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预测溶剂影响部位和在亲水性有机溶剂中设计稳定的南极假丝酵母脂肪酶 B。

Prediction of the solvent affecting site and the computational design of stable Candida antarctica lipase B in a hydrophilic organic solvent.

机构信息

Graduate Program of Bioengineering, School of Chemical and Biological Engineering, Seoul National University, Seoul 151-742, Republic of Korea.

出版信息

J Biotechnol. 2013 Feb 10;163(3):346-52. doi: 10.1016/j.jbiotec.2012.11.006. Epub 2012 Nov 21.

Abstract

Enzyme reactions in organic solvent such as for organic synthesis have great industrial potential. However, enzymes lose their stability in hydrophilic organic solvents due to the deformation of the enzyme by the solvent. It is thus important to enhance the stability of enzymes in hydrophilic organic solvents. Previous approaches have not considered on the interaction between enzymes and solvents due to the lack of information. In this study, the structural motions of the enzyme in methanol cosolvent and the interaction between the enzyme surface and the solvent molecule were investigated using molecular dynamics simulation (MD). By analyzing the MD simulation results, the surface residues of Candida antarctica lipase B (CalB) with higher root mean square deviation (RMSD) in a methanol solvent were considered as methanol affecting site and selected for site-directed mutagenesis. The methanol affecting site was computationally redesigned by lowering the RMSD. Among the candidate mutants, the A8T, A92E, N97Q and T245S mutants showed higher organic solvent stability at various methanol concentrations. The rational approach developed in this study could be applied to the stabilization of other industrial enzymes used in organic solvents.

摘要

有机溶剂中的酶反应在有机合成等方面具有巨大的工业潜力。然而,由于溶剂使酶变形,酶在亲水性有机溶剂中失去稳定性。因此,提高酶在亲水性有机溶剂中的稳定性非常重要。由于缺乏信息,以前的方法没有考虑酶和溶剂之间的相互作用。在这项研究中,使用分子动力学模拟(MD)研究了甲醇共溶剂中酶的结构运动和酶表面与溶剂分子之间的相互作用。通过分析 MD 模拟结果,考虑到甲醇影响位点的 Candida antarctica lipase B(CalB)表面残基在甲醇溶剂中的均方根偏差(RMSD)较高,并选择用于定点突变。通过降低 RMSD 对甲醇影响位点进行了计算上的重新设计。在候选突变体中,A8T、A92E、N97Q 和 T245S 突变体在不同甲醇浓度下显示出更高的有机溶剂稳定性。本研究中开发的合理方法可应用于稳定其他在有机溶剂中使用的工业酶。

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