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Role of Hydrophobic Mutations on the Binding Affinity and Stability of Blood Coagulation Factor VIIIa: A Computational Molecular Dynamics and Free-Energy Analysis

机译:疏水性突变对凝血因子VIIIa结合亲和力和稳定性的作用:计算分子动力学和自由能分析

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摘要

Factor VIIIa is a non-covalently bound hetero-trimer among A1, A2 and A3-C1-C2 domains and an essential co-factor for factor IXa enzyme during proteolytic activation of factor X zymogen. The relatively weak interactions between A2 and the interface A1/A3 domains dampen the functional stability of FVIIIa in plasma and results in rapid degradation. We studied the mutational effect of three charged residues (Asp519, Glu665 and Asp666) to several hydrophobic residues by molecular dynamics simulations. Analysis of the binding free energy by MM-PBSA and MM-GBSA methods shows that the mutation of Asp519 and Glu665 residues to either Val or Ala enhance the A2 domain binding affinity in agreement with the experimental site-specific mutagenesis data. Mutation of Asp666 to Val, Tyr, Met and Phe showed largest improvement in the A2-domain binding among the eight hydrophobic mutants studied. Our studies suggest that the enrichment of hydrophobic interactions in the buried surface regions of A2 domain plays crucial role in improving the overall stability of FVIIIa.
机译:因子VIIIa是A1,A2和A3-C1-C2域之间的非共价结合的异三聚体,是在因子X酶原的蛋白水解激活过程中因子IXa酶的必需辅助因子。 A2和界面A1 / A3域之间相对较弱的相互作用削弱了FVIIIa在血浆中的功能稳定性,并导致快速降解。我们通过分子动力学模拟研究了三个带电残基(Asp519,Glu665和Asp666)对几个疏水残基的突变作用。 MM-PBSA和MM-GBSA方法对结合自由能的分析表明,Asp519和Glu665残基突变为Val或Ala的突变增强了A2域结合亲和力,与实验位点特异性诱变数据一致。 Asp666突变为Val,Tyr,Met和Phe的突变在研究的8种疏水性突变株中显示出最大的A2结构域结合改善。我们的研究表明,A2结构域的隐埋表面区域中疏水相互作用的富集在改善FVIIIa的整体稳定性中起着至关重要的作用。

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