白原酶(组分10)的沉降常数分别为2.20和3.60。α-和β-纤维蛋白原酶的分子量分别为23500和25000。β-纤维蛋白原酶中的脯氨酸和甘氨酸含量高于α-纤维蛋白原酶。α-纤维蛋白原酶和β-纤维蛋白原酶的等电点分别大于pH10和4.5。α-纤维蛋白原酶的最适pH约为7.4,β-纤维蛋白原酶的最适pH约为9.0。在60℃、pH5.4、7.4和9.0条件下作用30分钟后,α-纤维蛋白原酶的活性完全丧失,而β-纤维蛋白原酶受相同处理的影响小得多。α-纤维蛋白原酶的比纤维蛋白原溶解活性为每毫克蛋白每分钟31毫克纤维蛋白原,而β-纤维蛋白原酶为每毫克蛋白每分钟9毫克纤维蛋白原。α-纤维蛋白原酶特异性切割单体纤维蛋白原的α(A)链,而不切割β(B)链和γ链。β-纤维蛋白原酶优先切割β(B)链,若延长孵育时间,α(A)链也会被β-纤维蛋白原酶部分切割。两种酶对纤维蛋白原、纤维蛋白和酪蛋白均表现出蛋白水解活性,但粗毒中存在的磷脂酶A、碱性磷酸单酯酶和磷酸二酯酶活性在这两种酶中未发现。β-纤维蛋白原酶的甲苯磺酰-L-精氨酸甲酯酶活性约为粗毒的14倍,而α-纤维蛋白原酶完全没有这种活性。α-和β-纤维蛋白原酶通过直接作用于纤维蛋白原或纤维蛋白发挥其纤维蛋白原溶解活性,而不激活纤溶酶原。