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野生型人细胞色素P450 1A2在大肠杆菌中无传统N端修饰的异源表达及特性研究

Heterologous expression and characterization of wild-type human cytochrome P450 1A2 without conventional N-terminal modification in Escherichia coli.

作者信息

Kim Dong-Hyun, Kim Keon-Hee, Isin Emre M, Guengerich F Peter, Chae Ho Zoon, Ahn Taeho, Yun Chul-Ho

机构信息

School of Biological Sciences and Technology and Hormone Research Center, Chonnam National University, 300 Yongbong-dong, Buk-gu, Gwangju 500-757, Republic of Korea.

出版信息

Protein Expr Purif. 2008 Feb;57(2):188-200. doi: 10.1016/j.pep.2007.10.010. Epub 2007 Oct 22.

Abstract

In this study, wild-type human CYP1A2 without the conventional N-terminal modification (second codon GCT) or the truncation of the N-terminal hydrophobic region was functionally expressed in Escherichia coli. Its enzymatic properties were compared with N-terminally modified CYP1A2. Although modified CYP1A2 is almost all high-spin, some wild-type CYP1A2 shifted to low-spin. Spectral binding titrations with several ligands could be performed with wild-type enzyme, but not with modified enzyme. Kinetic parameters for several substrates were similar for the two CYP1A2 enzymes. However, the oxidation rates of phenacetin by modified enzyme were approximately 2-fold higher than those by wild-type enzyme. The intermolecular isotope effects were approximately 2 for phenacetin O-deethylation catalyzed by both enzymes. However, the wild-type enzyme, but not the modified enzyme, increased C-hydroxylation when O-deethylation rates were lowered by deuterium substitution. Molecular switching indicates that phenacetin rotates within the active site of wild-type enzyme and suggests a looser conformation in the active site of the wild-type enzyme than of the modified enzyme. These results reveal that the overall enzymatic properties of wild-type CYP1A2 enzyme are quite similar to those of modified CYP1A2, although its active site environment seems to differ from that of the modified enzyme.

摘要

在本研究中,未进行常规N端修饰(第二个密码子GCT)或未截断N端疏水区域的野生型人CYP1A2在大肠杆菌中实现了功能性表达。将其酶学性质与N端修饰的CYP1A2进行了比较。虽然修饰后的CYP1A2几乎全是高自旋态,但一些野生型CYP1A2转变为低自旋态。野生型酶能用几种配体进行光谱结合滴定,而修饰后的酶则不能。两种CYP1A2酶对几种底物的动力学参数相似。然而,修饰后的酶对非那西丁的氧化速率比野生型酶高约2倍。两种酶催化非那西丁O-脱乙基反应的分子间同位素效应约为2。然而,当通过氘取代降低O-脱乙基速率时,野生型酶而非修饰后的酶增加了C-羟基化反应。分子转换表明非那西丁在野生型酶的活性位点内旋转,这表明野生型酶活性位点的构象比修饰后的酶更松散。这些结果表明,野生型CYP1A2酶的整体酶学性质与修饰后的CYP1A2相当相似,尽管其活性位点环境似乎与修饰后的酶不同。

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