Hardiman Kirsten E, Brewster Rachel, Khan Shaema M, Deo Monika, Bodmer Rolf
Department of Biology, University of Michigan, Ann Arbor, Michigan 48109-1048, USA.
Genetics. 2002 May;161(1):231-47. doi: 10.1093/genetics/161.1.231.
The neural selector gene cut, a homeobox transcription factor, is required for the specification of the correct identity of external (bristle-type) sensory organs in Drosophila. Targets of cut function, however, have not been described. Here, we study bereft (bft) mutants, which exhibit loss or malformation of a majority of the interommatidial bristles of the eye and cause defects in other external sensory organs. These mutants were generated by excising a P element located at chromosomal location 33AB, the enhancer trap line E8-2-46, indicating that a gene near the insertion site is responsible for this phenotype. Similar to the transcripts of the gene nearest to the insertion, reporter gene expression of E8-2-46 coincides with Cut in the support cells of external sensory organs, which secrete the bristle shaft and socket. Although bft transcripts do not obviously code for a protein product, its expression is abolished in bft deletion mutants, and the integrity of the bft locus is required for (interommatidial) bristle morphogenesis. This suggests that disruption of the bft gene is the cause of the observed bristle phenotype. We also sought to determine what factors regulate the expression of bft and the enhancer trap line. The correct specification of individual external sensory organ cells involves not only cut, but also the lineage genes numb and tramtrack. We demonstrate that mutations of these three genes affect the expression levels at the bft locus. Furthermore, cut overexpression is sufficient to induce ectopic bft expression in the PNS and in nonneuronal epidermis. On the basis of these results, we propose that bft acts downstream of cut and tramtrack to implement correct bristle morphogenesis.
神经选择基因cut是一种同源异型盒转录因子,对于果蝇外部(刚毛型)感觉器官正确身份的指定是必需的。然而,cut功能的靶标尚未被描述。在这里,我们研究了bereft(bft)突变体,它们表现出眼睛中大多数小眼间刚毛的缺失或畸形,并导致其他外部感觉器官出现缺陷。这些突变体是通过切除位于染色体位置33AB的P元件(增强子陷阱系E8 - 2 - 46)产生的,这表明插入位点附近的一个基因负责这种表型。与最接近插入位点的基因转录本相似,E8 - 2 - 46的报告基因表达与外部感觉器官支持细胞中的Cut一致,这些支持细胞分泌刚毛轴和刚毛囊。虽然bft转录本没有明显编码蛋白质产物,但其表达在bft缺失突变体中被消除,并且bft基因座的完整性对于(小眼间)刚毛形态发生是必需的。这表明bft基因的破坏是观察到的刚毛表型的原因。我们还试图确定哪些因素调节bft和增强子陷阱系的表达。单个外部感觉器官细胞的正确指定不仅涉及cut,还涉及谱系基因numb和tramtrack。我们证明这三个基因的突变会影响bft基因座的表达水平。此外,cut的过表达足以在周围神经系统和非神经表皮中诱导异位bft表达。基于这些结果,我们提出bft在cut和tramtrack下游起作用,以实现正确的刚毛形态发生。