Tomlinson A, Strapps W R, Heemskerk J
Department of Genetics and Development, College of Physicians and Surgeons of Columbia University, New York, NY 10032, USA.
Development. 1997 Nov;124(22):4515-21. doi: 10.1242/dev.124.22.4515.
Drosophila Frizzled-2 (Dfz2) has been identified as a putative fly Wingless (Wg) receptor. Although Dfz2 shows significant homology with Fz, a protein that operates in the mechanisms that establish planar polarity in Drosophila epithelia, any clear evidence for an involvement by Fz in a Wnt signaling pathway has hitherto been absent. Here we describe the planar polarity phenotypes of loss-of-function and overexpression of Fz in the developing Drosophila eye and find it almost identical to the loss-of-function or overexpression of Dishevelled (Dsh - a protein operating in Wnt second messenger systems). In addition, we show that overexpression of Shaggy (Sgg - another component of the Wnt pathway) in the eye also causes a phenotype similar to Fz and Dsh. To test further the link between planar polarity and Wnt signaling we misexpressed Wg in the developing eye and found it had a potent polarizing effect in the retinal epithelium. Since the overexpression of Fz in the developing eye gave a phenotype consistent with activating the Wnt pathway, we tested overexpression of Fz in the developing embryonic ectoderm and found that it phenocopied overexpression of Wg. To check that Fz was indeed able to activate a Wnt pathway we overexpressed it in Drosophila tissue culture cells and observed the characteristic phosphorylation of Dsh that occurs in response to Wnt signaling. Taken together our results significantly strengthen the case for Fz acting in a Wnt signaling pathway in Drosophila.
果蝇卷曲蛋白2(Dfz2)已被确定为一种假定的果蝇无翅(Wg)受体。尽管Dfz2与Fz显示出显著的同源性,Fz是一种在果蝇上皮细胞中建立平面极性的机制中起作用的蛋白质,但迄今为止,尚未有任何明确证据表明Fz参与Wnt信号通路。在此,我们描述了在发育中的果蝇眼睛中Fz功能丧失和过表达的平面极性表型,发现其与散乱蛋白(Dsh——一种在Wnt第二信使系统中起作用的蛋白质)功能丧失或过表达的表型几乎相同。此外,我们还表明,眼睛中毛糙蛋白(Sgg——Wnt通路的另一个组成部分)的过表达也会导致一种与Fz和Dsh相似的表型。为了进一步测试平面极性与Wnt信号之间的联系,我们在发育中的眼睛中错误表达了Wg,发现它在视网膜上皮细胞中具有强大的极化作用。由于在发育中的眼睛中Fz的过表达产生了与激活Wnt通路一致的表型,我们在发育中的胚胎外胚层中测试了Fz的过表达,发现它模拟了Wg的过表达。为了验证Fz确实能够激活Wnt通路,我们在果蝇组织培养细胞中过表达了Fz,并观察到了响应Wnt信号而发生的Dsh的特征性磷酸化。综合我们的结果,显著加强了Fz在果蝇Wnt信号通路中起作用的证据。