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利用分子建模和定点诱变研究人芳香化酶细胞色素P-450的结构-功能关系

Structure-function relationships of human aromatase cytochrome P-450 using molecular modeling and site-directed mutagenesis.

作者信息

Graham-Lorence S, Khalil M W, Lorence M C, Mendelson C R, Simpson E R

机构信息

Department of Obstetrics and Gynecology, University of Texas Southwestern Medical Center, Dallas 75235-9051.

出版信息

J Biol Chem. 1991 Jun 25;266(18):11939-46.

PMID:2050688
Abstract

The conversion of androgens to estrogens is catalyzed by an enzyme complex named aromatase, which consists of a form of cytochrome P-450, aromatase cytochrome P-450 (cytochrome P-450AROM), and the flavoprotein, NADPH-cytochrome P-450 reductase. As a first step toward investigation of the structure-function relationships of cytochrome P-450AROM, we have used computer modeling to align the amino acid sequence of cytochrome P-450AROM with that of cytochrome P-450CAM from Pseudomonas putida and thus create a substrate pocket using the heme-binding region and the I-helix of cytochrome P-450CAM as the template. Site-directed mutagenesis was then carried out at two sites: one at a region that aligns with the bend in the I-helix of cytochrome P-450CAM and the other at a glutamate (Glu302) just N-terminal of this bend, which is predicted to be in close proximity to the C2-position of the androstenedione substrate. To determine the importance of the former region, three mutants were constructed: A307G (Ala307----Gly), P308V (Pro308----Val), and GAGV, which changed -Ile305-Ala306-Ala307-Pro308- to -Gly-Ala-Gly-Val- (the corresponding sequence found in 17 alpha-hydroxylase cytochrome P-450). When these proteins were expressed in COS-1 cells, it was found that the activity of P308V was approximately one-third that of the wild type. These observations are consistent with the concept that Pro308 causes a bend in the I-helix of cytochrome P-450AROM, similar to that observed in cytochrome P-450CAM, which is believed to be important in forming the substrate-binding pocket. The next set of mutants were designed to determine the importance of Glu302 in catalysis. Four mutants were prepared in which Glu302 was changed either to Ala, Val, Gln, or Asp, and the activities of the expressed proteins were examined. It was found that mutations in which the carboxylic acid was replaced were essentially devoid of activity. On the other hand, changing Glu302 to Asp resulted in a two-thirds reduction in the apparent Vmax. These results support the role of a carboxylic acid residue at position 302 in the catalytic activity of cytochrome P-450AROM.

摘要

雄激素向雌激素的转化由一种名为芳香化酶的酶复合物催化,该复合物由一种细胞色素P-450、芳香化酶细胞色素P-450(细胞色素P-450AROM)和黄素蛋白NADPH-细胞色素P-450还原酶组成。作为研究细胞色素P-450AROM结构-功能关系的第一步,我们利用计算机建模将细胞色素P-450AROM的氨基酸序列与来自恶臭假单胞菌的细胞色素P-450CAM的氨基酸序列进行比对,从而以细胞色素P-450CAM的血红素结合区域和I-螺旋为模板创建一个底物口袋。然后在两个位点进行定点诱变:一个位点位于与细胞色素P-450CAM的I-螺旋弯曲处对齐的区域,另一个位点位于该弯曲处N端的一个谷氨酸(Glu302),预计该谷氨酸与雄烯二酮底物的C2位置紧密相邻。为了确定前一个区域的重要性,构建了三个突变体:A307G(Ala307→Gly)、P308V(Pro308→Val)和GAGV,它们将-Ile305-Ala306-Ala307-Pro308-变为-Gly-Ala-Gly-Val-(在17α-羟化酶细胞色素P-450中发现的相应序列)。当这些蛋白质在COS-1细胞中表达时,发现P308V的活性约为野生型的三分之一。这些观察结果与以下概念一致,即Pro308导致细胞色素P-450AROM的I-螺旋弯曲,类似于在细胞色素P-450CAM中观察到的情况,据信这对形成底物结合口袋很重要。接下来的一组突变体旨在确定Glu302在催化中的重要性。制备了四个突变体,其中Glu302分别变为Ala、Val、Gln或Asp,并检测了表达蛋白的活性。发现羧酸被取代的突变体基本上没有活性。另一方面,将Glu302变为Asp导致表观Vmax降低了三分之二。这些结果支持了302位羧酸残基在细胞色素P-450AROM催化活性中的作用。

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