Ma R, Cohen M B, Berenbaum M R, Schuler M A
Department of Entomology, University of Illinois, Urbana 61801.
Arch Biochem Biophys. 1994 May 1;310(2):332-40. doi: 10.1006/abbi.1994.1175.
Cytochrome P450 monooxygenases are involved in metabolism of hostplant allelochemicals by larval Lepidoptera. Biochemical purification of the P450 polypeptide induced in Papilio polyxenes (black swallowtail) larvae in response to xanthotoxin, a linear furanocoumarin, has allowed us to clone cDNAs encoding two allelic variants of the CYP6B1 locus. Expression of these alleles in lepidopteran cell lines using baculovirus expression vectors has demonstrated that both P450 isoforms metabolize substantial amounts of linear furanocoumarins, such as xanthotoxin and bergapten, but not angular furanocoumarins, such as angelicin and sphondin. These linear furanocoumarins are ubiquitous constituents of the hostplants of P. polyxenes. The efficiency of linear furanocoumarin metabolism is strongly affected by the nature of the substituents on the benzene ring; methoxy-derivatives are metabolized more efficiently than are derivatives with smaller (hydroxy-) or larger (8-O isopentenyl) groups. Metabolism of either bergapten or xanthotoxin is inhibited in the presence of the other. In addition, metabolism of linear furanocoumarins is inhibited by the presence of nonmetabolizable angular furanocoumarins, indicating that the active site of CYP6B1 binds angular furanocoumarins. The reactivities described here indicate that P. polyxenes larvae express at least two selective furanocoumarin-metabolic P450s: CYP6B1, which metabolizes a discrete set of linear furanocoumarins, and another P450, as yet unidentified, which metabolizes angular furanocoumarins more efficiently than does CYP6B1.
细胞色素P450单加氧酶参与鳞翅目幼虫对寄主植物化感物质的代谢。对线性呋喃香豆素黄曲霉毒素作出反应的凤蝶幼虫中诱导产生的P450多肽的生化纯化,使我们能够克隆编码CYP6B1基因座两个等位基因变体的cDNA。使用杆状病毒表达载体在鳞翅目细胞系中表达这些等位基因,已证明这两种P450同工型都能代谢大量的线性呋喃香豆素,如黄曲霉毒素和补骨脂素,但不能代谢角型呋喃香豆素,如白芷素和海绵素。这些线性呋喃香豆素是凤蝶寄主植物中普遍存在的成分。线性呋喃香豆素代谢的效率受到苯环上取代基性质的强烈影响;甲氧基衍生物比具有较小(羟基)或较大(8-O异戊烯基)基团的衍生物代谢更有效。补骨脂素或黄曲霉毒素的代谢在另一种存在时会受到抑制。此外,不可代谢的角型呋喃香豆素的存在会抑制线性呋喃香豆素的代谢,这表明CYP6B1的活性位点与角型呋喃香豆素结合。这里描述的反应性表明,凤蝶幼虫表达至少两种选择性呋喃香豆素代谢P450:CYP6B1,它代谢一组离散的线性呋喃香豆素,以及另一种尚未鉴定的P450,它对角型呋喃香豆素的代谢比CYP6B1更有效。