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CYP6B3:在金凤蝶中表达的第二种呋喃香豆素诱导型细胞色素P450。

CYP6B3: a second furanocoumarin-inducible cytochrome P450 expressed in Papilio polyxenes.

作者信息

Hung C F, Harrison T L, Berenbaum M R, Schuler M A

机构信息

Department of Entomology, University of Illinois, Urbana 61801, USA.

出版信息

Insect Mol Biol. 1995 Aug;4(3):149-60. doi: 10.1111/j.1365-2583.1995.tb00020.x.

Abstract

Cytochrome P450 monooxygenases in the larvae of Papilio polyxenes (black swallowtail) (Lepidoptera: Papilionidae) are capable of detoxifying linear and angular furanocoumarins found in their host plants. The CYP6B1 locus, which is transcriptionally induced in these larvae in response to xanthotoxin, encodes a P450 that principally metabolizes linear furanocoumarins such as xanthotoxin and bergapten. We have now cloned CYP6B3 cDNA derived from a second locus that is evolutionarily related to the CYP6B1 locus. Reverse transcription-PCR Southern analyses have demonstrated that CYP6B3 transcripts are expressed in response to a wider range of linear and angular furanocoumarins but at lower abundance than CYP6B1 transcripts. Whereas CYP6B1 transcripts are expressed at a low detectable level in uninduced control larvae and at high levels in xanthotoxin-induced larvae, CYP6B3 transcripts are nearly undetectable in control larvae and are highly induced by xanthotoxin and bergapten (linear furanocoumarins) as well as by angelicin and sphondin (angular furanocoumarins). The fact that these two CYP6B loci are differentially regulated by these four furanocoumarins indicates that P. polyxenes has adapted to the presence of the wide range of furanocoumarins in its host plants by diversifying its P450 isozyme structure and its furanocoumarin-responsive regulatory cascades.

摘要

金凤蝶(黑凤蝶)(鳞翅目:凤蝶科)幼虫中的细胞色素P450单加氧酶能够对其寄主植物中发现的线性和角型呋喃香豆素进行解毒。CYP6B1基因座在这些幼虫中受黄曲霉毒素诱导转录,编码一种主要代谢线性呋喃香豆素(如黄曲霉毒素和补骨脂素)的P450。我们现已克隆出源自与CYP6B1基因座进化相关的第二个基因座的CYP6B3 cDNA。逆转录 - PCR Southern分析表明,CYP6B3转录本对更广泛的线性和角型呋喃香豆素产生响应,但丰度低于CYP6B1转录本。CYP6B1转录本在未诱导的对照幼虫中以低可检测水平表达,在黄曲霉毒素诱导的幼虫中高水平表达,而CYP6B3转录本在对照幼虫中几乎检测不到,并且受到黄曲霉毒素和补骨脂素(线性呋喃香豆素)以及当归素和sphondin(角型呋喃香豆素)的高度诱导。这两个CYP6B基因座受这四种呋喃香豆素差异调节这一事实表明,金凤蝶通过使其P450同工酶结构及其呋喃香豆素响应调节级联多样化,适应了其寄主植物中广泛存在的呋喃香豆素。

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