Rezaie A R, Mather T, Sussman F, Esmon C T
Oklahoma Medical Research Foundation, Oklahoma City 73104.
J Biol Chem. 1994 Feb 4;269(5):3151-4.
Binding Ca2+ to a high affinity site in protein C and Gla-domainless protein C (protein C lacking residues 1-44) results in a conformational change that is required for activation by the thrombin-thrombomodulin complex, the natural activator of protein C. Protein C modeling studies suggested the single high affinity Ca2+ binding-site might be present in a loop in the protease domain and involve Glu-70 and -80 (chymotrypsin numbering system). This loop, which is a known Ca(2+)-binding site in trypsin, is also conserved in other coagulation proteases, including factors VII, IX,and X. In thrombin, which does not bind Ca2+, Glu-70 is replaced by Lys, creating an internal salt bridge with Glu-80. We constructed and expressed a Gla-domainless protein C mutant in which Glu-80 is replaced with Lys. The activation of the resultant mutant is accelerated by thrombomodulin in a Ca(2+)-independent fashion. Unlike wild type Gla-domainless protein C, Ca2+ no longer inhibits activation of the mutant by free thrombin, and Ca2+ stimulation of chromogenic activity is also absent. The characteristic Ca(2+)-dependent quenching of Gla-domainless protein C intrinsic fluorescence is also absent in the mutant. We conclude that the high affinity Ca(2+)-binding site in protein C critical for zymogen activation involves Glu-80. The Glu-80 to Lys mutation probably results in a salt bridge with Glu-70 that stabilizes protein C zymogen in a conformation similar, if not identical, to the Ca(2+)-stabilized conformation favorable for rapid activation by the thrombin-thrombomodulin complex.
钙离子与蛋白C和无Gla结构域的蛋白C(缺少1 - 44位残基的蛋白C)中的高亲和力位点结合,会导致构象变化,而这种构象变化是凝血酶 - 血栓调节蛋白复合物(蛋白C的天然激活剂)激活蛋白C所必需的。蛋白C的建模研究表明,单一的高亲和力钙离子结合位点可能存在于蛋白酶结构域的一个环中,涉及谷氨酸 - 70和 - 80(胰凝乳蛋白酶编号系统)。这个环是胰蛋白酶中已知的钙离子结合位点,在其他凝血蛋白酶中也保守,包括因子VII、IX和X。在不结合钙离子的凝血酶中,谷氨酸 - 70被赖氨酸取代,与谷氨酸 - 80形成一个内部盐桥。我们构建并表达了一个无Gla结构域的蛋白C突变体,其中谷氨酸 - 80被赖氨酸取代。所得突变体的激活被血栓调节蛋白以不依赖钙离子的方式加速。与野生型无Gla结构域的蛋白C不同,钙离子不再抑制游离凝血酶对突变体的激活,并且也不存在钙离子对显色活性的刺激。突变体中也不存在无Gla结构域的蛋白C固有荧光的特征性钙离子依赖性淬灭。我们得出结论,蛋白C中对酶原激活至关重要的高亲和力钙离子结合位点涉及谷氨酸 - 80。谷氨酸 - 80突变为赖氨酸可能导致与谷氨酸 - 70形成盐桥,从而将蛋白C酶原稳定在一种与有利于凝血酶 - 血栓调节蛋白复合物快速激活的钙离子稳定构象相似(如果不是相同)的构象中。