首页> 美国卫生研究院文献>other >Oxidation of 1-Chloropyrene by Human CYP1 Family and CYP2A Subfamily Cytochrome P450 Enzymes: Catalytic Roles of Two CYP1B1 and Five CYP2A13 Allelic Variants
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Oxidation of 1-Chloropyrene by Human CYP1 Family and CYP2A Subfamily Cytochrome P450 Enzymes: Catalytic Roles of Two CYP1B1 and Five CYP2A13 Allelic Variants

机译:由人CYP1家族和CYP2A亚家族细胞色素P450酶氧化1-氯rop:两个CYP1B1和五个CYP2A13等位基因变体的催化作用

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摘要

class="enumerated" style="list-style-type:decimal" id="L1">Chloropyrene, one of the major chlorinated polycyclic aromatic hydrocarbon contaminants, was incubated with human cytochrome P450 (P450 or CYP) enzymes including CYP1A1, 1A2, 1B1, 2A6, 2A13, 2B6, 2C9, 2D6, 2E1, 3A4, and 3A5. Catalytic differences in 1-chloropyrene oxidation by polymorphic two CYP1B1 and five CYP2A13 allelic variants were also examined.CYP1A1 oxidized 1-chloropyrene at the 6- and 8-positions more actively than at the 3-position, while both CYP1B1.1 and 1B1.3 preferentially catalyzed 6-hydroxylation.Five CYP2A13 allelic variants oxidized 8-hydroxylation much more than 6- and 3-hydroxylation, and the variant CYP2A13.3 was found to slowly catalyze these reactions with a lower kcat value than other CYP2A13.1 variants.CYP2A6 catalyzed 1-chloropyrene 6-hydroxylation at a higher rate than the CYP2A13 enzymes, but the rate was lower than the CYP1A1 and 1B1 variants. Other human P450 enzymes had low activities towards 1-chloropyrene.Molecular docking analysis suggested differences in the interaction of 1-chloropyrene with active sites of CYP1 and 2A enzymes. In addition, a naturally occuring Thr134 insertion in CYP2A13.3 was found to affect the orientation of Asn297 in the I-helix in interacting with 1-chloropyrene (and also 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone, NNK) and caused changes in the active site of CYP2A13.3 as compared with CYP2A13.1.
机译:class =“ enumerated” style =“ list-style-type:decimal” id =“ L1”> <!-list-behavior =枚举前缀word = mark-type = decimal max-label-size = 0- -将主要的氯化多环芳烃污染物之一的氯丁与人细胞色素P450(P450或CYP)酶(包括CYP1A1、1A2、1B1、2A6、2A13、2B6、2C9、2D6、2E1、3A4,和3A5。还研究了多态性两个CYP1B1和五个CYP2A13等位基因变体在1-氯py氧化中的催化差异。 CYP1A1在6位和8位上的氧化1-氯py比在3位上更活跃,而CYP1B1.1和1B1.3均优先催化6-羟基化。 5个CYP2A13等位基因变体氧化8-羟基化程度远超过6-和3-羟基化,并且发现CYP2A13.3变体可缓慢催化这些反应具有比其他CYP2A13.1变体更低的kcat值。 CYP2A6催化1-氯py 6-羟基化的速率高于CYP2A13酶,但该速率低于CYP1A1和1B1变体。其他人类P450酶对1-氯py的活性较低。 分子对接分析表明1-氯py与CYP1和2A酶活性位点的相互作用不同。此外,发现天然存在的CYP2A13.3中的Thr134插入会在I螺旋中与1-氯297(以及4-(甲基亚硝基氨基)-1-(3-吡啶基)-1-丁酮,NNK)引起的CYP2A13.3活性位点与CYP2A13.1相比发生变化。

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