Department of Biochemistry and Molecular Biology, St. Louis University School of Medicine, St. Louis, MO 63104, USA.
Thromb Haemost. 2012 Dec;108(6):1154-64. doi: 10.1160/TH12-06-0436. Epub 2012 Sep 26.
Factor IXa (FIXa) is a vitamin K-dependent coagulation serine protease which binds to factor VIIIa (FVIIIa) on negatively charged phospholipid vesicles (PCPS) to catalyse the activation of factor X (FX) to factor Xa (FXa) in the intrinsic pathway. Fluorescence resonance energy transfer (FRET) studies have indicated that the Gla-domain-dependent interaction of FIXa and FX with PCPS in the presence of FVIIIa positions the active-site of the protease at an appropriate height above the membrane surface to optimise the catalytic reaction. In this study, we investigated the contribution of the NH2-terminal EGF-domain (EGF1) of FIXa to the recognition specificity of intrinsic tenase by constructing an EGF1 deletion mutant of FIXa (FIXa-desEGF1) and characterising the properties of the mutant in kinetic, direct binding and FRET assays. The results of direct binding and kinetic studies demonstrated that the binding affinity of the mutant for interaction with FVIIIa on PCPS has been impaired greater than 10-fold and the catalytic efficiency of the mutant protease-FVIIIa-PCPS complex in the activation of FX has been decreased ~100-fold. By contrast, the mutant protease exhibited a normal activity toward FX in the absence of the protein cofactor. FRET measurements revealed that the distance of the active-site of the mutant FIXa relative to PCPS vesicles has been decreased 10 Å from 75 ± 2 Å for FIXa to 65 ± 2 Å for FIXa-desEGF1 independent of FVIIIa. These results suggest that the NH2-terminal EGF-domain of FIXa provides a binding-site for FVIIIa and plays an essential spacer function in the intrinsic tenase complex.
IXa 因子(FIXa)是一种维生素 K 依赖性凝血丝氨酸蛋白酶,它与带负电荷的磷脂囊泡(PCPS)上的 VIIIa 因子(FVIIIa)结合,在内在途径中催化因子 X(FX)向因子 Xa(FXa)的激活。荧光共振能量转移(FRET)研究表明,FIXa 和 FX 与 FVIIIa 存在时,Gla 结构域依赖性相互作用将蛋白酶的活性位点置于距膜表面适当高度,以优化催化反应。在这项研究中,我们通过构建 FIXa 的 EGF 结构域(EGF1)缺失突变体(FIXa-desEGF1),研究了 FIXa 的 NH2 末端 EGF 结构域(EGF1)对内在凝血酶原复合物识别特异性的贡献,并在动力学、直接结合和 FRET 测定中对突变体的特性进行了表征。直接结合和动力学研究的结果表明,突变体与 PCPS 上 FVIIIa 的相互作用的结合亲和力降低了 10 倍以上,突变体蛋白酶-FVIIIa-PCPS 复合物在 FX 激活中的催化效率降低了约 100 倍。相比之下,突变体蛋白酶在没有蛋白辅因子的情况下对 FX 表现出正常的活性。FRET 测量显示,突变体 FIXa 的活性位点与 PCPS 囊泡的距离相对于 FIXa 的 75 ± 2 Å 降低了 10 Å,而 FIXa-desEGF1 则独立于 FVIIIa 降低至 65 ± 2 Å。这些结果表明,FIXa 的 NH2 末端 EGF 结构域提供了一个与 FVIIIa 的结合位点,并在内在凝血酶原复合物中发挥了重要的间隔功能。