Layden Michael J, Odden Joanne P, Schmid Aloisia, Garces Alain, Thor Stefan, Doe Chris Q
Institute of Neuroscience, Institute of Molecular Biology, Howard Hughes Medical Institute 1254 University of Oregon, Eugene, OR 97403, USA.
Dev Biol. 2006 Mar 15;291(2):253-63. doi: 10.1016/j.ydbio.2005.12.009. Epub 2006 Feb 3.
Motor neurons are defined by their axon projections, which exit the CNS to innervate somatic or visceral musculature, yet remarkably little is known about how motor axons are programmed to exit the CNS. Here, we describe the role of the Drosophila Zfh1 transcription factor in promoting axon exit from the CNS. Zfh1 is detected in all embryonic somatic motor neurons, glia associated with the CNS surface and motor axons, and one identified interneuron. In zfh1 mutants, ventral projecting motor axons often stall at the edge of the CNS, failing to enter the muscle field, despite having normal motor neuron identity. Conversely, ectopic Zfh1 induces a subset of interneurons--all normally expressing two or more "ventral motor neuron transcription factors" (e.g. Islet, Hb9, Nkx6, Lim3)--to project laterally and exit the CNS. We conclude that Zfh1 is required for ventral motor axon exit from the CNS.
运动神经元由其轴突投射来定义,这些轴突离开中枢神经系统以支配躯体或内脏肌肉组织,但对于运动轴突如何被编程以离开中枢神经系统,我们所知甚少。在这里,我们描述了果蝇Zfh1转录因子在促进轴突从中枢神经系统中穿出的作用。在所有胚胎期的躯体运动神经元、与中枢神经系统表面及运动轴突相关的神经胶质细胞以及一个已确定的中间神经元中都能检测到Zfh1。在zfh1突变体中,腹侧投射的运动轴突常常在中枢神经系统边缘停滞,无法进入肌肉区域,尽管其运动神经元身份正常。相反,异位表达的Zfh1会诱导一部分中间神经元——所有这些中间神经元通常都表达两种或更多种“腹侧运动神经元转录因子”(如胰岛蛋白、Hb9、Nkx6、Lim3)——向外侧投射并离开中枢神经系统。我们得出结论,Zfh1是腹侧运动轴突离开中枢神经系统所必需的。