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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Functional analysis of CYP2D6.31 variant: homology modeling suggests possible disruption of redox partner interaction by Arg440His substitution.
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Functional analysis of CYP2D6.31 variant: homology modeling suggests possible disruption of redox partner interaction by Arg440His substitution.

机译:CYP2D6.31变体的功能分析:同源性建模表明,Arg440His取代可能会破坏氧化还原伴侣的相互作用。

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摘要

Cytochrome P450 2D6 (CYP2D6) is an important human drug-metabolizing enzyme that exhibits a marked genetic polymorphism. Numerous CYP2D6 alleles have been characterized at a functional level, although the consequences for expression and/or catalytic activity of a substantial number of rare variants remain to be investigated. One such allele, CYP2D6*31, is characterized by mutations encoding three amino acid substitutions: Arg296Cys, Arg440His and Ser486Thr. The identification of this allele in an individual with an apparent in vivo poor metabolizer phenotype prompted us to analyze the functional consequence of these substitutions on enzyme activity using yeast as a heterologous expression system. We demonstrated that the Arg440His substitution, alone or in combination with Arg296Cys and/or Ser486Thr, altered the respective kinetic parameters [Km (microM) and kcat (min(-1))] of debrisoquine 4-hydroxylation (wild-type, 25; 0.92; variants, 43-68; 0.05-0.11) and dextromethorphan O-demethylation (wild-type,1; 4.72; variants, 12-23; 0.64-1.43), such that their specificity constants (kcat/Km) were decreased by more than 95% compared to those observed with the wild-type enzyme. The rates of oxidation of rac-metoprolol at single substrate concentrations of 40 and 400 microM were also markedly decreased by approximately 90% with each CYP2D6 variant containing the Arg440His substitution. These in vitro data confirm that the CYP2D6*31 allele encodes an enzyme with a severely impaired but residual catalytic activity and, furthermore, that the Arg440His exchange alone is the inactivating mutation. A homology model of CYP2D6 based on the crystal structure of rabbit CYP2C5 locates Arg440 on the proximal surface of the protein. Docking the structure of the FMN domain of human cytochrome P450 reductase to the CYP2D6 model suggests that Arg440 is a key member of a cluster of basic amino acid residues important for reductase binding.
机译:细胞色素P450 2D6(CYP2D6)是一种重要的人类药物代谢酶,具有明显的遗传多态性。许多CYP2D6等位基因已在功能水平上得到了表征,尽管仍有许多稀有变体对表达和/或催化活性的影响尚待研究。一种这样的等位基因CYP2D6 * 31,其特征在于编码三个氨基酸取代的突变:Arg296Cys,Arg440His和Ser486Thr。在具有明显体内不良代谢者表型的个体中鉴定该等位基因促使我们使用酵母作为异源表达系统来分析这些取代对酶活性的功能结果。我们证明,单独或与Arg296Cys和/或Ser486Thr组合使用Arg440His替代,可以改变debrisoquine 4-羟基化反应的动力学参数[Km(microM)和kcat(min(-1))](野生型25; 0.92;变体43-68; 0.05-0.11)和右美沙芬O-去甲基化(野生型1; 4.72;变体12-23; 0.64-1.43),这样它们的特异性常数(kcat / Km)降低了与使用野生型酶观察到的结果相比,有超过95%的结果。对于每个含有Arg440His取代的CYP2D6变体,在单一底物浓度为40和400 microM时,rac-metoprolol的氧化速率也显着降低了约90%。这些体外数据证实,CYP2D6 * 31等位基因编码的酶具有严重受损但残留的催化活性,此外,单独的Arg440His交换是失活的突变。基于兔子CYP2C5晶体结构的CYP2D6同源模型将Arg440定位在蛋白质的近端表面上。将人细胞色素P450还原酶的FMN结构域对接至CYP2D6模型,表明Arg440是对还原酶结合重要的碱性氨基酸残基簇的关键成员。

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