Li Jinghong, Li Willis X, Gelbart William M
Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138, USA.
Genetics. 2005 Dec;171(4):1629-41. doi: 10.1534/genetics.104.038356. Epub 2005 Jun 21.
The Dpp signaling pathway is essential for many developmental processes in Drosophila and its activity is tightly regulated. To identify additional regulators of Dpp signaling, we conducted a genetic screen for maternal-effect suppressors of dpp haplo-insufficiency. We screened approximately 7000 EMS-mutagenized genomes and isolated and mapped seven independent dominant suppressors of dpp, Su(dpp), which were recovered as second-site mutations that resulted in viable flies in trans-heterozygous with dpp(H46), a dpp null allele. Most of the Su(dpp) mutants exhibited increased cell numbers of the amnioserosa, a cell type specified by the Dpp pathway, suggesting that these mutations may augment Dpp signaling activity. Here we report the unexpected identification of one of the Su(dpp) mutations as an allele of the eukaryotic translation initiation factor 4A (eIF4A). We show that Su(dpp)(YE9) maps to eIF4A and that this allele is associated with a substitution, arginine 321 to histidine, at a well-conserved amino acid and behaves genetically as a dominant-negative mutation. This result provides an intriguing link between a component of the translation machinery and Dpp signaling.
Dpp信号通路对于果蝇的许多发育过程至关重要,其活性受到严格调控。为了鉴定Dpp信号通路的其他调节因子,我们针对dpp单倍体不足的母性效应抑制子进行了遗传筛选。我们筛选了大约7000个经EMS诱变的基因组,分离并定位了七个独立的dpp显性抑制子,即Su(dpp),它们作为第二位点突变被分离出来,这些突变与dpp(H46)(一种dpp无效等位基因)反式杂合时能产生可存活的果蝇。大多数Su(dpp)突变体表现出浆膜细胞数量增加,浆膜是一种由Dpp信号通路指定的细胞类型,这表明这些突变可能增强了Dpp信号活性。在此,我们报告意外发现其中一个Su(dpp)突变是真核翻译起始因子4A(eIF4A)的一个等位基因。我们表明Su(dpp)(YE9)定位于eIF4A,并且该等位基因与一个保守氨基酸处的精氨酸321替换为组氨酸有关,在遗传上表现为显性负性突变。这一结果在翻译机制的一个组成部分与Dpp信号之间建立了一个有趣的联系。