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凝血因子Va上靠近精氨酸506激活蛋白C裂解位点的凝血因子Xa结合位点的特征分析。

Characterization of a factor Xa binding site on factor Va near the Arg-506 activated protein C cleavage site.

作者信息

Gale Andrew J, Yegneswaran Subramanian, Xu Xiao, Pellequer Jean-Luc, Griffin John H

机构信息

Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

J Biol Chem. 2007 Jul 27;282(30):21848-55. doi: 10.1074/jbc.M702192200. Epub 2007 Jun 6.

Abstract

Prothrombin is proteolytically activated by the prothrombinase complex comprising the serine protease Factor (F) Xa complexed with its cofactor, FVa. Based on inhibition of the prothrombinase complex by synthetic peptides, FVa residues 493-506 were proposed as a FXa binding site. FVa is homologous to FVIIIa, the cofactor for the FIXa protease, in the FX-activating complex, and FVIIIa residues 555-561 (homologous to FVa residues 499-506) are recognized as a FIXa binding sequence. To test the hypothesis that FVa residues 499-505 contribute to FXa binding, we created the FVa loop swap mutant (designated 499-505(VIII) FV) with residues 499-505 replaced by residues 555-561 of FVIIIa, which differ at five of seven positions. Based on kinetic measurements and spectroscopic titrations, this FVa loop swap mutant had significantly reduced affinity for FXa. The fully formed prothrombinase complex containing this FVa mutant had fairly normal kinetic parameters (k(cat) and K(m)) for cleavage of prothrombin at Arg-320. However, small changes in both Arg-320 and Arg-271 cleavage rates result together in a moderate change in the pathway of prothrombin activation. Although residues 499-505 directly precede the Arg-506 cleavage site for activated protein C (APC), the 499-505(VIII) FVa mutant was inactivated entirely normally by APC. These results suggest that this A2 domain sequence of the FVa and FVIIIa cofactors evolved to have different specificity for binding FXa and FIXa while retaining compatibility as substrate for APC. In an updated three-dimensional model for the FVa structure, residues 499-505, along with Arg-506, Arg-306, and other previously suggested FXa binding sequences, delineate a continuous surface on the A2 domain that is strongly implicated as an extended FXa binding surface in the prothrombinase complex.

摘要

凝血酶原由凝血酶原酶复合物进行蛋白水解激活,该复合物由丝氨酸蛋白酶因子(F)Xa与其辅因子FVa复合而成。基于合成肽对凝血酶原酶复合物的抑制作用,FVa的493 - 506位残基被认为是FXa的结合位点。FVa与FIXa蛋白酶的辅因子FVIIIa同源,存在于FX激活复合物中,FVIIIa的555 - 561位残基(与FVa的499 - 506位残基同源)被认为是FIXa的结合序列。为了验证FVa的499 - 505位残基有助于FXa结合这一假说,我们构建了FVa环交换突变体(命名为499 - 505(VIII) FV),其中499 - 505位残基被FVIIIa的555 - 561位残基取代,这七个位置中有五个不同。基于动力学测量和光谱滴定,该FVa环交换突变体对FXa的亲和力显著降低。含有此FVa突变体的完全形成的凝血酶原酶复合物在切割凝血酶原的精氨酸-320位点时具有相当正常的动力学参数(催化常数k(cat)和米氏常数K(m))。然而,精氨酸-320和精氨酸-271切割速率的微小变化共同导致了凝血酶原激活途径的适度改变。尽管499 - 505位残基直接位于活化蛋白C(APC)的精氨酸-506切割位点之前,但499 - 505(VIII) FVa突变体被APC完全正常地灭活。这些结果表明,FVa和FVIIIa辅因子的这一A2结构域序列在进化过程中对FXa和FIXa的结合具有不同的特异性,同时保留了作为APC底物的兼容性。在更新的FVa结构三维模型中,499 - 505位残基与精氨酸-506、精氨酸-306以及其他先前提出的FXa结合序列一起,在A2结构域上描绘出一个连续的表面,在凝血酶原酶复合物中该表面被强烈认为是一个扩展的FXa结合表面。

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