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凝血因子V C2结构域中D2194G突变的理论与实验研究

Theoretical and experimental study of the D2194G mutation in the C2 domain of coagulation factor V.

作者信息

Miteva M A, Brugge J M, Rosing J, Nicolaes G A F, Villoutreix B O

机构信息

French National Institute of Health and Medical Research (INSERM) U428, University Paris V, 75006 Paris, France.

出版信息

Biophys J. 2004 Jan;86(1 Pt 1):488-98. doi: 10.1016/S0006-3495(04)74127-2.

Abstract

Coagulation factor V (FV) is a large plasma glycoprotein with functions in both the pro- and anticoagulant pathways. In carriers of the so-called R2-FV haplotype, the FV D2194G mutation, in the C2 membrane-binding domain, is associated with low expression levels, suggesting a potential folding/stability problem. To analyze the molecular mechanisms potentially responsible for this in vitro phenotype, we used molecular dynamics (MD) and continuum electrostatic calculations. Implicit solvent simulations were performed on the x-ray structure of the wild-type C2 domain and on a model of the D2194G mutant. Because D2194 is located next to a disulfide bond (S-S bond), MD calculations were also performed on S-S bond depleted structures. D2194 is part of a salt-bridge network and investigations of the stabilizing/destabilizing role of these ionic interactions were carried out. Five mutant FV molecules were created and the expression levels measured with the aim of assessing the tolerance to amino acid changes in this region of molecule. Analysis of the MD trajectories indicated increased flexibility in some areas and energetic comparisons suggested overall destabilization of the structure due to the D2194G mutation. This substitution causes electrostatic destabilization of the domain by approximately 3 kcal/mol. Together these effects likely explain the lowered expression levels in R2-FV carriers.

摘要

凝血因子V(FV)是一种大型血浆糖蛋白,在促凝和抗凝途径中均发挥作用。在所谓的R2-FV单倍型携带者中,C2膜结合域中的FV D2194G突变与低表达水平相关,提示可能存在折叠/稳定性问题。为了分析可能导致这种体外表型的分子机制,我们使用了分子动力学(MD)和连续静电计算。对野生型C2结构域的X射线结构和D2194G突变体模型进行了隐式溶剂模拟。由于D2194位于二硫键(S-S键)旁边,因此也对去除S-S键的结构进行了MD计算。D2194是盐桥网络的一部分,并对这些离子相互作用的稳定/去稳定作用进行了研究。创建了五个突变FV分子并测量了表达水平,以评估该分子区域对氨基酸变化的耐受性。MD轨迹分析表明某些区域的灵活性增加,能量比较表明由于D2194G突变导致结构整体不稳定。这种取代导致该结构域的静电不稳定约3千卡/摩尔。这些效应共同可能解释了R2-FV携带者中表达水平的降低。

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