Biryukova Inna, Heitzler Pascal
Department of Developmental Biology/IGBMC, 1, rue Laurent Fries, BP 10142, 67404 Illkirch CEDEX, France.
Dev Biol. 2005 Dec 15;288(2):559-70. doi: 10.1016/j.ydbio.2005.09.033. Epub 2005 Nov 2.
The pattern of the external sensory organs (SO) in Drosophila depends on the activity of the basic helix-loop-helix (bHLH) transcriptional activators Achaete/Scute (Ac/Sc) that are expressed in clusters of cells (pro-neural clusters) and provide the cells with the potential to develop a neural fate. In the mesothorax, the GATA1 transcription factor Pannier (Pnr), together with its cofactor Chip, activates ac/sc genes directly through binding to the dorso-central enhancer (DC) of ac/sc. We identify the LIM-homeo domain (LIM-HD) transcription factor Islet (Isl) by genetic screening and investigate its role in the thoracic pre-patterning. We show that isl loss-of-function mutations result in expanded Ac expression in DC and scutellar (SC) pro-neural clusters and formation of ectopic sensory organs. Overexpression of Isl decreases pro-neural expression and suppresses bristle development. Moreover, Isl is coexpressed with Pnr in the posterior region of the mesothorax. In the DC pro-neural cluster, Isl antagonizes Pnr activity both by dimerization with the DNA-binding domain of Pnr and via competitive inhibition of the Chip-bHLH interaction. We propose that sensory organ pre-patterning relies on the antagonistic activity of individual Chip-binding factors. The differential affinities of these binding-factors and their precise stoichiometry are crucial in specifying pre-patterns within the different pro-neural clusters.
果蝇外部感觉器官(SO)的模式取决于碱性螺旋-环-螺旋(bHLH)转录激活因子无刚毛/小盾片(Ac/Sc)的活性,这些因子在细胞簇(神经前体细胞簇)中表达,并赋予细胞发展为神经命运的潜力。在中胸,GATA1转录因子Pannier(Pnr)与其辅因子Chip一起,通过结合ac/sc的背中央增强子(DC)直接激活ac/sc基因。我们通过遗传筛选鉴定了LIM同源结构域(LIM-HD)转录因子胰岛(Isl),并研究了其在胸段预模式形成中的作用。我们发现,isl功能丧失突变会导致DC和小盾片(SC)神经前体细胞簇中Ac表达的扩展以及异位感觉器官的形成。Isl的过表达会降低神经前体细胞的表达并抑制刚毛发育。此外,Isl与Pnr在中胸后部共同表达。在DC神经前体细胞簇中,Isl通过与Pnr的DNA结合结构域二聚化以及通过竞争性抑制Chip-bHLH相互作用来拮抗Pnr的活性。我们提出,感觉器官预模式形成依赖于单个Chip结合因子的拮抗活性。这些结合因子的不同亲和力及其精确的化学计量对于在不同神经前体细胞簇中指定预模式至关重要。