Loida P J, Sligar S G
Department of Biochemistry, University of Illinois, Urbana 61801.
Protein Eng. 1993 Feb;6(2):207-12. doi: 10.1093/protein/6.2.207.
Site-directed mutants were constructed in cytochrome P-450cam to re-engineer the stereochemistry and coupling of ethylbenzene hydroxylation. The reaction with wild-type (WT) enzyme produces one regioisomer 1-phenylethanol with 5% reduced nicotinamide adenine deoxyribonucleic acid to product conversion of and a ratio of 73:27 for the R and S enantiomers respectively. Ethylbenzene was modeled into the active site of WT P-450cam in a rigid mode and oriented to optimize either pro-R or pro-S hydrogen abstraction. Residues T101, T185 and V247 make extensive contacts with the substrate in the static complexes and were therefore chosen for site-directed mutagenesis. Single mutants T101M, V247A and V247M are more stereospecific producing 89, 87 and 82% (R)-1-phenylethanol respectively. The coupling of the reaction is doubled for the single mutants T185L, T185F and V247M. In an effort to engineer increased stereospecificity and coupling into a single catalyst the T101M, T185F and V247M mutants were combined in a multiple mutant of P-450cam. This protein hydroxylates ethylbenzene resulting in an R:S ratio of 87:13 for the 1-phenylethanols and 13% coupling of reducing equivalents to product. The catalytic stereospecificity and stoichiometry with T101M--T185F--V247M does not represent a summation of the changes observed for the single mutants. A portion of the individual effects on substrate recognition produced by the single substitutions is either eliminated or degenerate within the triple mutant.
在细胞色素P - 450cam中构建定点突变体,以重新设计乙苯羟基化反应的立体化学和偶联反应。野生型(WT)酶反应产生一种区域异构体1 - 苯乙醇,烟酰胺腺嘌呤脱氧核糖核酸还原型与产物的转化率降低5%,R和S对映体的比例分别为73:27。乙苯以刚性模式模拟进入WT P - 450cam的活性位点,并进行定向以优化前R或前S氢的提取。在静态复合物中,残基T101、T185和V247与底物有广泛接触,因此被选作定点诱变。单突变体T101M、V247A和V247M的立体特异性更高,分别产生89%、87%和82%的(R)-1 - 苯乙醇。单突变体T185L、T185F和V247M的反应偶联率翻倍。为了将增加的立体特异性和偶联设计到单一催化剂中,将T101M、T185F和V247M突变体组合成P - 450cam的多重突变体。该蛋白使乙苯羟基化,产生的1 - 苯乙醇的R:S比例为87:13,还原当量与产物的偶联率为13%。T101M - T185F - V247M的催化立体特异性和化学计量并不代表单个突变体所观察到的变化的总和。单个取代对底物识别产生的部分个体效应在三重突变体内要么被消除,要么退化。