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首页> 外文期刊>Molecular pharmacology. >Discovery of novel flavin-containing monooxygenase 3 (FMO3) single nucleotide polymorphisms and functional analysis of upstream haplotype variants.
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Discovery of novel flavin-containing monooxygenase 3 (FMO3) single nucleotide polymorphisms and functional analysis of upstream haplotype variants.

机译:新型含黄素的单加氧酶3(FMO3)单核苷酸多态性的发现和上游单倍型变异的功能分析。

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The flavin-containing monooxygenases (FMOs) are important for xenobiotic metabolism. FMO3, the predominant FMO enzyme in human adult liver, exhibits significant interindividual variation that is poorly understood. This study was designed to identify common FMO3 genetic variants and determine their potential for contributing to interindividual differences in FMO3 expression. FMO3 single nucleotide polymorphism (SNP) discovery was accomplished by resequencing DNA samples from the Coriell Polymorphism Discovery Resource. Population-specific SNP frequencies were determined by multiplexed, single-base extension using DNA from 201 Hispanic American (Mexican descent), 201 African American, and 200 White (northern European descent) subjects. Haplotypes were inferred and population frequencies estimated using PHASE version 2.1. Multiple site-directed mutagenesis was used to introduce inferred upstream haplotypes into an FMO3/luciferase construct for functional analysis in HepG2 cells. Sequence analysis revealedseven FMO3 upstream SNPs, 11 exon SNPs, and 22 intron SNPs. Five of the latter fell within consensus splice sites. A g.72G>T variant (E24D) is predicted to impact the structure of the Rossmann fold involved in FAD binding, whereas a g.11177C>A variant (N61K) is predicted to disrupt the secondary structure of a conserved membrane interaction domain. Seven common (>1%) promoter region haplotypes were inferred in one or more of the study populations that differed in estimated frequency among the groups. Haplotype 2 resulted in an 8-fold increase in promoter activity, whereas haplotypes 8 and 15 exhibited a near complete loss of activity. In conclusion, FMO3 promoter haplotype variants modulate gene function and probably contribute to interindividual differences in FMO3 expression.
机译:含黄素的单加氧酶(FMO)对于异源生物代谢很重要。 FMO3是成人肝中最主要的FMO酶,其个体间差异很大,人们对此知之甚少。这项研究旨在确定常见的FMO3遗传变异,并确定它们有助于FMO3表达个体间差异的潜力。 FMO3单核苷酸多态性(SNP)发现是通过对来自Coriell多态性发现资源的DNA样本重新测序来完成的。通过使用201名西班牙裔美国人(墨西哥裔),201名非裔美国人和200名白人(北欧裔)受试者的DNA,通过多重单碱基延伸来确定特定于人群的SNP频率。使用PHASE 2.1版推断单倍型并估计种群频率。使用多个定点诱变将推断的上游单倍型引入FMO3 /荧光素酶构建体中,以在HepG2细胞中进行功能分析。序列分析揭示了七个FMO3上游SNP,11个外显子SNP和22个内含子SNP。后者中的五个落入共识剪接位点。预计g.72G> T变体(E24D)将影响参与FAD结合的Rossmann折叠结构,而g.11177C> A变体(N61K)预计会破坏保守膜相互作用域的二级结构。在一个或多个研究人群中推断出七个常见的(> 1%)启动子区域单倍型,其估计频率在各组之间不同。单倍型2导致启动子活性增加8倍,而单倍型8和15表现出几乎完全丧失活性。总之,FMO3启动子单倍型变异体可调节基因功能,并可能导致FMO3表达的个体差异。

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