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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Functional characterization of cytochrome P450 2B6 allelic variants.
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Functional characterization of cytochrome P450 2B6 allelic variants.

机译:细胞色素P450 2B6等位基因变体的功能表征。

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Cytochrome P450 (P450) 2B6 is a hepatic enzyme of potential importance for the metabolism of clinically used drugs and environmental or abused toxicants. Genetic polymorphisms of CYP2B6 (CYP2B6*2, CYP2B6*3, CYP2B6*4, CYP2B6*5, CYP2B6*6 and CYP2B6*7; wild-type, CYP2B6*1) were found previously in white and Japanese populations. In the present study, the goal was to investigate the effects of amino acid substitutions on CYP2B6 function. Wild-type (CYP2B6.1) and all of the known variants of CYP2B6 (CYP2B6.2, CYP2B6.3, CYP2B6.4, CYP2B6.5, CYP2B6.6, and CYP2B6.7) were transiently expressed in COS-1 cells, and their 7-ethoxy-4-trifluoromethylcoumarin O-deethylation activities were determined. The levels of the variant CYP2B6 proteins were relatively low compared with that of CYP2B6.1, although the differences were not significant. The activities of 7-ethoxy-4-trifluoromethylcoumarin O-deethylation on the basis of the CYP2B6 protein level at low (0.5 microM) and high (50 microM) substrate concentrations variedamong wild-type and variant CYP2B6 proteins. All CYP2B6 enzymes showed typical Michaelis-Menten kinetics. The K(m) value of CYP2B6.6 was significantly higher than that of CYP2B6.1. Those CYP2B6 variants having a Lys262Arg substitution (CYP2B6.4, CYP2B6.6, and CYP2B6.7) showed increased values for V(max) and V(max)/K(m), whereas the kinetic parameters of CYP2B6.2 and CYP2B6.3 were not affected by the corresponding amino acid substitution. These results may mean that Lys262 in combination with other amino acid residues such as Gln172 and Arg487 is associated with the CYP2B6 function and that the genetic polymorphism of CYP2B6 leads to interindividual differences in xenobiotic metabolism.
机译:细胞色素P450(P450)2B6是一种肝酶,对于临床使用的药物和环境或滥用的有毒物质的代谢具有潜在的重要性。 CYP2B6(CYP2B6 * 2,CYP2B6 * 3,CYP2B6 * 4,CYP2B6 * 5,CYP2B6 * 6和CYP2B6 * 7;野生型CYP2B6 * 1)的遗传多态性以前在白人和日本人群中发现。在本研究中,目标是研究氨基酸取代对CYP2B6功能的影响。在COS-1细胞中瞬时表达了野生型(CYP2B6.1)和CYP2B6的所有已知变体(CYP2B6.2,CYP2B6.3,CYP2B6.4,CYP2B6.5,CYP2B6.6和CYP2B6.7) ,测定了它们的7-乙氧基-4-三氟甲基香豆素的O-脱乙基活性。 CYP2B6变异蛋白的水平与CYP2B6.1相比相对较低,尽管差异不显着。在低(0.5 microM)和高(50 microM)底物浓度下,基于CYP2B6蛋白水平的7-乙氧基-4-三氟甲基香豆素O-脱乙基活性在野生型和变异CYP2B6蛋白之间变化。所有CYP2B6酶均表现出典型的Michaelis-Menten动力学。 CYP2B6.6的K(m)值显着高于CYP2B6.1的K(m)。那些具有Lys262Arg取代的CYP2B6变体(CYP2B6.4,CYP2B6.6和CYP2B6.7)的V(max)和V(max)/ K(m)值增加,而CYP2B6.2和CYP2B6的动力学参数.3不受相应氨基酸取代的影响。这些结果可能意味着Lys262与其他氨基酸残基(如Gln172和Arg487)的结合与CYP2B6的功能有关,并且CYP2B6的遗传多态性导致异种代谢的个体差异。

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