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利用分子建模和动力学分析对细胞色素P450 1A1底物结合的表征:以382位残基为例

Characterization of substrate binding to cytochrome P450 1A1 using molecular modeling and kinetic analyses: case of residue 382.

作者信息

Liu Jianguo, Ericksen Spencer S, Besspiata Dan, Fisher Charles W, Szklarz Grazyna D

机构信息

Department of Basic Pharmaceutical Sciences, School of Pharmacy, West Virginia University, Morgantown, WV 26506-9530, USA.

出版信息

Drug Metab Dispos. 2003 Apr;31(4):412-20. doi: 10.1124/dmd.31.4.412.

Abstract

Key residue Val-382 in P450 1A1 has been predicted to interact with the alkoxy chain of resorufin derivatives. Therefore, we undertook a detailed analysis of substrate mobility in the active site of the P450 1A1 homology model and assessed the effect of mutations at position 382. Dynamic trajectories of 7-methoxy-, 7-ethoxy-, and 7-pentoxyresorufin indicated that 7-ethoxyresorufin would be oxidized most efficiently by the wild-type enzyme. The Val-382-->Ala mutation would increase the O-dealkylation of 7-pentoxyresorufin but decrease the oxidation of other substrates. In the case of the V382L mutant, the large bulk of Leu would block alkoxyresorufins from productive binding orientations leading to lowered activities. Binding free energy calculations for three substrates with 1A1 WT and two mutants indicated that binding constants would be similar for all enzyme-substrate combinations. Modeling predictions were tested experimentally. The plasmid containing the cDNA for human P450 1A1 modified for bacterial expression was altered to include a C-terminal PCR-generated six histidine domain to facilitate enzyme purification. The V382A and V382L mutants were constructed by site-directed mutagenesis and Escherichia coli-expressed enzymes purified using Ni-NTA affinity chromatography. The activity of the WT 1A1 was highest toward 7-ethoxyresorufin and lowest toward 7-pentoxyresorufin. Both mutants displayed a decrease in V(max) with 7-methoxy- and 7-ethoxyresorufin, whereas for the V382A mutant, V(max) with 7-pentoxyresorufin was increased. No significant changes in K(m) were observed relative to the wild-type enzyme. The experimental results are thus in good agreement with modeling predictions.

摘要

细胞色素P450 1A1中的关键残基缬氨酸-382已被预测与试卤灵衍生物的烷氧基链相互作用。因此,我们对P450 1A1同源模型活性位点中的底物流动性进行了详细分析,并评估了382位突变的影响。7-甲氧基-、7-乙氧基-和7-戊氧基试卤灵的动态轨迹表明,野生型酶对7-乙氧基试卤灵的氧化效率最高。缬氨酸-382突变为丙氨酸会增加7-戊氧基试卤灵的O-脱烷基化,但会降低其他底物的氧化。在V382L突变体的情况下,亮氨酸的大体积会阻止烷氧基试卤灵以有效的结合方向结合,导致活性降低。对三种底物与1A1野生型和两种突变体的结合自由能计算表明,所有酶-底物组合的结合常数相似。对建模预测进行了实验验证。将含有经修饰用于细菌表达的人细胞色素P450 1A1 cDNA的质粒进行改造,使其包含一个通过PCR生成的C端六个组氨酸结构域,以促进酶的纯化。通过定点诱变构建V382A和V382L突变体,并使用镍-氮三乙酸亲和色谱法纯化大肠杆菌表达的酶。野生型1A1对7-乙氧基试卤灵的活性最高,对7-戊氧基试卤灵的活性最低。两种突变体对7-甲氧基-和7-乙氧基试卤灵的V(max)均降低,而对于V382A突变体,其对7-戊氧基试卤灵的V(max)增加。相对于野生型酶,未观察到K(m)有显著变化。因此,实验结果与建模预测高度吻合。

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