Dubruille Raphaelle, Laurençon Anne, Vandaele Camille, Shishido Emiko, Coulon-Bublex Madeleine, Swoboda Peter, Couble Pierre, Kernan Maurice, Durand Bénédicte
Centre de Génétique Moléculaire et Cellulaire, CNRS UMR-5534, Université Claude Bernard Lyon-1, 69622 Villeurbanne, France.
Development. 2002 Dec;129(23):5487-98. doi: 10.1242/dev.00148.
Ciliated neurons play an important role in sensory perception in many animals. Modified cilia at dendrite endings serve as sites of sensory signal capture and transduction. We describe Drosophila mutations that affect the transcription factor RFX and genetic rescue experiments that demonstrate its central role in sensory cilium differentiation. Rfx mutant flies show defects in chemosensory and mechanosensory behaviors but have normal phototaxis, consistent with Rfx expression in ciliated sensory neurons and neuronal precursors but not in photoreceptors. The mutant behavioral phenotypes are correlated with abnormal function and structure of neuronal cilia, as shown by the loss of sensory transduction and by defects in ciliary morphology and ultrastructure. These results identify Rfx as an essential regulator of ciliated sensory neuron differentiation in Drosophila.
纤毛神经元在许多动物的感官感知中发挥着重要作用。树突末端经过修饰的纤毛充当感觉信号捕获和转导的位点。我们描述了影响转录因子RFX的果蝇突变以及基因拯救实验,这些实验证明了它在感觉纤毛分化中的核心作用。Rfx突变果蝇在化学感应和机械感应行为上表现出缺陷,但具有正常的趋光性,这与Rfx在纤毛感觉神经元和神经元前体中表达但不在光感受器中表达一致。突变的行为表型与神经元纤毛的异常功能和结构相关,这通过感觉转导的丧失以及纤毛形态和超微结构的缺陷得以体现。这些结果确定Rfx是果蝇中纤毛感觉神经元分化的关键调节因子。