Parvy J-P, Blais C, Bernard F, Warren J T, Petryk A, Gilbert L I, O'Connor M B, Dauphin-Villemant C
FRE2852 CNRS Protéines: Biochimie structurale et fonctionnelle, Groupe Biogenèse des Stéroïdes, Université P. et M. Curie, Bat. A, Case 29, 7 Quai St. Bernard, 75252 Paris Cedex 05, France.
Dev Biol. 2005 Jun 1;282(1):84-94. doi: 10.1016/j.ydbio.2005.02.028.
Variations in ecdysteroid titers play crucial roles in arthropods by initiating and regulating molting and metamorphosis. The recent identification of genes coding for cytochrome P450 enzymes involved in Drosophila ecdysteroidogenesis provides new molecular tools to investigate the regulation of insect hormone production. In the present study, we used an enzyme immunoassay to show that the molting hormone titer is strictly correlated with the steroidogenic capacity of the ring gland. A temporal correlation between dynamics of ecdysone production and expression of genes encoding steroidogenic enzymes was observed during the third instar, suggesting that the timing of hormone production depends on transcriptional regulation of the biosynthetic enzymes. Using clonal analysis, levels of two steroidogenic enzymes, Phantom (PHM) and Disembodied (DIB), were shown to be very reduced in ftz transcription factor 1 (ftz-f1) mutant ring gland cells whereas there was no effect of the without children (woc) mutation, suggesting that FTZ-F1 regulates phm and dib expression. Since betaFTZ-F1 is the homolog of the vertebrate steroidogenic factor 1 (SF1), which plays a key role in the differentiation of vertebrate steroidogenic organs through transcriptional regulation of steroidogenic enzymes, this study emphasizes the strong parallels between insects and vertebrates with respect to the regulatory mechanisms of steroidogenesis.
蜕皮甾体滴度的变化通过启动和调节蜕皮及变态在节肢动物中发挥关键作用。最近对果蝇蜕皮甾体生成过程中涉及的细胞色素P450酶编码基因的鉴定,为研究昆虫激素产生的调控提供了新的分子工具。在本研究中,我们使用酶免疫测定法表明蜕皮激素滴度与环腺的类固醇生成能力密切相关。在三龄幼虫期观察到蜕皮激素产生动态与类固醇生成酶编码基因表达之间的时间相关性,这表明激素产生的时间取决于生物合成酶的转录调控。通过克隆分析发现,在ftz转录因子1(ftz-f1)突变的环腺细胞中,两种类固醇生成酶幻影(PHM)和无实体(DIB)的水平显著降低,而无子代(woc)突变则没有影响,这表明FTZ-F1调节phm和dib的表达。由于βFTZ-F1是脊椎动物类固醇生成因子1(SF1)的同源物,SF1通过对类固醇生成酶的转录调控在脊椎动物类固醇生成器官的分化中起关键作用,因此本研究强调了昆虫和脊椎动物在类固醇生成调控机制方面的强烈相似性。