人尼古丁c -氧化酶(CYP2A6)的多态NF-Y依赖性调控。

Oliver von Richter, Marià Pitarque, Cristina Rodríguez-Antona, Anna Testa, Roberto Mantovani, Mikael Oscarson, Magnus Ingelman-Sundberg
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引用次数: 36

摘要

目的:在人类中,细胞色素P450 2A6 (CYP2A6)构成主要的尼古丁c -氧化酶。几种不同的多态性CYP2A6基因变异是已知的,这有助于这种酶在个体之间的高度可变的表达。在这项研究中,我们报告了位于CYP2A6基因5'侧区(-745A > G)的一个新的多态性,该多态性破坏了CCAAT盒子。方法和结果:电泳迁移迁移试验(EMSA)表明NF-YA是该核蛋白复合物的一部分。染色质免疫沉淀显示NF-Y识别CYP2A6 5'侧区位于-932和-606之间的区域。EMSA显示,在CYP2A6启动子的三个CCAAT盒子中,CCAAT核心序列位于-839/-835、-748/-744和-689/-685之间,只有位于-748/-744的CCAAT盒子能够与与-748/-744 CCAAT盒子结合的核蛋白复合物竞争。共转染实验表明NF-Y作为CYP2A6基因的正调控元件。EMSA表明,NF-Y一致寡核苷酸而不是-745A > G寡核苷酸能有效地与蛋白复合物结合到-748/-744 CCAAT盒上。在转染荧光素酶报告质粒的HepG2细胞中,-745A > G变异的启动子活性较野生型等位基因显著降低至78%。最后,进行单倍型分析,包括-745A > G变异与所有已知的CYP2A6 3'和5'侧链单核苷酸多态性:-1013A > G, -48T > G,以及CYP2A6/CYP2A7 3'侧链转换。结论:发现一种新的单倍型CYP2A6*1H,瑞典人群等位基因频率为3.1%,土耳其人群等位基因频率为5.2%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polymorphic NF-Y dependent regulation of human nicotine C-oxidase (CYP2A6).

Objectives: In humans, cytochrome P450 2A6 (CYP2A6) constitutes the principal nicotine C-oxidase. Several different polymorphic CYP2A6 gene variants are known which contribute to the highly variable expression of this enzyme among individuals. In this study we report a novel polymorphism located in the 5' flanking region (-745A > G) of the CYP2A6 gene disrupting a CCAAT box.

Methods and results: Electrophoretic mobility shift assays (EMSA) indicated that NF-YA is part of this nuclear protein complex. Chromatin immunoprecipitation revealed that NF-Y recognizes a region of the CYP2A6 5' flanking region located between -932 and -606. EMSA showed that out of the three CCAAT boxes in the CYP2A6 promoter, with CCAAT core sequences located between -839/-835, -748/-744, and -689/-685, only the one at -748/-744 was able to compete with the nuclear protein complex binding to the -748/-744 CCAAT box. Cotransfection experiments indicated that NF-Y acts as a positive regulatory element on CYP2A6 gene regulation. EMSA demonstrated that an NF-Y consensus oligonucleotide but not the -745A > G oligonucleotide competed efficiently with binding of the protein complex to the -748/-744 CCAAT box. Promoter activity of the -745A > G variant was significantly reduced to 78% relative to the wild-type allele in HepG2 cells transfected with luciferase reporter plasmids. Finally, haplotype analysis was carried out comprising the -745A > G variant in combination with all known CYP2A6 3' and 5' flanking single nucleotide polymorphisms: -1013A > G, -48T > G, and the CYP2A6/CYP2A7 3' flank conversion.

Conclusion: A new haplotype, CYP2A6*1H was identified, with allele frequencies of 3.1% in Swedish and 5.2% in Turkish populations.

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