Kawabata S, Morita T, Iwanaga S, Igarashi H
J Biochem. 1985 Dec;98(6):1603-14. doi: 10.1093/oxfordjournals.jbchem.a135430.
Staphylocoagulase with a molecular weight of 64,000 and subspecies ranging in molecular weight from 36,000 to 64,000 were purified by affinity column chromatography on bovine prothrombin-Sepharose 4B from the culture filtrates of the Staphylococcus aureus strains, st-213 and 104. The samples containing all molecular species from both strains had the same NH2-terminal sequence, Ile-Val-Thr-Lys-Asp-Tyr-Ser-Lys-Glu-, implying that the molecular heterogeneity was due to proteolytic degradation to some extent of the COOH-terminal portion during cultivation or purification. Staphylocoagulase (Mr = 64,000) from strain st-213 formed an active complex, "staphylothrombin," with human prothrombin in a molar ratio of 1 to 1.1. Staphylothrombin was unstable at 37 degrees C and some portions of staphylocoagulase in the complex were rapidly degraded into small fragments, together with the fragmentation of prothrombin into prethrombin 1 and prothrombin fragment 1. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis and subsequent fluorography for the products of prothrombin activation by staphylocoagulase in the presence of [3H]diisopropylphosphofluoridate (DFP) demonstrated the formation of a DFP-sensitive active site in the prothrombin molecule, and no cleavage of the Arg-Ile bond linking the A and B chains of alpha-thrombin was found. The enzymatic properties including the pH-dependency of the activity, substrate specificity and behavior towards thrombin inhibitors of staphylothrombin differed from those of alpha-thrombin, although the active site titration of staphylothrombin with p-nitrophenyl-p'-guanidinobenzoate showed 0.95 +/- 0.2 mol of active site/mol of enzyme.
通过在牛凝血酶 - 琼脂糖4B亲和柱上进行层析,从金黄色葡萄球菌菌株st - 213和104的培养滤液中纯化出分子量为64,000的葡萄球菌凝固酶以及分子量在36,000至64,000之间的亚种。来自这两个菌株的包含所有分子种类的样品具有相同的氨基末端序列,即异亮氨酸 - 缬氨酸 - 苏氨酸 - 赖氨酸 - 天冬氨酸 - 酪氨酸 - 丝氨酸 - 赖氨酸 - 谷氨酸 -,这意味着分子的异质性在一定程度上是由于在培养或纯化过程中羧基末端部分的蛋白水解降解所致。来自菌株st - 213的葡萄球菌凝固酶(Mr = 64,000)与人类凝血酶以1比1.1的摩尔比形成了一种活性复合物“葡萄球菌凝血酶”。葡萄球菌凝血酶在37℃下不稳定,复合物中的一些葡萄球菌凝固酶部分迅速降解成小片段,同时凝血酶也裂解为前凝血酶1和凝血酶片段1。在[3H]二异丙基磷酰氟(DFP)存在下,对葡萄球菌凝固酶激活凝血酶的产物进行十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳及随后的荧光显影,结果表明在凝血酶分子中形成了一个对DFP敏感的活性位点,并且未发现连接α - 凝血酶A链和B链的精氨酸 - 异亮氨酸键发生裂解。尽管用对硝基苯基 - p'-胍基苯甲酸对葡萄球菌凝血酶进行活性位点滴定显示每摩尔酶有0.95±0.2摩尔活性位点,但葡萄球菌凝血酶的酶学性质,包括活性的pH依赖性、底物特异性以及对凝血酶抑制剂的反应,均与α - 凝血酶不同。