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变异的凝血因子VIII:从结构到功能的启示

Mutating factor VIII: lessons from structure to function.

作者信息

Fay Philip J, Jenkins P Vincent

机构信息

Department of Biochemistry, School of Medicine, University of Rochester, P.O. Box 712, 601 Elmwood Ave., Rochester, NY 14642, USA.

出版信息

Blood Rev. 2005 Jan;19(1):15-27. doi: 10.1016/j.blre.2004.02.003.

Abstract

Factor VIII, a metal ion-dependent heterodimer, circulates in complex with von Willebrand factor. At sites of vessel wall damage, this procofactor is activated to factor VIIIa by limited proteolysis and assembles onto an anionic phospholipid surface in complex with factor IXa to form the intrinsic factor Xase; an enzyme complex that efficiently converts factor X to factor Xa during the propagation phase of coagulation. Factor Xase activity is down-regulated by mechanisms that include self-dampening by dissociation of a critical factor VIIIa subunit and proteolytic inactivation by the activated protein C pathway. Recent studies identify putative metal ion coordination sites as well as ligands involved in the catabolism of the activated and procofactor forms of the protein. Our knowledge of these multiple intra- and inter-molecular interactions has been facilitated by the application of naturally occurring and site-directed mutations to study factor VIII structure and function. In this review, we document important and novel contributions following this line of investigation.

摘要

凝血因子 VIII 是一种金属离子依赖性异二聚体,与血管性血友病因子结合循环。在血管壁损伤部位,这种前凝血因子通过有限的蛋白水解作用被激活为凝血因子 VIIIa,并与凝血因子 IXa 结合组装到阴离子磷脂表面,形成内源性因子 X 酶复合物;在凝血的传播阶段,该酶复合物可有效地将因子 X 转化为因子 Xa。因子 X 酶活性通过多种机制下调,包括关键的凝血因子 VIIIa 亚基解离导致的自我抑制以及活化蛋白 C 途径的蛋白水解失活。最近的研究确定了假定的金属离子配位位点以及参与该蛋白活化形式和前凝血因子形式分解代谢的配体。通过应用天然存在的和定点突变来研究凝血因子 VIII 的结构和功能,我们对这些多种分子内和分子间相互作用的认识得到了促进。在这篇综述中,我们记录了沿着这一研究方向所做出的重要和新颖的贡献。

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