Hosokawa K, Ohnishi T, Shima M, Nagata M, Koide T
Department of Life Science, Faculty of Science, Himeji Institute of Technology, Harima Science Garden City, Hyogo 678-1297, Japan.
Biochem J. 2001 Mar 1;354(Pt 2):309-13. doi: 10.1042/0264-6021:3540309.
Thrombin is a serine proteinase that plays a key role in thrombosis and haemostasis through its interaction with several coagulation factors. Anhydrothrombin was prepared from PMSF-inactivated thrombin under alkaline conditions, and the folded anhydrothrombin was successfully recovered after dialysis in the presence of glycerol. Anhydro-derivatives of factor Xa, factor VIIa and activated protein C could also be prepared essentially by the same procedure. Anhydrothrombin retained affinity for various natural substrates of thrombin, including fibrinogen, factor VIII, factor XIII and protein C. In addition, these proteins were bound to anhydrothrombin-agarose in a reversible manner. The K(d) values for factor VIII, fibrinogen, factor XIII and protein C were 1.2x10(-8), 4.4x10(-8), 2.8x10(-7) and 8.1x10(-5) M, respectively. Thus thrombin substrates known to interact with the exosite I of thrombin demonstrated high affinity for anhydrothrombin. Furthermore, in the presence of Na+, substantial enhancement of the association rate constant (k(ass)) was observed for interactions of fibrinogen and factor VIII with anhydrothrombin. These results suggest that anhydrothrombin is useful in the purification of thrombin substrate proteins as well as in the investigation of detailed interactions between thrombin and these substrates in their activation or degradation processes.
凝血酶是一种丝氨酸蛋白酶,通过与多种凝血因子相互作用,在血栓形成和止血过程中发挥关键作用。在碱性条件下,由苯甲基磺酰氟(PMSF)灭活的凝血酶制备去水凝血酶,在甘油存在下透析后成功回收折叠的去水凝血酶。因子Xa、因子VIIa和活化蛋白C的去水衍生物也基本上可以通过相同的程序制备。去水凝血酶对凝血酶的各种天然底物,包括纤维蛋白原、因子VIII、因子XIII和蛋白C,保持亲和力。此外,这些蛋白质以可逆方式与去水凝血酶琼脂糖结合。因子VIII、纤维蛋白原、因子XIII和蛋白C的解离常数(K(d))值分别为1.2×10⁻⁸、4.4×10⁻⁸、2.8×10⁻⁷和8.1×10⁻⁵ M。因此,已知与凝血酶外位点I相互作用的凝血酶底物对去水凝血酶表现出高亲和力。此外,在Na⁺存在下,观察到纤维蛋白原和因子VIII与去水凝血酶相互作用的结合速率常数(k(ass))大幅增强。这些结果表明,去水凝血酶在凝血酶底物蛋白的纯化以及研究凝血酶与这些底物在其激活或降解过程中的详细相互作用方面是有用的。