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来源于具有三甲基氨基尿症表型的日本受试者的黄素单加氧酶 3(FMO3)的遗传变异体和来自大型日本数据库的全基因组序列数据。

Genetic variants of flavin-containing monooxygenase 3 (FMO3) derived from Japanese subjects with the trimethylaminuria phenotype and whole-genome sequence data from a large Japanese database.

机构信息

Showa Pharmaceutical University, Tokyo, Japan.

Graduate School of Pharmaceutical Sciences, Tohoku University, Sendai, Japan; Tohoku Medical Megabank Organization, Tohoku University, Sendai, Japan.

出版信息

Drug Metab Pharmacokinet. 2019 Oct;34(5):334-339. doi: 10.1016/j.dmpk.2019.06.001. Epub 2019 Jun 27.

Abstract

Flavin-containing monooxygenase 3 (FMO3) is a polymorphic xenobiotic- and dietary compound-metabolizing enzyme associated with the genetic disorder trimethylaminuria. We phenotyped 428 Japanese subjects using traditional urinary phenotyping assays and identified two subjects with <20% FMO3 metabolic capacity. Both subjects had novel frameshift mutations. Proband 1 harbored a novel CC deletion resulting in p.[(Pro153Gln fs; Phe166Ter)] FMO3, which was in trans configuration with p.(Cys197Ter). Proband 2 harbored a novel T deletion resulting in p.[(Met211Arg fs; Val220Ter)] FMO3, which was in trans configuration with p.[(Val257Met; Met260Val)]. We also analyzed a new large Japanese database for novel single nucleotide substitutions of FMO3 and identified the following variants with very low frequencies (<∼0.1%): p.(Lys56Glu), p.(Ser112Asn), p.(Asn164Lys), p.(Gly191Cys), p.(Ile199Ser), p.(Pro248Thr), p.(Pro248Leu), p.(Asp286Tyr), and p.(Ala311Pro). Recombinant FMO3 proteins of the above and unanalyzed variants underwent kinetic analysis of their trimethylamine/benzydamine N-oxygenation activities. Gly191Cys, Ile199Ser, Asp286Tyr, and Ala311Pro variant FMO3 proteins exhibited severely decreased activities (V/K <5% of wild-type). Although these new variants were rare alleles in Japanese self-reported trimethylaminuria sufferers and in the large genomic database, we found that most Japanese individuals compound heterozygous or homozygous for any of these missense FMO3 variants or known severe mutations [e.g., p.(Cys197Ter)] had impaired FMO3-dependent N-oxygenation of malodorous trimethylamine.

摘要

黄素单加氧酶 3(FMO3)是一种多态性的外源性化合物和膳食化合物代谢酶,与遗传疾病三甲基胺尿症有关。我们使用传统的尿液表型分析方法对 428 名日本受试者进行表型分析,发现了 2 名 FMO3 代谢能力低于 20%的受试者。这两名受试者均有新的移码突变。先证者 1 携带一个新的 CC 缺失,导致 p.[(Pro153Gln fs; Phe166Ter)] FMO3,该突变与 p.(Cys197Ter)呈反式构型。先证者 2 携带一个新的 T 缺失,导致 p.[(Met211Arg fs; Val220Ter)] FMO3,该突变与 p.(Val257Met; Met260Val)呈反式构型。我们还分析了一个新的大型日本数据库,以确定 FMO3 的新单核苷酸取代,并发现以下变体的频率非常低(<∼0.1%):p.(Lys56Glu)、p.(Ser112Asn)、p.(Asn164Lys)、p.(Gly191Cys)、p.(Ile199Ser)、p.(Pro248Thr)、p.(Pro248Leu)、p.(Asp286Tyr)和 p.(Ala311Pro)。上述和未分析变体的重组 FMO3 蛋白进行了三甲基胺/苯佐卡因 N-氧化活性的动力学分析。Gly191Cys、Ile199Ser、Asp286Tyr 和 Ala311Pro 变体 FMO3 蛋白表现出严重降低的活性(V/K 为野生型的<5%)。尽管这些新变体在日本自我报告的三甲基胺尿症患者和大型基因组数据库中是罕见的等位基因,但我们发现,大多数日本个体复合杂合或纯合这些错义 FMO3 变体或已知严重突变[例如,p.(Cys197Ter)],其 FMO3 依赖性恶臭三甲基胺的 N-氧化功能受损。

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