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首页> 外文期刊>Protein engineering design & selection: PEDS >Engineering mammalian cytochrome P450 2B1 by directed evolution for enhanced catalytic tolerance to temperature and dimethyl sulfoxide.
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Engineering mammalian cytochrome P450 2B1 by directed evolution for enhanced catalytic tolerance to temperature and dimethyl sulfoxide.

机译:通过定向进化工程化哺乳动物细胞色素P450 2B1,以增强对温度和二甲基亚砜的催化耐受性。

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The previously laboratory-evolved cytochrome P450 2B1 quadruple mutant V183L/F202L/L209A/S334P (QM), which showed enhanced H(2)O(2)-mediated substrate oxidation, has now been shown to exhibit a >3.0-fold decrease in K(m,HOOH) for 7-ethoxy-4-trifluoromethylcoumarin (7-EFC) O-deethylation compared with the parental enzyme L209A. Subsequently, a streamlined random mutagenesis and a high-throughput screening method were developed using QM to screen and select mutants with enhanced tolerance of catalytic activity to temperature and dimethyl sulfoxide (DMSO). Upon screening >3000 colonies, we identified QM/L295H and QM/K236I/D257N with enhanced catalytic tolerance to temperature and DMSO. QM/L295H exhibited higher activity than QM at a broad range of temperatures (35-55 degrees C) and maintained approximately 1.4-fold higher activity than QM at 45 degrees C for 6 h. In addition, QM/L295H showed a significant increase in T(m,app) compared with L209A. QM/L295H and QM/K236I/D257N exhibited higher activity than QM at a broad range of DMSO concentrations (2.5-15%). Furthermore, QM/K236I/D257N/L295H was constructed by combining QM/K236I/D257N with L295H using site-directed mutagenesis and exhibited a >2-fold higher activity than QM at nearly the entire range of DMSO concentrations. In conclusion, in addition to engineering mammalian cytochromes P450 for enhanced activity, directed evolution can also be used to optimize catalytic tolerance to temperature and organic solvent.
机译:以前的实验室进化的细胞色素P450 2B1四重突变体V183L / F202L / L209A / S334P(QM),显示出增强的H(2)O(2)介导的底物氧化,现已显示出> 3.0倍的减少与亲本酶L209A相比,7-乙氧基-4-三氟甲基香豆素(7-EFC)O-脱乙基的K(m,HOOH)。随后,使用QM开发了简化的随机诱变和高通量筛选方法,以筛选和选择对温度和二甲基亚砜(DMSO)具有增强的催化活性耐受性的突变体。通过筛选> 3000个菌落,我们鉴定出QM / L295H和QM / K236I / D257N具有增强的温度和DMSO催化耐受性。 QM / L295H在较宽的温度范围(35-55摄氏度)下表现出比QM更高的活性,并且在45摄氏度下保持6小时的活性比QM约高1.4倍。此外,与L209A相比,QM / L295H的T(m,app)显着增加。 QM / L295H和QM / K236I / D257N在广泛的DMSO浓度(2.5-15%)下表现出比QM高的活性。此外,使用定点诱变通过将QM / K236I / D257N与L295H组合而构建QM / K236I / D257N / L295H,并且在几乎整个DMSO浓度范围内,其活性均比QM高2倍以上。总之,除了对哺乳动物细胞色素P450进行工程改造以增强活性外,定向进化还可以用于优化对温度和有机溶剂的催化耐受性。

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