Boffa M B, Bell R, Stevens W K, Nesheim M E
Department of Biochemistry, Queen's University, Kingston, Ontario K7L 3N6, Canada.
J Biol Chem. 2000 Apr 28;275(17):12868-78. doi: 10.1074/jbc.275.17.12868.
We have used site-directed mutagenesis and a recombinant expression system for thrombin-activable fibrinolysis inhibitor (TAFI) in order to identify the thrombin cleavage site in activated TAFI (TAFIa) and to determine the relative contribution of proteolytic cleavage and thermal instability in regulation of TAFIa activity in clots. Arg-330 of TAFIa had been proposed to be the thrombin cleavage site based on studies with trypsin, but mutation of this residue to Gln did not prevent thrombin-mediated cleavage nor did mutation to Gln of the nearby Arg-320 residue. However, mutation of Arg-302 to Gln abolished thrombin-mediated cleavage of TAFIa. All TAFIa variants were susceptible to plasmin cleavage. Interestingly, all Arg to Gln substitutions decreased the thermal stability of TAFIa. The antifibrinolytic potential of the TAFI mutants in vitro correlates with the thermal stability of their respective TAFIa species, indicating that this property plays a key role in regulating the activity if TAFIa. Incubation of TAFIa under conditions that result in complete thermal inactivation of the enzyme accelerates subsequent thrombin- and plasmin-mediated cleavage of TAFIa. Moreover, the extent of cleavage of TAFIa by thrombin does not affect the rate of decay of TAFIa activity. Collectively, these studies point to a role for the thermal instability, but not for proteolytic cleavage, of TAFIa in regulation of its activity and, thus, of its antifibrinolytic potential. Finally, we propose a model for the thermal instability of TAFIa.
我们利用定点诱变技术和凝血酶激活的纤溶抑制物(TAFI)的重组表达系统,来确定活化TAFI(TAFIa)中的凝血酶切割位点,并确定蛋白水解切割和热不稳定性在调节血凝块中TAFIa活性方面的相对作用。基于对胰蛋白酶的研究,曾有人提出TAFIa的精氨酸-330是凝血酶切割位点,但将该残基突变为谷氨酰胺并不能阻止凝血酶介导的切割,将附近的精氨酸-320残基突变为谷氨酰胺也不行。然而,将精氨酸-302突变为谷氨酰胺则消除了凝血酶介导的TAFIa切割。所有TAFIa变体都易受纤溶酶切割。有趣的是,所有精氨酸到谷氨酰胺的替换都降低了TAFIa的热稳定性。TAFI突变体在体外的抗纤溶潜力与其各自TAFIa物种的热稳定性相关,表明该特性在调节TAFIa活性中起关键作用。在导致该酶完全热失活的条件下孵育TAFIa会加速随后凝血酶和纤溶酶介导的TAFIa切割。此外,凝血酶对TAFIa的切割程度并不影响TAFIa活性的衰减速率。总体而言,这些研究表明TAFIa的热不稳定性而非蛋白水解切割在调节其活性以及抗纤溶潜力方面发挥作用。最后,我们提出了一个TAFIa热不稳定性的模型。