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凝血因子X第一个表皮生长因子样结构域的功能分析

Analysis of the functions of the first epidermal growth factor-like domain of factor X.

作者信息

Rezaie A R, Neuenschwander P F, Morrissey J H, Esmon C T

机构信息

Howard Hughes Medical Institute, University of Oklahoma Health Sciences Center, Oklahoma City 73104.

出版信息

J Biol Chem. 1993 Apr 15;268(11):8176-80.

PMID:8463328
Abstract

Upon activation, factor X participates in the prothrombin activation complex. Similar to 4-carboxyglutamic acid (Gla)-domainless protein C, the Gla-domainless factor X (GDFX) contains a high affinity Ca(2+)-binding site critical for the function of these molecules. In the case of protein C, we recently demonstrated that the high affinity Ca(2+)-binding site critical for activation is outside the first epidermal growth factor (EGF) homology domain. To examine if this is also true for factor X, we have expressed in human 293 cells a deletion mutant of factor X (E2FX) which lacks the entire Gla region as well as the NH2-terminal EGF homology region of factor X. Direct binding studies by equilibrium dialysis indicate that E2FX contains a single Ca(2+)-binding site with a dissociation constant (Kd) of 154 +/- 48 microM. The functional properties of E2FX are equivalent or improved over those of GDFX. For instance, the factor X coagulant protein of Russell's viper venom activates E2FX three times faster than recombinant GDFX. Kinetic analysis of prothrombin activation in the absence of membranes indicates that activated GDFX and E2FX bind to factor Va with equal affinity (Kd = 4.1 microM). The Ca2+ concentration required for half-maximal prothrombin activation rates in the above activation system shifted from 721 +/- 113 microM for activated GDFX to 193 +/- 64 microM for activated E2FX. GDFX and E2FX activation rates with the soluble tissue factor-factor VIIa complex were identical as was the Ca2+ dependence of the reaction. We conclude that E2FX retains a high affinity Ca(2+)-binding site and that the first EGF homology domain does not appear to have a positive functional role in the GDFX molecule. However, Ca2+ occupancy of the Ca(2+)-binding site in the first EGF domain of intact factor X may be essential for optimal prothrombin activation.

摘要

激活后,因子X参与凝血酶原激活复合物。与无4-羧基谷氨酸(Gla)结构域的蛋白C相似,无Gla结构域的因子X(GDFX)含有一个对这些分子功能至关重要的高亲和力Ca(2+)结合位点。就蛋白C而言,我们最近证明,对激活至关重要的高亲和力Ca(2+)结合位点位于第一个表皮生长因子(EGF)同源结构域之外。为了研究因子X是否也是如此,我们在人293细胞中表达了因子X的缺失突变体(E2FX),它缺乏因子X的整个Gla区域以及NH2末端的EGF同源区域。通过平衡透析进行的直接结合研究表明,E2FX含有一个单一的Ca(2+)结合位点,解离常数(Kd)为154±48微摩尔。E2FX的功能特性与GDFX相当或有所改善。例如,罗素蝰蛇毒的因子X凝血蛋白激活E2FX的速度比重组GDFX快三倍。在无膜情况下对凝血酶原激活的动力学分析表明,活化的GDFX和E2FX以相等的亲和力(Kd = 4.1微摩尔)与因子Va结合。上述激活系统中凝血酶原激活率达到半数最大值所需的Ca2+浓度从活化GDFX的721±113微摩尔转变为活化E2FX的193±64微摩尔。GDFX和E2FX与可溶性组织因子-因子VIIa复合物的激活率相同,反应对Ca2+的依赖性也相同。我们得出结论,E2FX保留了一个高亲和力Ca(2+)结合位点,并且第一个EGF同源结构域在GDFX分子中似乎没有积极的功能作用。然而,完整因子X的第一个EGF结构域中Ca(2+)结合位点的Ca2+占据情况可能对凝血酶原的最佳激活至关重要。

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