Division of Neurogenetics, Tohoku University Graduate School of Life Sciences, Sendai 980-8577, Japan.
National Institute of Genetics, Mishima 411-8540, Japan.
Curr Biol. 2016 Jun 20;26(12):1532-1542. doi: 10.1016/j.cub.2016.04.067. Epub 2016 Jun 2.
The Drosophila fruitless (fru) gene is regarded as a master regulator of the formation of male courtship circuitry, yet little is known about its molecular basis of action. We show that roundabout 1 (robo1) knockdown in females promotes formation of the male-specific neurite in sexually dimorphic mAL interneurons and that overexpression of the male-specific Fru(BM) diminishes the expression of Robo1 in the fly brain. Our electrophoretic mobility shift and reporter assays identify the 42-bp segment encompassing the palindrome sequence T T C G C T G C G C C G T G A A in the 5' UTR of robo1 exon1 as the Fru(BM)-responsive element. We find that ∼10-bp deletions in the palindrome sequence induce a loss of the male-specific neurite and disrupt male courtship patterns. This study paves the way for a thorough understanding of the mechanism whereby Fru proteins orchestrate transcription for the formation of courtship circuitry.
果蝇 fruitless (fru) 基因被认为是雄性求偶回路形成的主要调节因子,但对其作用的分子基础知之甚少。我们发现,雌性中 roundabout 1 (robo1) 的敲低促进了性二态 mAL 中间神经元中雄性特异性神经突的形成,并且雄性特异性 Fru(BM) 的过表达降低了果蝇大脑中 Robo1 的表达。我们的电泳迁移率变动和报告基因分析鉴定出 robo1 外显子 1 的 5' UTR 中包含回文序列 T T C G C T G C G C C G T G A A 的 42 个碱基片段是 Fru(BM) 反应元件。我们发现,回文序列中约 10 个碱基的缺失会导致雄性特异性神经突的丧失,并破坏雄性求偶模式。这项研究为深入了解 Fru 蛋白协调转录以形成求偶回路的机制铺平了道路。