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野生型和突变型对氧磷酶-1脱辅基酶形式比较中的分子动力学方法

Molecular Dynamics Approach in the Comparison of Wild-Type and Mutant Paraoxonase-1 Apoenzyme Form.

作者信息

Amine Khadija, Miri Lamia, Naimi Adil, Saile Rachid, El Kharrim Abderrahmane, Mikou Afaf, Kettani Anass

机构信息

Laboratoire de Biologie et Santé (URAC34), Département de Biologie, Faculté des Sciences Ben Msik, Université Hassan II de Casablanca, Maroc.

l'Association Marocaine pour la Promotion du Logiciel Libre (AMP2L), Maroc.

出版信息

Bioinform Biol Insights. 2015 Sep 13;9:129-40. doi: 10.4137/BBI.S25626. eCollection 2015.

Abstract

There is some evidence linking the mammalian paraoxonase-1 (PON1) loops (L1 and L2) to an increased flexibility and reactivity of its active site with potential substrates. The aim of this work is to study the structural, dynamical, and functional effects of the most flexible regions close to the active site and to determine the impact of mutations on the protein. For both models, wild-type (PON1wild) and PON1 mutant (PON1mut) models, the L1 loop and Q/R and L/M mutations were constructed using MODELLER software. Molecular dynamics simulations of 20 ns at 300 K on fully modeled PON1wild and PON1mut apoenzyme have been done. Detailed analyses of the root-mean-square deviation and fluctuations, H-bonding pattern, and torsion angles have been performed. The PON1wild results were then compared with those obtained for the PON1mut. Our results show that the active site in the wild-type structure is characterized by two distinct movements of opened and closed conformations of the L1 and L2 loops. The alternating and repetitive movement of loops at specific times is consistent with the presence of 11 defined hydrogen bonds. In the PON1mut, these open-closed movements are therefore totally influenced and repressed by the Q/R and L/M mutations. In fact, these mutations seem to impact the PON1mut active site by directly reducing the catalytic core flexibility, while maintaining a significant mobility of the switch regions delineated by the loops surrounding the active site. The impact of the studied mutations on structure and dynamics proprieties of the protein may subsequently contribute to the loss of both flexibility and activity of the PON1 enzyme.

摘要

有证据表明,哺乳动物对氧磷酶-1(PON1)的环(L1和L2)与其活性位点对潜在底物的灵活性和反应性增加有关。这项工作的目的是研究靠近活性位点的最灵活区域的结构、动力学和功能影响,并确定突变对该蛋白质的影响。对于野生型(PON1wild)和PON1突变体(PON1mut)这两种模型,使用MODELLER软件构建了L1环以及Q/R和L/M突变。在300 K下对完全建模的PON1wild和PON1mut脱辅基酶进行了20 ns的分子动力学模拟。对均方根偏差和波动、氢键模式以及扭转角进行了详细分析。然后将PON1wild的结果与PON1mut的结果进行比较。我们的结果表明,野生型结构中的活性位点具有L1和L2环的开放和闭合构象的两种不同运动特征。环在特定时间的交替和重复运动与11个确定的氢键的存在一致。在PON1mut中,这些开闭运动因此完全受到Q/R和L/M突变的影响和抑制。事实上,这些突变似乎通过直接降低催化核心的灵活性来影响PON1mut的活性位点,同时保持由活性位点周围的环所划定的开关区域的显著流动性。所研究的突变对蛋白质结构和动力学性质的影响可能随后导致PON1酶的灵活性和活性丧失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e89/4571988/e810f9fea689/bbi-9-2015-129f1.jpg

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