Bajzar L, Morser J, Nesheim M
Department of Biochemistry, Queen's University, Kingston, Ontario K7L 3N6, Canada.
J Biol Chem. 1996 Jul 12;271(28):16603-8. doi: 10.1074/jbc.271.28.16603.
TAFI (thrombin-activatable fibrinolysis inhibitor) is a recently discovered plasma protein that can be activated by thrombin-catalyzed proteolysis to a carboxypeptidase B-like enzyme that inhibits fibrinolysis. This work shows that the thrombin-thrombomodulin complex, rather than free thrombin, is the most likely physiologic activator. Thrombomodulin increases the catalytic efficiency of the reaction by a factor of 1250, an effect expressed almost exclusively through an increase in kcat. The kinetics of the reaction conform to a model whereby thrombin can interact with either TAFI (Km = 1.0 microM) or thrombomodulin (Kd = 8.6 nM), and either binary complex so formed can then interact with the third component to form the ternary thrombin-thrombomodulin-TAFI complex from which activated TAFI is produced with kcat = 1.2 s-1. This work also shows that activated TAFI down-regulates tPA-induced fibrinolysis half-maximally at a concentration of 1.0 nM in a system of purified components. This concentration of TAFI is about 2% of the level of the zymogen in plasma, which indicates that ample activated TAFI could be generated to very significantly modulate fibrinolysis in vivo. Therefore, TAFI in vitro and possibly in vivo defines an explicit molecular connection between the coagulation and fibrinolytic cascades, such that expression of activity in the former down-regulates the activity of the latter.
凝血酶激活的纤溶抑制物(TAFI)是一种最近发现的血浆蛋白,它可被凝血酶催化的蛋白水解作用激活,成为一种抑制纤维蛋白溶解的类羧肽酶B样酶。这项研究表明,凝血酶 - 血栓调节蛋白复合物而非游离凝血酶,是最有可能的生理激活剂。血栓调节蛋白将反应的催化效率提高了1250倍,这种效应几乎完全通过kcat的增加来体现。该反应的动力学符合一个模型,即凝血酶可以与TAFI(Km = 1.0 microM)或血栓调节蛋白(Kd = 8.6 nM)相互作用,如此形成的任何一种二元复合物都可以再与第三种成分相互作用,形成三元凝血酶 - 血栓调节蛋白 - TAFI复合物,从中产生激活的TAFI,其kcat = 1.2 s-1。这项研究还表明,在纯化成分系统中,激活的TAFI在浓度为1.0 nM时对组织型纤溶酶原激活物(tPA)诱导的纤维蛋白溶解具有半数最大下调作用。TAFI的这一浓度约为血浆中酶原水平的2%,这表明可以产生足够量的激活TAFI,从而在体内非常显著地调节纤维蛋白溶解。因此,TAFI在体外以及可能在体内定义了凝血和纤维蛋白溶解级联反应之间明确的分子联系,使得前者活性的表达下调后者的活性。