Manetti F, Mileto D, Corelli F, Soro S, Palocci C, Cernia E, D'Acquarica I, Lotti M, Alberghina L, Botta M
Dipartimento Farmaco Chimico Tecnologico, Università degli Studi di Siena, Via Aldo Moro snc, I-53100 Siena, Italy.
Biochim Biophys Acta. 2000 Nov 30;1543(1):146-58. doi: 10.1016/s0167-4838(00)00185-0.
Within a research project aimed at probing the substrate specificity and the enantioselectivity of Candida rugosa lipase (CRL), computer modeling studies of the interactions between CRL and methyl (+/-)-2-(3-benzoylphenyl)propionate (Ketoprofen methyl ester) have been carried out in order to identify which amino acids are essential to the enzyme/substrate interaction. Different binding models of the substrate enantiomers to the active site of CRL were investigated by applying a computational protocol based on molecular docking, conformational analysis, and energy minimization procedures. The structural models of the computer generated complexes between CRL and the substrates enabled us to propose that Phe344 and Phe345, in addition to the residues constituting the catalytic triad and the oxyanion hole, are the amino acids mainly involved in the enzyme-ligand interactions. To test the importance of these residues for the enzymatic activity, site-directed mutagenesis of the selected amino acids has been performed, and the mutated enzymes have been evaluated for their conversion and selectivity capabilities toward different substrates. The experimental results obtained in these biotransformation reactions indicate that Phe344 and especially Phe345 influence CRL activity, supporting the findings of our theoretical simulations.
在一个旨在探究皱褶假丝酵母脂肪酶(CRL)的底物特异性和对映选择性的研究项目中,已开展了CRL与(±)-2-(3-苯甲酰基苯基)丙酸甲酯(酮洛芬甲酯)之间相互作用的计算机建模研究,以确定哪些氨基酸对于酶/底物相互作用至关重要。通过应用基于分子对接、构象分析和能量最小化程序的计算方案,研究了底物对映体与CRL活性位点的不同结合模型。计算机生成的CRL与底物之间复合物的结构模型使我们能够提出,除了构成催化三联体和氧阴离子洞的残基外,Phe344和Phe345是主要参与酶-配体相互作用的氨基酸。为了测试这些残基对酶活性的重要性,已对选定氨基酸进行了定点诱变,并对突变酶针对不同底物的转化和选择性能力进行了评估。在这些生物转化反应中获得的实验结果表明,Phe344尤其是Phe345会影响CRL活性,这支持了我们理论模拟的结果。