首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Molecular Basis of Enhanced Activity in Factor VIIa-Trypsin Variants Conveys Insights into Tissue Factor-mediated Allosteric Regulation of Factor VIIa Activity
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Molecular Basis of Enhanced Activity in Factor VIIa-Trypsin Variants Conveys Insights into Tissue Factor-mediated Allosteric Regulation of Factor VIIa Activity

机译:因子VIIa-胰蛋白酶变体中增强活性的分子基础传达了对组织因子介导的因子VIIa活性的变构调节的见解。

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摘要

The complex of coagulation factor VIIa (FVIIa), a trypsin-like serine protease, and membrane-bound tissue factor (TF) initiates blood coagulation upon vascular injury. Binding of TF to FVIIa promotes allosteric conformational changes in the FVIIa protease domain and improves its catalytic properties. Extensive studies have revealed two putative pathways for this allosteric communication. Here we provide further details of this allosteric communication by investigating FVIIa loop swap variants containing the 170 loop of trypsin that display TF-independent enhanced activity. Using x-ray crystallography, we show that the introduced 170 loop from trypsin directly interacts with the FVIIa active site, stabilizing segment 215–217 and activation loop 3, leading to enhanced activity. Molecular dynamics simulations and novel fluorescence quenching studies support that segment 215–217 conformation is pivotal to the enhanced activity of the FVIIa variants. We speculate that the allosteric regulation of FVIIa activity by TF binding follows a similar path in conjunction with protease domain N terminus insertion, suggesting a more complete molecular basis of TF-mediated allosteric enhancement of FVIIa activity.
机译:凝血因子VIIa(FVIIa),胰蛋白酶样丝氨酸蛋白酶和膜结合组织因子(TF)的复合物在血管损伤时启动血液凝结。 TF与FVIIa的结合促进FVIIa蛋白酶结构域的变构构象变化,并改善其催化性能。广泛的研究揭示了这种变构通讯的两种假定途径。在这里,我们通过研究包含170环胰蛋白酶的FVIIa环置换变体,提供了这种变构通讯的进一步细节,该变体显示TF非依赖性增强的活性。使用X射线晶体学,我们显示了从胰蛋白酶引入的170环与FVIIa活性位点直接相互作用,稳定了区段215-217和激活环3,从而增强了活性。分子动力学模拟和新颖的荧光猝灭研究支持215-217节构象对于FVIIa变体增强活性至关重要。我们推测通过TF结合的FVIIa活性的变构调节与蛋白酶域N末端插入结合遵循一条相似的路径,这暗示了TF介导的FVIIa活性的变构增强的更完整的分子基础。

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