Rewitz K F, Rybczynski R, Warren J T, Gilbert L I
Department of Life Sciences and Chemistry, Roskilde University, P.O. Box 260, 4000 Roskilde, Denmark.
Biochem Soc Trans. 2006 Dec;34(Pt 6):1256-60. doi: 10.1042/BST0341256.
The developmental events occurring during moulting and metamorphosis of insects are controlled by precisely timed changes in levels of ecdysteroids, the moulting hormones. The final four sequential hydroxylations of steroid precursors into the active ecdysteroid of insects, 20E (20-hydroxyecdysone), are mediated by four cytochrome P450 (P450) enzymes, encoded by genes in the Halloween family. Orthologues of the Drosophila Halloween genes phantom (phm; CYP306A1), disembodied (dib; CYP302A1), shadow (sad; CYP315A1) and shade (shd; CYP314A1) were obtained from the endocrinological model insect, the tobacco hornworm Manduca sexta. Expression of these genes was studied and compared with changes in the ecdysteroid titre that controls transition from the larval to pupal stage. phm, dib and sad, which encode P450s that mediate the final hydroxylations in the biosynthesis of ecdysone, were selectively expressed in the prothoracic gland, the primary source of ecdysone during larval and pupal development. Changes in their expression correlate with the haemolymph ecdysteroid titre during the fifth (final) larval instar. Shd, the 20-hydroxylase, which converts ecdysone into the more active 20E, is expressed in tissues peripheral to the prothoracic glands during the fifth instar. Transcript levels of shd in the fat body and midgut closely parallel the enzyme activity measured in vitro. The results indicate that these Halloween genes are transcriptionally regulated to support the high biosynthetic activity that produces the cyclic ecdysteroid pulses triggering moulting.
昆虫蜕皮和变态过程中发生的发育事件受蜕皮甾体(蜕皮激素)水平精确的定时变化控制。甾体前体最终连续四次羟基化形成昆虫活性蜕皮甾体20E(20-羟基蜕皮酮),由万圣节基因家族中的四个细胞色素P450(P450)酶介导。从内分泌模型昆虫烟草天蛾中获得了果蝇万圣节基因幻影(phm;CYP306A1)、无体(dib;CYP302A1)、影子(sad;CYP315A1)和阴影(shd;CYP314A1)的直系同源基因。研究了这些基因的表达,并与控制从幼虫到蛹阶段转变的蜕皮甾体滴度变化进行了比较。phm、dib和sad编码介导蜕皮激素生物合成中最终羟基化的P450,它们在胸腺中选择性表达,胸腺是幼虫和蛹发育过程中蜕皮激素的主要来源。在第五(末)龄幼虫期间,它们的表达变化与血淋巴蜕皮甾体滴度相关。20-羟化酶shd将蜕皮激素转化为活性更强的20E,在第五龄期间在胸腺周围组织中表达。脂肪体和中肠中shd的转录水平与体外测得的酶活性密切平行。结果表明,这些万圣节基因受到转录调控,以支持产生触发蜕皮的周期性蜕皮甾体脉冲的高生物合成活性。