Reinen Jelle, van Hemert Daniel, Vermeulen Nico P E, Commandeur Jan N M
Division of Molecular Toxicology, Amsterdam Institute for Molecules, Medicines and Systems, Faculty of Sciences, VU University Amsterdam, Amsterdam, The Netherlands.
Division of Molecular Toxicology, Amsterdam Institute for Molecules, Medicines and Systems, Faculty of Sciences, VU University Amsterdam, Amsterdam, The Netherlands
J Biomol Screen. 2015 Dec;20(10):1246-55. doi: 10.1177/1087057115607183. Epub 2015 Sep 22.
A novel methodology is presented to investigate the organic solvent tolerability of cytochrome P450 monooxygenase BM3 (CYP BM3) mutants. A fluorescence-based continuous-flow enzyme activity detection (EAD) setup was used to screen the activity of CYP BM3 mutants in the presence of organic solvents. The methodology is based on the CYP BM3-mediated O-dealkylation of benzyloxyresorufin to form the highly fluorescent product resorufin. The assay setup not only allows detection of the formed resorufin, but it also simultaneously monitors cofactor depletion online. The EAD setup was used to test the activity of a small library of novel CYP BM3 mutants in flow-injection analysis mode in the presence of the organic modifiers methanol, acetonitrile, and isopropanol. Mutants with enhanced tolerability toward all three solvents were identified, and the EAD setup was adapted to facilitate CYP BM3 activity screening against a gradient of an organic modifier to study the behavior of the small library of CYP BM3 mutants in more detail. The simple methodology used in this study was shown to be a very powerful tool to screen for novel CYP BM3 mutants with increased tolerability toward organic solvents.
本文提出了一种新方法来研究细胞色素P450单加氧酶BM3(CYP BM3)突变体对有机溶剂的耐受性。基于荧光的连续流动酶活性检测(EAD)装置用于在有机溶剂存在下筛选CYP BM3突变体的活性。该方法基于CYP BM3介导的苄氧基试卤灵O-脱烷基化反应,生成高荧光产物试卤灵。该检测装置不仅可以检测生成的试卤灵,还能同时在线监测辅因子的消耗。EAD装置用于在流动注射分析模式下,在有机改性剂甲醇、乙腈和异丙醇存在的情况下,测试一小批新型CYP BM3突变体的活性。鉴定出了对所有三种溶剂耐受性增强的突变体,并对EAD装置进行了改进,以利于针对有机改性剂梯度筛选CYP BM3活性,从而更详细地研究CYP BM3突变体小文库的行为。本研究中使用的简单方法被证明是筛选对有机溶剂耐受性增强的新型CYP BM3突变体的一种非常强大的工具。