Paulsen M D, Filipovic D, Sligar S G, Ornstein R L
Molecular Science Research Center, Pacific Northwest Laboratory, Richland, Washington 99352.
Protein Sci. 1993 Mar;2(3):357-65. doi: 10.1002/pro.5560020308.
Cytochrome P450cam (P450CIA1) catalyzes the hydroxylation of camphor and several substrate analogues such as norcamphor and 1-methyl-norcamphor. Hydroxylation was found experimentally at the 3, 5, and 6 positions of norcamphor, but only at the 5 and 6 positions of 1-methyl-norcamphor. In the catalytic cycle, the hydroxylation of substrate is coupled to the consumption of NADH. For camphor, the degree of coupling is 100%, but for both norcamphor and 1-methyl-norcamphor, the efficiency is dramatically lowered to 12% and 50%, respectively. Based on an examination of the active site of P450cam, it appeared that mutating position 185 might dramatically alter the product specificity and coupling of hydroxylation of norcamphor by P450cam. Analysis of molecular dynamics trajectories of norcamphor bound to the T185F mutant of cytochrome P450cam predicted that hydroxylation at the 3 position should be abolished and that the coupling should be dramatically increased. This mutant was constructed and the product profile and coupling experimentally determined. The coupling was doubled, and hydroxylation at the 3 position was essentially abolished. Both of these results are in agreement with the prediction.
细胞色素P450cam(P450CIA1)催化樟脑以及几种底物类似物(如降樟脑和1-甲基降樟脑)的羟基化反应。实验发现,降樟脑在3、5和6位发生羟基化,但1-甲基降樟脑仅在5和6位发生羟基化。在催化循环中,底物的羟基化与NADH的消耗相关联。对于樟脑,偶联程度为100%,但对于降樟脑和1-甲基降樟脑,效率分别显著降低至12%和50%。基于对P450cam活性位点的研究,似乎突变185位可能会显著改变P450cam对降樟脑羟基化反应的产物特异性和偶联情况。对与细胞色素P450cam的T185F突变体结合的降樟脑分子动力学轨迹的分析预测,3位的羟基化反应应被消除,且偶联应显著增加。构建了该突变体,并通过实验确定了产物谱和偶联情况。偶联增加了一倍,3位的羟基化反应基本被消除。这两个结果均与预测相符。