Mori K, Nagasawa S
J Biochem. 1981 May;89(5):1465-73. doi: 10.1093/oxfordjournals.jbchem.a133339.
We have investigated in detail the cleavage of human high molecular weight (HMW) kininogen by human plasma kallikrein and revealed the formation of a nicked kininogen and a novel kinin-free protein (KFP) as intermediate cleavage products. The cleavage of a single chain HMW kininogen (Mr=120,000) by plasma kallikrein was a three-step reaction. The first cleavage yielded a nicked kininogen composed of two disulfide-linked 62,000 and 56,000 daltons chains. The second cleavage yielded kinin and an intermediate kinin-free protein, KFP-I, which was apparently of equal size to the nicked kininogen. The third cleavage yielded a stable kinin-free protein, KFP-II, composed of two disulfide-linked 62,000 and 45,000 daltons chains. The liberation of an 8,000 daltons fragment was identified when the 56,000 daltons chain isolated by SP-Sephadex C-50 chromatography of reduced and alkylated KFP-I was cleaved by plasma kallikrein into the 45,000 daltons chain. Although the antiserum against HMW kininogen cross-reacted with low molecular weight (LMW) kininogen, the antiserum against the 45,000 daltons chain was specific for HMW kininogen. These results suggest that the antigenic determinant groups common to HMW and LMW kininogens are located in the 62,000 daltons heavy chain, while those specific for HMW kininogen are located in the 45,000 daltons light chain, which is known to retain blood coagulation activity.
我们详细研究了人血浆激肽释放酶对人高分子量(HMW)激肽原的裂解作用,并揭示了切口激肽原和一种新型无激肽蛋白(KFP)作为中间裂解产物的形成。血浆激肽释放酶对单链HMW激肽原(Mr = 120,000)的裂解是一个三步反应。第一次裂解产生由两条二硫键连接的62,000和56,000道尔顿链组成的切口激肽原。第二次裂解产生激肽和一种中间无激肽蛋白KFP-I,其大小显然与切口激肽原相等。第三次裂解产生一种稳定的无激肽蛋白KFP-II,由两条二硫键连接的62,000和45,000道尔顿链组成。当通过SP-Sephadex C-50色谱法分离还原和烷基化的KFP-I得到的56,000道尔顿链被血浆激肽释放酶裂解为45,000道尔顿链时,鉴定出一个8,000道尔顿片段的释放。尽管抗HMW激肽原抗血清与低分子量(LMW)激肽原发生交叉反应,但抗45,000道尔顿链的抗血清对HMW激肽原具有特异性。这些结果表明,HMW和LMW激肽原共有的抗原决定簇位于62,000道尔顿的重链中,而HMW激肽原特有的抗原决定簇位于45,000道尔顿的轻链中,已知该轻链保留凝血活性。