Fromental-Ramain Catherine, Vanolst Luc, Delaporte Claude, Ramain Philippe
Institut de Génétique et de Biologie Moléculaire et Cellulaire, CNRS/INSERM/ULP, Ilkirch Cedex, France.
Mech Dev. 2008 Jan-Feb;125(1-2):43-57. doi: 10.1016/j.mod.2007.10.008. Epub 2007 Oct 24.
Previous studies have shown that the pannier (pnr) gene of Drosophila encodes a GATA transcription factor which is involved in various biological processes, including heart development, dorsal closure during embryogenesis as well as neurogenesis and regulation of wingless (wg) expression during imaginal development. We demonstrate here that pnr encodes two highly related isoforms that share functional domains but are differentially expressed during development. Moreover, we describe two genomic regions of the pnr locus that drive expression of a reporter in transgenic flies in patterns that recapitulate essential features of the expression of the isoforms, suggesting that these regions encompass crucial regulatory elements. These elements contain, in particular, sequences mediating regulation of expression by Decapentaplegic (Dpp) signaling, during both embryogenesis and imaginal development. Analysis of pnr alleles reveals that the isoforms differentially regulate expression of both wg and proneural achaete/scute (as/sc) targets during imaginal development. Pnr function has been demonstrated to be necessary both for activation of wg and, together with U-shaped (Ush), for its repression in the dorsal-most region of the presumptive notum. Expression of the isoforms define distinct longitudinal domains and, in this regard, we importantly show that the dual function of pnr during regulation of wg is achieved by one isoform repressing expression of the morphogen in the dorsal-most region of the disc while the other laterally promotes activation of the notal wg expression. Our study provides novel insights into pnr function during Drosophila development and extends our knowledge of the roles of prepattern factors during thorax patterning.
先前的研究表明,果蝇的挎篮(pnr)基因编码一种GATA转录因子,该因子参与多种生物学过程,包括心脏发育、胚胎发生过程中的背侧闭合以及成虫发育过程中的神经发生和无翅(wg)表达的调控。我们在此证明,pnr编码两种高度相关的异构体,它们共享功能域,但在发育过程中差异表达。此外,我们描述了pnr基因座的两个基因组区域,它们在转基因果蝇中驱动报告基因的表达,其模式概括了异构体表达的基本特征,这表明这些区域包含关键的调控元件。这些元件尤其包含在胚胎发生和成虫发育过程中介导由Decapentaplegic(Dpp)信号传导调控表达的序列。对pnr等位基因的分析表明,这些异构体在成虫发育过程中差异调节wg和神经前体achaete/scute(as/sc)靶标的表达。已证明Pnr功能对于wg的激活以及与U形(Ush)一起在假定背板的最背侧区域对其抑制都是必要的。异构体的表达定义了不同的纵向结构域,在这方面,我们重要地表明,pnr在wg调控过程中的双重功能是通过一种异构体在盘的最背侧区域抑制形态发生素的表达,而另一种异构体在侧面促进背板wg表达的激活来实现的。我们的研究为果蝇发育过程中pnr的功能提供了新的见解,并扩展了我们对胸节模式形成过程中预模式因子作用的认识。