Brinkman H J M, Mertens K, van Mourik J A
Department of Plasma Proteins, Sanquin Research, Amsterdam, The Netherlands.
J Thromb Haemost. 2005 Dec;3(12):2712-20. doi: 10.1111/j.1538-7836.2005.01647.x.
Protein S is a vitamin K-dependent protein with anticoagulant properties. It contains a so-called thrombin-sensitive region (TSR), which is susceptible to cleavage by coagulation factor Xa (FXa) and thrombin. Upon cleavage, the anticoagulant activity of protein S is abolished.
The aim of the present study was to determine whether protein S is cleaved within the TSR during activation of the coagulation system under near physiological conditions.
In a reconstituted coagulation system containing apart from protein S only procoagulant constituents and synthetic phospholipid vesicles, protein S was cleaved at Arg60 by the FXa generated (3 mol min(-1) mol(-1) enzyme). FXa-catalyzed cleavage of protein S, however, was inhibited by factor Va and prothrombin by more than 70%. During clotting of recalcified citrated plasma in the presence of a synthetic lipid membrane, no FXa-catalyzed proteolysis of protein S was observed. Substituting platelets for phospholipid vesicles resulted both in the reconstituted system and in plasma in cleavage of the TSR. Cleavage was at Arg60 and was observed upon platelet activation, irrespective of the presence of FXa (13 pmol min(-1) 10(-8) platelets). No cleavage by thrombin was observed in either the reconstituted coagulation system or clotting plasma.
These findings suggest that in vivo the anticoagulant activity of protein S is not down-regulated by FXa or thrombin during activation of coagulation. Our results rather suggest a role for a platelet protease in down-regulating the anticoagulant activity of protein S during the hemostatic response.
蛋白S是一种具有抗凝特性的维生素K依赖蛋白。它包含一个所谓的凝血酶敏感区(TSR),易受凝血因子Xa(FXa)和凝血酶的切割。切割后,蛋白S的抗凝活性丧失。
本研究旨在确定在接近生理条件下凝血系统激活过程中蛋白S是否在TSR内被切割。
在一个除蛋白S外仅含有促凝成分和合成磷脂囊泡的重组凝血系统中,蛋白S被生成的FXa(3 mol min(-1) mol(-1)酶)在Arg60处切割。然而,FXa催化的蛋白S切割被因子Va和凝血酶原抑制了70%以上。在存在合成脂质膜的情况下,重新钙化的枸橼酸血浆凝血过程中,未观察到FXa催化的蛋白S蛋白水解。用血小板替代磷脂囊泡,在重组系统和血浆中均导致TSR的切割。切割发生在Arg60处,且在血小板激活时观察到,与FXa的存在无关(13 pmol min(-1) 10(-8)血小板)。在重组凝血系统或凝血血浆中均未观察到凝血酶的切割。
这些发现表明,在体内凝血激活过程中,蛋白S的抗凝活性不会被FXa或凝血酶下调。我们的结果反而表明,在止血反应过程中,一种血小板蛋白酶在下调蛋白S的抗凝活性中起作用。