Yanagawa S, van Leeuwen F, Wodarz A, Klingensmith J, Nusse R
Howard Hughes Medical Institute, Department of Developmental Biology, Beckman Center, Stanford University, California 94305-5428, USA.
Genes Dev. 1995 May 1;9(9):1087-97. doi: 10.1101/gad.9.9.1087.
Wingless (Wg) is an important signaling molecule in the development of Drosophila, but little is known about its signal transduction pathway. Genetic evidence indicates that another segment polarity gene, dishevelled (dsh) is required for Wg signaling. We have recently developed a cell culture system for Wg protein activity, and using this in vitro system as well as intact Drosophila embryos, we have analyzed biochemical changes in the Dsh protein as a consequence of Wg signaling. We find that Dsh is a phosphoprotein, normally present in the cytoplasm. Wg signaling generates a hyperphosphorylated form of Dsh, which is associated with a membrane fraction. Overexpressed Dsh becomes hyperphosphorylated in the absence of extracellular Wg and increases levels of the Armadillo protein, thereby mimicking the Wg signal. A deletional analysis of Dsh identifies several conserved domains essential for activity, among which is a so-called GLGF/DHR motif. We conclude that dsh, a highly conserved gene, is not merely a permissive factor in Wg signaling but encodes a novel signal transduction molecule, which may function between the Wg receptor and more downstream signaling molecules.
无翅(Wg)是果蝇发育过程中的一种重要信号分子,但其信号转导途径却鲜为人知。遗传学证据表明,另一个体节极性基因——散乱(dsh)是Wg信号传导所必需的。我们最近开发了一种用于Wg蛋白活性的细胞培养系统,并利用这个体外系统以及完整的果蝇胚胎,分析了Wg信号传导导致的Dsh蛋白的生化变化。我们发现Dsh是一种磷蛋白,通常存在于细胞质中。Wg信号传导产生一种Dsh的超磷酸化形式,它与膜部分相关联。在没有细胞外Wg的情况下,过表达的Dsh会发生超磷酸化,并增加犰狳蛋白的水平,从而模拟Wg信号。对Dsh的缺失分析确定了几个对活性至关重要的保守结构域,其中包括一个所谓的GLGF/DHR基序。我们得出结论,dsh作为一个高度保守的基因,不仅是Wg信号传导中的一个许可因子,而且编码一种新型信号转导分子,它可能在Wg受体和更多下游信号分子之间发挥作用。