Wiggins R C, Cochrane C C
J Exp Med. 1979 Nov 1;150(5):1122-33. doi: 10.1084/jem.150.5.1122.
Proteolytic cleavage and activation of isolated, single chain, zymogen Hageman factor was observed in the presence of kaolin alone. The rate of cleavage of kaolin-bound Hageman factor was enhanced 50-fold by the presence of prekallikrein and high molecular weight kininogen. The two-chain 82,000 dalton form of activated Hageman factor (alpha-HF(a)) also cleaved kaolin- bound single-chain Hageman factor in a dose-dependent manner, yielding fragments of 28,000 and, 50,000 dahons under reducing conditions. Cleavage of kaolin-bound single-chain Hageman factor was not inhibited by preincubation with diisopropylfluorophosphate (12 mM) for 10 min, but long-term incubation of Hageman factor with diisopropylfluorophosphate (up to 48 h) resulted in inhibition of cleavage of kaolin-bound Hageman factor to an extent proportional to the inhibition of procoagulant Hageman factor activity. Hageman factor cleavage was maximal when the kaolin concentration was {approximately} 10-fold greater than the Hageman factor concentration (wt:wt), and was partially inhibited by high molecular weight kininogen. Kaolin-bound Hageman factor cleaved clotting factor XI in an amount which correlated with the extent of cleavage of the Hageman factor. These findings are compatible with the concept that single-chain Hageman factor and alpha- HF(a), are both capable of cleaving and activating kaolin-bound Hageman factor and that a close molecular association of kaolin-bound Hageman factor molecules is required for this reaction.
仅在高岭土存在的情况下,观察到分离的单链酶原哈格曼因子的蛋白水解裂解和激活。前激肽释放酶和高分子量激肽原的存在使高岭土结合的哈格曼因子的裂解速率提高了50倍。活化的哈格曼因子(α-HF(a))的82,000道尔顿双链形式也以剂量依赖的方式裂解高岭土结合的单链哈格曼因子,在还原条件下产生28,000和50,000道尔顿的片段。高岭土结合的单链哈格曼因子的裂解不受与二异丙基氟磷酸酯(12 mM)预孵育10分钟的抑制,但哈格曼因子与二异丙基氟磷酸酯长期孵育(长达48小时)导致高岭土结合的哈格曼因子的裂解受到抑制,其程度与促凝血哈格曼因子活性的抑制程度成比例。当高岭土浓度比哈格曼因子浓度(重量比)高约10倍时,哈格曼因子裂解最大,并且受到高分子量激肽原的部分抑制。高岭土结合的哈格曼因子裂解凝血因子XI的量与哈格曼因子的裂解程度相关。这些发现与以下概念一致:单链哈格曼因子和α-HF(a)都能够裂解和激活高岭土结合的哈格曼因子,并且该反应需要高岭土结合的哈格曼因子分子紧密的分子缔合。