Petersen L C, Olsen O H, Nielsen L S, Freskgård P O, Persson E
Tissue Factor/Factor VII Research, Novo Nordisk A/S, Måløv, Denmark.
Protein Sci. 2000 May;9(5):859-66. doi: 10.1110/ps.9.5.859.
The protease domain of coagulation factor VIIa (FVIIa) is homologous to trypsin with a similar active site architecture. The catalytic function of FVIIa is regulated by allosteric modulations induced by binding of divalent metal ions and the cofactor tissue factor (TF). To further elucidate the mechanisms behind these transformations, the effects of Zn2+ binding to FVIIa in the free form and in complex with TF were investigated. Equilibrium dialysis suggested that two Zn2+ bind with high affinity to FVIIa outside the N-terminal gamma-carboxyglutamic acid (Gla) domain. Binding of Zn2+ to FVIIa, which was influenced by the presence of Ca2+, resulted in decreased amidolytic activity and slightly reduced affinity for TF. After binding to TF, FVIIa was less susceptible to zinc inhibition. Alanine substitutions for either of two histidine residues unique for FVIIa, His216, and His257, produced FVIIa variants with decreased sensitivity to Zn2+ inhibition. A search for putative Zn2+ binding sites in the crystal structure of the FVIIa protease domain was performed by Grid calculations. We identified a pair of Zn2+ binding sites in the Glu210-Glu220 Ca2+ binding loop adjacent to the so-called activation domain canonical to serine proteases. Based on our results, we propose a model that describes the conformational changes underlying the Zn2+-mediated allosteric down-regulation of FVIIa's activity.
凝血因子VIIa(FVIIa)的蛋白酶结构域与胰蛋白酶同源,具有相似的活性位点结构。FVIIa的催化功能受二价金属离子和辅因子组织因子(TF)结合诱导的变构调节。为了进一步阐明这些转变背后的机制,研究了Zn2+以游离形式和与TF形成复合物的形式与FVIIa结合的影响。平衡透析表明,两个Zn2+以高亲和力结合到N端γ-羧基谷氨酸(Gla)结构域之外的FVIIa上。Zn2+与FVIIa的结合受Ca2+存在的影响,导致酰胺水解活性降低,对TF的亲和力略有降低。与TF结合后,FVIIa对锌抑制的敏感性降低。将FVIIa特有的两个组氨酸残基之一His216和His257替换为丙氨酸,产生了对Zn2+抑制敏感性降低的FVIIa变体。通过网格计算在FVIIa蛋白酶结构域的晶体结构中寻找假定的Zn2+结合位点。我们在与丝氨酸蛋白酶所谓的激活结构域相邻的Glu210-Glu220 Ca2+结合环中鉴定出一对Zn2+结合位点。基于我们的结果,我们提出了一个模型,该模型描述了Zn2+介导的FVIIa活性变构下调背后的构象变化。