Sullivan April A, Thummel Carl S
Howard Hughes Medical Institute, Department of Human Genetics, University of Utah School of Medicine, University of Utah, Salt Lake City, Utah 84112-5331, USA.
Mol Endocrinol. 2003 Nov;17(11):2125-37. doi: 10.1210/me.2002-0430. Epub 2003 Jul 24.
The recent completion of the Drosophila genome sequence revealed 21 members of the nuclear receptor superfamily. Many of these genes are transcriptionally regulated by the steroid hormone ecdysone and play a role during the onset of metamorphosis, including the EcR/USP ecdysone receptor heterodimer. As a first step toward a genomic analysis of this gene family, we have characterized the temporal patterns of expression for all detectable nuclear receptor transcripts throughout major ecdysone-regulated developmental transitions in the life cycle: embryogenesis, a larval molt, puparium formation, and the prepupal-pupal transition. We find an unexpected close temporal relationship between DHR3, E75B, and betaFTZ-F1 expression after each major ecdysone pulse examined, reflecting the known cross-regulatory interactions of these genes in prepupae and suggesting that they act together at other stages in the life cycle. In addition, E75A, E78B, and DHR4 are expressed in a reproducible manner with DHR3, E75B, and betaFTZ-F1, suggesting that they intersect with this regulatory cascade. Finally, we find that known ecdysone-inducible primary-response transcripts are coordinately induced at times when the ecdysteroid titer is low, implying the existence of novel, as yet uncharacterized, temporal signals in Drosophila.
果蝇基因组序列最近完成,揭示了核受体超家族的21个成员。这些基因中的许多受类固醇激素蜕皮激素转录调控,并在变态开始时发挥作用,包括EcR/USP蜕皮激素受体异二聚体。作为对该基因家族进行基因组分析的第一步,我们已对生命周期中所有可检测到的核受体转录本在主要蜕皮激素调控的发育转变过程中的表达时间模式进行了表征:胚胎发生、幼虫蜕皮、化蛹以及预蛹-蛹转变。我们发现在所检测的每个主要蜕皮激素脉冲之后,DHR3、E75B和βFTZ-F1的表达之间存在意想不到的紧密时间关系,这反映了这些基因在预蛹中已知的交叉调控相互作用,并表明它们在生命周期的其他阶段共同发挥作用。此外,E75A、E78B和DHR4与DHR3、E75B和βFTZ-F1以可重复的方式表达,表明它们与这一调控级联相交。最后,我们发现已知的蜕皮激素诱导的初级反应转录本在蜕皮甾类滴度较低时被协同诱导,这意味着果蝇中存在尚未表征的新型时间信号。