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利用杂交酶以及与兔细胞色素P450 2B4进行相互位点定向诱变,阐明对兔细胞色素P450 2B5独特活性至关重要的氨基酸残基。

Elucidation of amino acid residues critical for unique activities of rabbit cytochrome P450 2B5 using hybrid enzymes and reciprocal site-directed mutagenesis with rabbit cytochrome P450 2B4.

作者信息

Szklarz G D, He Y Q, Kedzie K M, Halpert J R, Burnett V L

机构信息

Department of Pharmacology and Toxicology, College of Pharmacy, University of Arizona, Tucson 85721, USA.

出版信息

Arch Biochem Biophys. 1996 Mar 15;327(2):308-18. doi: 10.1006/abbi.1996.0127.

Abstract

The molecular basis for the unique activities of rabbit cytochrome P450 2B5, compared with the highly related rabbit 2B4, was investigated using hybrid enzymes and site-directed mutagenesis. Alterations in androstenedione hydroxylase profiles observed with 2B4-2B5 hybrids expressed in COS cells showed that key amino acids are present in both the N-terminal ApaI fragment (codons 1-122) and an internal SstI fragment (codons 220-393). Based on these results, data obtained with other cytochromes P450 2B, and correlation to the six substrate recognition sites proposed by Gotoh (1992, J. Biol. Chem. 267, 83-90), reciprocal 2B4-2B5 mutants were constructed at positions 114, 294, 363, and 367. Wild-type and mutant enzymes were expressed in Escherichia coli, and the oxidation of a number of substrates was analyzed. All residues studied were found to be important for regio- and stereospecificity of androstenedione hydroxylation. Mutations at these positions also caused alterations in the oxidation of progesterone, benzyloxyresorufin, pentoxyresorufin, ethoxycoumarin, and benzphetamine, with the magnitude and direction of the changes dependent upon the enzyme, residue, and substrate. Major changes in activity were consistently observed upon mutation of residues 114 and 294 in both enzymes, and some of these alterations were interpreted with the help of a 3-D model of P450 2B4. For example, in the 2B4 Ile-114--> Phe mutant, Phe prevents androstenedione from assuming a 16 beta-binding orientation and also hinders binding of benzyloxyresorufin, leading to a loss of activity. Conversely, the presence of Phe-114 stabilizes a 16 alpha-binding orientation of androstenedione, resulting in an increase in this activity.

摘要

利用杂合酶和定点诱变技术,研究了兔细胞色素P450 2B5与高度相关的兔2B4相比具有独特活性的分子基础。在COS细胞中表达的2B4 - 2B5杂合酶所观察到的雄烯二酮羟化酶谱的变化表明,关键氨基酸既存在于N端ApaI片段(密码子1 - 122)中,也存在于内部SstI片段(密码子220 - 393)中。基于这些结果,结合其他细胞色素P450 2B的数据以及与Gotoh(1992年,《生物化学杂志》267卷,83 - 90页)提出的六个底物识别位点的相关性,在第114、294、363和367位构建了相互的2B4 - 2B5突变体。野生型和突变型酶在大肠杆菌中表达,并分析了多种底物的氧化情况。研究发现,所有研究的残基对于雄烯二酮羟化的区域和立体特异性都很重要。这些位置的突变也导致了孕酮、苄氧基试卤灵、戊氧基试卤灵、乙氧基香豆素和苄非他明氧化的变化,变化的幅度和方向取决于酶、残基和底物。在两种酶中,第114和294位残基发生突变时,始终观察到活性的主要变化,其中一些变化借助P450 2B4的三维模型进行了解释。例如,在2B4 Ile - 114→Phe突变体中,苯丙氨酸阻止雄烯二酮呈现16β结合方向,也阻碍苄氧基试卤灵的结合,导致活性丧失。相反,苯丙氨酸 - 114的存在稳定了雄烯二酮的16α结合方向,导致该活性增加。

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