Zhao D, Clyde D, Bownes M
The University of Edinburgh, Institute of Cell and Molecular Biology, Darwin Building, King's Buildings, Mayfield Road, Edinburgh EH9 3JR, UK.
J Cell Sci. 2000 Nov;113 Pt 21:3781-94. doi: 10.1242/jcs.113.21.3781.
Signalling by the Gurken/Epidermal Growth Factor Receptor (Grk/EGFR) pathway is involved in epithelial cell fate decision, morphogenesis and axis establishment in Drosophila oogenesis. In the search for genes downstream of the Grk/EGFR signal transduction pathway (STP), we isolated a number of genes that are components of other STPs. One of them is a known gene, called fringe (fng). Drosophila fng encodes a putative secreted protein that is required at other development stages for mediating interactions between dorsal and ventral cells via Notch signalling. Here we show that fng has a dynamic expression pattern in oogenesis and that its expression in specific groups of follicle cells along the anterior-posterior and dorsal-ventral axes is defined by the repression of fng by Grk. Interfering with fng expression using antisense RNA experiments resulted in a typical fng mutant phenotype in the wing, and malformed egg chambers and abnormal organisation of the follicle cells in the ovaries, revealing that fng is essential in oogenesis for the proper formation of the egg chamber and for epithelial morphogenesis. This has been confirmed by re-examination of fng mutants and analysis of fng mutant clones in oogenesis.
在果蝇卵子发生过程中, Gurken/表皮生长因子受体(Grk/EGFR)信号通路参与上皮细胞命运决定、形态发生和轴的建立。在寻找Grk/EGFR信号转导通路(STP)下游基因的过程中,我们分离出了一些属于其他信号转导通路的基因。其中一个是已知基因,称为边缘(fng)。果蝇fng编码一种假定的分泌蛋白,在其他发育阶段,该蛋白通过Notch信号介导背侧和腹侧细胞之间的相互作用。在此我们表明,fng在卵子发生过程中具有动态表达模式,并且其在沿前后轴和背腹轴的特定卵泡细胞群中的表达是由Grk对fng的抑制作用所决定的。使用反义RNA实验干扰fng表达会导致翅膀出现典型的fng突变体表型,以及卵巢中卵室畸形和卵泡细胞组织异常,这表明fng在卵子发生过程中对于卵室的正常形成和上皮形态发生至关重要。对fng突变体的重新检查以及卵子发生过程中fng突变体克隆的分析证实了这一点。