Hung C F, Berenbaum M R, Schuler M A
Department of Entomology, University of Illinois, Urbana 61801, USA.
Insect Biochem Mol Biol. 1997 May;27(5):377-85. doi: 10.1016/s0965-1748(97)00009-x.
Papilio glaucus (tiger swallowtail) is a generalist that rarely encounters plants containing furanocoumarins yet is constitutively capable of metabolizing low levels of these highly toxic allelochemicals. In larvae of this species, metabolism of linear (xanthotoxin, bergapten), and angular (angelicin, sphondin), furanocoumarins can be induced up to 30-fold by the presence of xanthotoxin in their diet. Degenerate primers corresponding to conserved amino acid sequences in three insect P450s, Musca domestica (CYP6A1), Drosophila melanogaster (CYP6A2) and Papilio polyxenes (CYP6B1), were used to clone xanthotoxin-induced P450 transcripts from P. glaucus larvae by a reverse transcription-polymerase chain reaction (RT-PCR) strategy. Positive clones encoding the highly conserved F--G-R-C-G P450 signature motif were used to isolate a full-length CYP6B4v1 cDNA from a P. glaucus xanthotoxin-induced cDNA library. Sequence comparisons indicate the P. glaucus CYP6B4v1 protein sequence is 63% and 61% identical, respectively, to the P. polyxenes furanocoumarin-inducible CYP6B1v1 and CYP6B3v1 proteins. Northern analysis indicates that CYP6B4 and related transcripts are highly induced in response to xanthotoxin. Baculovirus-mediated expression of the CYP6B4v1 protein in lepidopteran cell lines demonstrates that this P450 isozyme metabolizes isopimpinellin, imperatorin, and bergapten at high rates, xanthotoxin and psoralen at intermediate rates and angelicin, sphondin, and trioxsalen only at very low rates.
北美虎凤蝶是一种多食性昆虫,很少接触到含有呋喃香豆素的植物,但它本身能够代谢低水平的这些高毒性化感物质。在该物种的幼虫中,食物中存在黄毒素可使线性呋喃香豆素(花椒毒素、佛手柑内酯)和角型呋喃香豆素(白芷素、匙叶桉油烯醇)的代谢诱导增加至30倍。对应于三种昆虫细胞色素P450(家蝇CYP6A1、黑腹果蝇CYP6A2和金凤蝶CYP6B1)保守氨基酸序列的简并引物,用于通过逆转录聚合酶链反应(RT-PCR)策略从北美虎凤蝶幼虫中克隆黄毒素诱导的细胞色素P450转录本。编码高度保守的F--G-R-C-G细胞色素P450特征基序的阳性克隆,用于从北美虎凤蝶黄毒素诱导的cDNA文库中分离全长CYP6B4v1 cDNA。序列比较表明,北美虎凤蝶CYP6B4v1蛋白序列分别与金凤蝶呋喃香豆素诱导型CYP6B1v1和CYP6B3v1蛋白具有63%和61%的同一性。Northern分析表明,CYP6B4及相关转录本对黄毒素高度诱导。杆状病毒介导的CYP6B4v1蛋白在鳞翅目细胞系中的表达表明,这种细胞色素P450同工酶能高效代谢异茴芹素、欧前胡素和佛手柑内酯,以中等速率代谢黄毒素和补骨脂素,仅以极低速率代谢白芷素、匙叶桉油烯醇和三氧沙林。