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猪、狗和猫中含黄素单加氧酶的分子与功能特性

Molecular and functional characterization of flavin-containing monooxygenases in pigs, dogs, and cats.

作者信息

Uno Yasuhiro, Shimizu Makiko, Ogawa Yurie, Makiguchi Miaki, Kawaguchi Hiroaki, Yamato Osamu, Ishizuka Mayumi, Yamazaki Hiroshi

机构信息

Joint Faculty of Veterinary Medicine, Kagoshima University, Kagoshima 890-0065, Japan.

Showa Pharmaceutical University, Machida, Tokyo 194-8543, Japan.

出版信息

Biochem Pharmacol. 2022 Aug;202:115125. doi: 10.1016/j.bcp.2022.115125. Epub 2022 Jun 8.

Abstract

Flavin-containing monooxygenases (FMOs) are drug-oxygenating enzymes that are present in the human genome as FMO1-5 and FMO6P. Among pig, dog, and cat FMOs, pig and dog FMO1 and FMO3 have been partly characterized, but other FMOs have not been systematically identified. In this study, orthologous FMO cDNAs were isolated from pig, dog, and cat livers and evaluated by sequence and phylogenetic analyses, tissue expression, and catalytic function. The amino acid sequences of pig, dog, and cat FMO1-5 shared high sequence identities (83-89%) with human FMO1-5 and were closely clustered in a phylogenetic tree. The gene structure and genomic organization of FMO1-5 were conserved across these species. Dog and pig FMO6P contained insertions of 1 and 83 bases, respectively, and are possibly pseudogenes similar to human FMO6P. Among the tissue types analyzed, pig FMO1 mRNA was abundant in liver, kidney, and lung; dog FMO3, FMO2, and FMO5 mRNAs were abundant in liver, lung, and kidney, respectively; cat FMO1 and FMO3 mRNAs were abundant in kidney and liver, respectively. Recombinant pig and dog FMO1-5 and cat FMO1-6 all mediated benzydamine and trimethylamine N-oxygenations and methyl p-tolyl sulfoxide S-oxygenation. The selective human FMO3 substrate trimethylamine was predominantly metabolized by pig FMO1, dog FMO3, and cat FMO3. Cat FMO6 was also active toward trimethylamine. These results suggest some similarities in the drug-metabolizing capabilities of FMO3 in dogs, cats, and humans and that dog and cat FMO3 generally have molecular and functional characteristics similar to human FMO3, being the major FMO in human liver.

摘要

含黄素单加氧酶(FMOs)是一类药物加氧酶,在人类基因组中以FMO1 - 5和FMO6P的形式存在。在猪、狗和猫的FMOs中,猪和狗的FMO1和FMO3已得到部分表征,但其他FMOs尚未被系统鉴定。在本研究中,从猪、狗和猫的肝脏中分离出直系同源FMO cDNA,并通过序列和系统发育分析、组织表达及催化功能进行评估。猪、狗和猫FMO1 - 5的氨基酸序列与人类FMO1 - 5具有高度的序列同一性(83 - 89%),并在系统发育树中紧密聚类。FMO1 - 5的基因结构和基因组组织在这些物种中是保守的。狗和猪的FMO6P分别含有1个和83个碱基的插入,可能是类似于人类FMO6P的假基因。在所分析的组织类型中,猪FMO1 mRNA在肝脏、肾脏和肺中丰富;狗FMO3、FMO2和FMO5 mRNA分别在肝脏、肺和肾脏中丰富;猫FMO1和FMO3 mRNA分别在肾脏和肝脏中丰富。重组猪和狗的FMO1 - 5以及猫的FMO1 - 6均介导苄达明和三甲胺的N - 氧化以及对甲苯亚砜甲基的S - 氧化。选择性的人类FMO3底物三甲胺主要由猪FMO1、狗FMO

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