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Analysis of human cytochrome P450 3A4 cooperativity: Construction and characterization of a site-directed mutant that displays hyperbolic steroid hydroxylation kinetics

机译:分析人类细胞色素P450 3A4的协同作用:定点突变体的构建和表征,该突变体显示双曲线甾体羟基化动力学

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摘要

Cytochrome P450 3A4 is generally considered to be the most important human drug-metabolizing enzyme and is known to catalyze the oxidation of a number of substrates in a cooperative manner. An allosteric mechanism is usually invoked to explain the cooperativity. Based on a structure–activity study from another laboratory using various effector–substrate combinations and on our own studies using site-directed mutagenesis and computer modeling of P450 3A4, the most likely location of effector binding is in the active site along with the substrate. Our study was designed to test this hypothesis by replacing residues Leu-211 and Asp-214 with the larger Phe and Glu, respectively. These residues were predicted to constitute a portion of the effector binding site, and the substitutions were designed to mimic the action of the effector by reducing the size of the active site. The L211F/D214E double mutant displayed an increased rate of testosterone and progesterone 6β-hydroxylation at low substrate concentrations and a decreased level of heterotropic stimulation elicited by α-naphthoflavone. Kinetic analyses of the double mutant revealed the absence of homotropic cooperativity with either steroid substrate. At low substrate concentrations the steroid 6β-hydroxylase activity of the wild-type enzyme was stimulated by a second steroid, whereas L211F/D214E displayed simple substrate inhibition. To analyze L211F/D214E at a more mechanistic level, spectral binding studies were carried out. Testosterone binding by the wild-type enzyme displayed homotropic cooperativity, whereas substrate binding by L211F/D214E displayed hyperbolic behavior.
机译:细胞色素P450 3A4通常被认为是最重要的人类药物代谢酶,已知可以协同方式催化许多底物的氧化。通常调用变构机制来解释合作性。根据另一家实验室使用各种效应物-底物组合进行的结构-活性研究,以及根据我们自己的使用定点诱变和P450 3A4计算机建模的研究,效应物结合的最可能位置是与底物一起在活性位点。我们的研究旨在通过用较大的Phe和Glu分别取代残基Leu-211和Asp-214来检验该假设。预测这些残基构成效应子结合位点的一部分,并且设计取代基以通过减少活性位点的大小来模仿效应子的作用。 L211F / D214E双重突变体在低底物浓度下显示睾丸激素和孕酮6β-羟基化的速率增加,而α-萘黄酮引起的异性刺激水平降低。对双突变体的动力学分析表明,与任一类固醇底物均不存在同质协同作用。在低底物浓度下,第二种类固醇刺激野生型酶的类固醇6β-羟化酶活性,而L211F / D214E显示出简单的底物抑制作用。为了更机械地分析L211F / D214E,进行了光谱结合研究。野生型酶与睾丸激素的结合表现出各向同性的协同作用,而L211F / D214E与底物的结合表现出双曲线的行为。

著录项

  • 作者单位
  • 年度 1998
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-20 20:37:52

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