Bouchard M, St-Amand J, Côté S
Centre de Recherche de L'Hôtel-Dieu de Québec, Canada.
Dev Biol. 2000 Jun 1;222(1):135-46. doi: 10.1006/dbio.2000.9702.
The early expression of the Drosophila segment polarity gene gooseberry (gsb) is under the control of the pair-rule genes. We have identified a 514-bp enhancer which reproduces the early gsb expression pattern in transgenic flies. The transcription factor Paired (Prd) is the main activator of this enhancer in all parasegments of the embryo. It binds to paired- and homeodomain-binding sites, which are segregated on the enhancer. Using site-directed mutagenesis, we have identified sites critical for Prd activity. Negative regulation of this enhancer is mediated by the Even-skipped protein (Eve) in the odd-numbered parasegments and by the combination of Fushi-tarazu (Ftz) and Odd-skipped proteins in the even-numbered parasegments. The organisation of the Prd-binding sites, as well as the necessity for intact DNA binding sites for both paired- and homeodomains, suggests a molecular model whereby the two DNA-binding domains of the Prd protein cooperate in transcriptional activation of gsb. This positive activity appears to be in competition with Eve and Ftz on Prd homeodomain-binding sites.
果蝇体节极性基因醋栗(gsb)的早期表达受配对规则基因的控制。我们鉴定出一个514碱基对的增强子,它在转基因果蝇中重现了gsb的早期表达模式。转录因子成对(Prd)是该增强子在胚胎所有副体节中的主要激活因子。它与位于增强子上的成对结构域和同源结构域结合位点相结合。通过定点诱变,我们确定了对Prd活性至关重要的位点。该增强子的负调控由奇数副体节中的偶数跳蛋白(Eve)以及偶数副体节中的分节基因(Ftz)和奇数跳蛋白的组合介导。Prd结合位点的组织方式,以及成对结构域和同源结构域完整DNA结合位点的必要性,提示了一种分子模型,即Prd蛋白的两个DNA结合结构域在gsb的转录激活中协同作用。这种正性活性似乎在Prd同源结构域结合位点上与Eve和Ftz相互竞争。