Rezaie A R, Esmon C T
Howard Hughes Medical Institute, University of Oklahoma Health Sciences Center, Oklahoma City 73104.
J Biol Chem. 1992 Dec 25;267(36):26104-9.
Protein C activation is catalyzed on endothelium by a complex between thrombin and thrombomodulin. Ca2+ stimulates protein C activation in the presence, and inhibits in the absence, of thrombomodulin. Protein C has Asp residues at the P3 and P3' positions relative to the scissile bond at Arg169-Leu. To determine the contribution of these residues to the Ca2+ effect on activation, we have expressed human 4-carboxyglutamic acid (Gla)-domainless protein C and 3 mutants with Asp-->Gly substitutions at P3, P3', and both positions. Ca2+ interaction with the protein C derivatives was monitored by changes in intrinsic fluorescence, and the Ca2+ dependence of activation by thrombin and a complex of thrombin-thrombomodulin with a soluble thrombomodulin derivative (the fourth through sixth epidermal growth factor domains). The affinity for Ca2+ of the mutants was reduced 3-6-fold, which was reflected by a comparable change in the Ca2+ concentration required for the half-maximal rate of activation by the thrombin-thrombomodulin complex. However, Ca2+ no longer effectively inhibited activation of the mutants by thrombin alone. We conclude that 1) the Asp residues play a specific role in the Ca(2+)-dependent inhibition of protein C activation by thrombin; 2) these mutations alter the affinity of Ca2+ for the high affinity binding site; and 3) the Asp residues in the P3 and P3' sites do not contribute in a positive fashion to rapid activation by the thrombin-thrombomodulin complex.
蛋白C的激活由凝血酶与血栓调节蛋白在内皮细胞上形成的复合物催化。在有血栓调节蛋白存在时,Ca2+刺激蛋白C的激活,而在无血栓调节蛋白时则抑制其激活。相对于精氨酸169-亮氨酸处的裂解键,蛋白C在P3和P3'位置有天冬氨酸残基。为了确定这些残基对Ca2+激活作用的贡献,我们表达了人无4-羧基谷氨酸(Gla)结构域的蛋白C以及3种在P3、P3'或两个位置都将天冬氨酸替换为甘氨酸的突变体。通过内在荧光的变化监测Ca2+与蛋白C衍生物的相互作用,以及凝血酶和凝血酶-血栓调节蛋白复合物与可溶性血栓调节蛋白衍生物(第四至第六个表皮生长因子结构域)激活的Ca2+依赖性。突变体对Ca2+的亲和力降低了3至6倍,这反映在凝血酶-血栓调节蛋白复合物激活半最大速率所需的Ca2+浓度有类似变化。然而,Ca2+不再能有效抑制凝血酶单独对突变体的激活。我们得出结论:1)天冬氨酸残基在凝血酶对蛋白C激活的Ca2+依赖性抑制中起特定作用;2)这些突变改变了Ca2+对高亲和力结合位点的亲和力;3)P3和P3'位点的天冬氨酸残基对凝血酶-血栓调节蛋白复合物的快速激活没有正向贡献。