Sato Makoto, Umetsu Daiki, Murakami Satoshi, Yasugi Tetsuo, Tabata Tetsuya
Laboratory of Morphogenesis, Institute of Molecular and Cellular Biosciences, University of Tokyo, Yayoi, Bunkyo, Tokyo 113-0032, Japan.
Nat Neurosci. 2006 Jan;9(1):67-75. doi: 10.1038/nn1604. Epub 2005 Dec 20.
In Drosophila melanogaster, the axons of retinal photoreceptor cells extend to the first optic ganglion, the lamina, forming a topographic representation. Here we show that DWnt4, a secreted protein of the Wnt family, is the ventral cue for the lamina. In DWnt4 mutants, ventral retinal axons misprojected to the dorsal lamina. DWnt4 was normally expressed in the ventral half of the developing lamina and DWnt4 protein was detected along ventral retinal axons. Dfrizzled2 and dishevelled, respectively, encode a receptor and a signaling molecule required for Wnt signaling. Mutations in both genes caused DWnt4-like defects, and both genes were autonomously required in the retina, suggesting a direct role of DWnt4 in retinal axon guidance. In contrast, iroquois homeobox genes are the dorsal cues for the retina. Dorsal axons accumulated DWnt4 and misprojected to the ventral lamina in iroquois mutants; the phenotype was suppressed in iroquois Dfrizzled2 mutants, suggesting that iroquois may attenuate the competence of Dfrizzled2 to respond to DWnt4.
在黑腹果蝇中,视网膜光感受器细胞的轴突延伸至首个视神经节即视叶,形成一种拓扑学表征。我们在此表明,DWnt4,一种Wnt家族的分泌蛋白,是视叶的腹侧线索。在DWnt4突变体中,腹侧视网膜轴突错误投射至背侧视叶。DWnt4在发育中的视叶腹侧半部分正常表达,并且在腹侧视网膜轴突上检测到了DWnt4蛋白。Dfrizzled2和散乱蛋白分别编码Wnt信号传导所需的一种受体和一种信号分子。这两个基因的突变均导致了类似DWnt4的缺陷,并且这两个基因在视网膜中均为自主性需求,这表明DWnt4在视网膜轴突导向中具有直接作用。相比之下,Iroquois同源框基因是视网膜的背侧线索。在Iroquois突变体中,背侧轴突积累了DWnt4并错误投射至腹侧视叶;该表型在Iroquois Dfrizzled2突变体中受到抑制,这表明Iroquois可能会减弱Dfrizzled2对DWnt4作出反应的能力。