Autin Ludovic, Steen Mårten, Dahlbäck Björn, Villoutreix Bruno O
INSERM U648, University Paris V, Paris, France.
Proteins. 2006 May 15;63(3):440-50. doi: 10.1002/prot.20848.
Activated coagulation factor V (FVa) functions as a cofactor to factor Xa (FXa) in the conversion of prothrombin (PT) to thrombin. This essential procoagulant reaction, despite being the subject of extensive investigation, is not fully understood structurally and functionally. To elucidate the structure of the FXa-FVa complex, we have performed protein:protein (Pr:Pr) docking simulation with the pseudo-Brownian Pr:Pr docking ICM package and with the shape-complementarity Pr:Pr docking program PPD. The docking runs were carried out using a new model of full-length human FVa and the X-ray structure of human FXa. Five representative models of the FXa-FVa complex were in overall agreement with some of the available experimental data, but only one model was found to be consistent with almost all of the reported experimental results. The use of hybrid docking approach (theoretical plus experimental) is definitively important to study such large macromolecular complexes. The FXa-FVa model we have created will be instrumental for further investigation of this macromolecular system and will guide future site directed mutagenesis experiments.
活化凝血因子V(FVa)在凝血酶原(PT)转化为凝血酶的过程中作为因子Xa(FXa)的辅因子发挥作用。尽管这个关键的促凝血反应是广泛研究的主题,但其在结构和功能上仍未被完全理解。为了阐明FXa - FVa复合物的结构,我们使用伪布朗蛋白质 - 蛋白质(Pr:Pr)对接模拟软件ICM包以及形状互补的Pr:Pr对接程序PPD进行了蛋白质 - 蛋白质对接模拟。对接运行使用了全长人FVa的新模型和人FXa的X射线结构。FXa - FVa复合物的五个代表性模型总体上与一些现有实验数据一致,但只有一个模型被发现几乎与所有已报道的实验结果一致。使用混合对接方法(理论加实验)对于研究如此大的大分子复合物绝对重要。我们创建的FXa - FVa模型将有助于进一步研究这个大分子系统,并将指导未来的定点诱变实验。