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一种新型细胞色素P450,CYP3201B1,参与了一种含氰千足虫中()-扁桃腈的生物合成。 (注:原文括号处内容缺失)

A novel cytochrome P450, CYP3201B1, is involved in ()-mandelonitrile biosynthesis in a cyanogenic millipede.

作者信息

Yamaguchi Takuya, Kuwahara Yasumasa, Asano Yasuhisa

机构信息

Biotechnology Research Center and Department of Biotechnology Toyama Prefectural University Imizu Japan; JSTERATO Asano Active Enzyme Molecule Project Imizu Japan.

出版信息

FEBS Open Bio. 2017 Feb 1;7(3):335-347. doi: 10.1002/2211-5463.12170. eCollection 2017 Mar.

Abstract

UNLABELLED

Specialized arthropods and more than 2500 plant species biosynthesize hydroxynitriles and release hydrogen cyanide as a defensive mechanism. The millipede accumulates ()-mandelonitrile as a cyanide precursor. Although biosynthesis of hydroxynitriles in cyanogenic plants and in an insect are extensively studied, ()-mandelonitrile biosynthesis in cyanogenic millipedes has remained unclear. In this study, we identified the biosynthetic precursors of ()-mandelonitrile and an enzyme involved in ()-mandelonitrile biosynthesis. Using deuterium-labelled compounds, we revealed that (/)-phenylacetaldoxime and phenylacetonitrile are the biosynthetic precursors of ()-mandelonitrile in the millipede as well as other cyanogenic organisms. To identify the enzymes involved in ()-mandelonitrile biosynthesis, 50 cDNAs encoding cytochrome P450s were cloned and coexpressed with yeast cytochrome P450 reductase in yeast, as cytochrome P450s are involved in the biosynthesis of hydroxynitriles in other cyanogenic organisms. Among the 50 cytochrome P450s from the millipede, CYP3201B1 produced ()-mandelonitrile from phenylacetonitrile but not from (/)-phenylacetaldoxime, whereas plant and insect cytochrome P450s catalysed the dehydration of aldoximes and hydroxylation of nitriles. CYP3201B1 is not phylogenetically related to cytochrome P450s from other cyanogenic organisms, indicating that hydroxynitrile biosynthetic cytochrome P450s have independently evolved in distant species. Our study will shed light on the evolution of cyanogenesis among plants, insects and millipedes.

DATABASE

Nucleotide sequence data are available in the DDBJ/EMBL/GenBank databases under the accession numbers LC125356-LC125405.

摘要

未标记

特殊节肢动物和2500多种植物物种生物合成羟基腈并释放氰化氢作为一种防御机制。千足虫积累()-扁桃腈作为氰化物前体。尽管对含氰植物和昆虫中羟基腈的生物合成进行了广泛研究,但含氰千足虫中()-扁桃腈的生物合成仍不清楚。在本研究中,我们鉴定了()-扁桃腈的生物合成前体以及参与()-扁桃腈生物合成的一种酶。使用氘标记化合物,我们揭示了(/)-苯乙醛肟和苯乙腈是千足虫以及其他含氰生物中()-扁桃腈的生物合成前体。为了鉴定参与()-扁桃腈生物合成的酶,克隆了50个编码细胞色素P450的cDNA,并在酵母中与酵母细胞色素P450还原酶共表达,因为细胞色素P450参与其他含氰生物中羟基腈的生物合成。在来自千足虫的50种细胞色素P450中,CYP3201B1从苯乙腈产生()-扁桃腈,但不从(/)-苯乙醛肟产生,而植物和昆虫细胞色素P450催化醛肟的脱水和腈的羟基化。CYP3201B1在系统发育上与其他含氰生物的细胞色素P450无关,这表明羟基腈生物合成细胞色素P450在远缘物种中独立进化。我们的研究将阐明植物、昆虫和千足虫中氰生成的进化。

数据库

核苷酸序列数据可在DDBJ/EMBL/GenBank数据库中获取,登录号为LC125356-LC125405。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76a4/5337904/e4572f042d98/FEB4-7-335-g001.jpg

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