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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Differential effects of variations in human P450 oxidoreductase on the aromatase activity of CYP19A1 polymorphisms R264C and R264H
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Differential effects of variations in human P450 oxidoreductase on the aromatase activity of CYP19A1 polymorphisms R264C and R264H

机译:人P450氧化还原酶变异对CYP1MA1多态性芳族酶活性R264C和R264H的差异影响

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摘要

Aromatase (CYP19A1) converts androgens into estrogens and is required for female sexual development and growth and development in both sexes. CYP19A1 is a member of cytochrome P450 family of heme-thiolate monooxygenases located in the endoplasmic reticulum and depends on reducing equivalents from the reduced nicotinamide adenine dinucleotide phosphate via the cytochrome P450 oxidoreductase coded by POR. Both the CYP19A1 and POR genes are highly polymorphic, and mutations in both these genes are linked to disorders of steroid biosynthesis. We have previously shown that R264C and R264H mutations in CYP19A1, as well as mutations in POR, reduce CYP19A1 activity. The R264C is a common polymorphic variant of CYP19A1, with high frequency in Asian and African populations. Polymorphic alleles of POR are found in all populations studied so far and, therefore, may influence activities of CYP19A1 allelic variants. So far, the effects of variations in POR on enzymatic activities of allelic variants of CYP19A1 or any other steroid metabolizing cytochrome P450 proteins have not been studied. Here we are reporting the effects of three POR variants on the aromatase activities of two CYP19A1 variants, R264C, and R264H. We used bacterially expressed and purified preparations of WT and variant forms of CYP19A1 and POR and constructed liposomes with embedded CYP19A1 and POR proteins and assayed the CYP19A1 activities using radiolabeled androstenedione as a substrate. With the WT-POR as a redox partner, the R264C-CYP19A1 showed only 15% of aromatase activity, but the R264H had 87% of aromatase activity compared to WT-CYP19A1. With P284L-POR as a redox partner, R264C-CYP19A1 lost all activity but retained 6.7% of activity when P284T-POR was used as a redox partner. The R264H-CYP19A1 showed low activities with both the POR-P284 L as well as the POR-P284 T. When the POR-Y607C was used as a redox partner, the R264C-CYP19A1 retained approximately 5% of CYP19A1 activity. Remarkably, The R264H-CYP19A1 had more than three-fold higher activity compared to WT-CYP19A1 when the POR-Y607C was used as the redox partner, pointing toward a beneficial effect. The slight increase in activity of R264C-CYP19A1 with the P284T-POR and the three-fold increase in activity of the R264H-CYP19A1 with the Y607C-POR point toward a conformational effect and role of protein-protein interaction governed by the R264C and R264H substitutions in the CYP19A1 as well as P284 L, P284 T and Y607C variants of POR. These studies demonstrate that the allelic variants of P450 when present with a variant form of POR may show different activities, and combined effects of variations in the P450 enzymes as well as in the POR should be considered when genetic data are available. Recent trends in the whole-exome and whole-genome sequencing as diagnostic tools will permit combined evaluation of variations in multiple genes that are interdependent and may guide treatment options by adjusting therapeutic interventions based on laboratory analysis.
机译:芳香酶(CYP19A1)将Androgens转化为雌激素,并且是两性的女性性发育和生长和发展所必需的。 CYP19A1是位于内质网中的细胞色素P450系列血红素硫醇单氧化酯的细胞素的成员,并且取决于通过由POR编码的细胞色素P450氧化还原酶从减少的烟酰胺腺嘌呤二核苷酸磷酸酯中还原等同物。 CYP19A1和POR基因都是高度多态性的,并且两种基因中的突变与类固醇生物合成的疾病联系起来。我们之前已经显示CYP19A1中的R264C和R264H突变,以及POR中的突变,降低CYP19A1活性。 R264C是CYP19A1的常见多态性变体,亚洲和非洲群体的高频率。在到目前为止研究的所有人群中,POR的多态性等位基因可能会影响CYP19A1等位基因变体的活动。到目前为止,POR变化对CYP19A1或任何其他类固醇的等位基因变异酶活性的影响尚未研究过。在这里,我们报道了三个POR变体对两种CYP19A1变体,R264C和R264H的芳香酶活性的影响。我们使用了Cyp19A1和POR的WT和变体形式的细胞表达和纯化的CYP19A1和POR和具有嵌入式CYP19A1和POR蛋白的脂质体,并使用放射性标记的androstentione作为基材测定CYP19A1活性。随着WT-POR作为氧化还原伴侣,R264C-CYP19A1仅显示了15%的芳香酶活性,但与WT-CYP19A1相比,R264H具有87%的芳香酶活性。使用P284L-POR作为氧化还原伙伴,R264C-CYP19A1丢失了所有活动,但在P284T-POR作为氧化还原伙伴时保留了6.7%的活动。 R264H-CYP19A1显示POR-P284 L以及POR-P284T的低活性。当POR-Y607C用作氧化还原伴侣时,R264C-CYP19A1保留约5%的CYP19A1活性。值得注意的是,当POR-Y607C用作氧化还原伙伴时,R264H-CYP19A1与WT-CYP19A1相比具有超过三倍的活性,指向有益效果。 R284T-POR的R264C-CYP19A1的活性略有增加,以及R264H-CYP19A1的三倍增加,与Y607C-POR指向R264C和R264H治理的蛋白质 - 蛋白质相互作用的构象效应和作用CYP19A1中的取代以及POR的P284 L,P284 T和Y607C变体。这些研究表明,当用变体形式的POR存在时P450的等位基因变体可以显示出不同的活性,并且当遗传数据可获得时,应考虑P450酶以及在POR中的变化的组合效应。近期全面和全基因组测序作为诊断工具的趋势将允许通过基于实验室分析调整治疗干预的多种基因的多种基因的变异的组合评估。

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