CNS midline development in Drosophila.

T Hummel, T Menne, H Scholz, S Granderath, K Giesen, C Klämbt
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Abstract

The first cells specified during CNS development of vertebrates and invertebrates are the cells located at the midline of the neuroepithelium. In Drosophila the development of these cells requires inductive signals from the mesoderm. Later in CNS development, the midline cells are in turn influencing the flanking neuroectoderm, contributing to the establishment of dorsoventral positional information. During axonal pattern formation the midline cells are required in guiding commissural growth cones towards and across the midline. The midline consists of only few, easily identifiable neuronal and glial cells per segment. The development of midline glial cells is relatively well understood. Their differentiation appears to be controlled by the concomitant expression of two different sets of transcription factors. Activation of glial differentiation mediated by the ETS transcription factor encoded by pointed (whose activity depends on EGF-receptor signalling) occurs in concert with repression of neuronal differentiation mediated by the Zn-finger transcription factor encoded by tramtrack.

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果蝇中枢神经系统中线发育。
脊椎动物和无脊椎动物中枢神经系统发育的第一批细胞是位于神经上皮中线的细胞。在果蝇中,这些细胞的发育需要来自中胚层的感应信号。在中枢神经系统发育的后期,中线细胞反过来影响侧翼神经外胚层,有助于建立背侧位置信息。在轴突模式形成过程中,中线细胞在引导关节生长锥朝向和越过中线方面发挥着重要作用。中线由每个节段只有少数容易识别的神经元和胶质细胞组成。中线胶质细胞的发育相对来说已经很清楚了。它们的分化似乎是由两组不同的转录因子的共同表达控制的。由point编码的ETS转录因子介导的胶质细胞分化激活(其活性依赖于egf受体信号传导)与由tramtrack编码的Zn-finger转录因子介导的神经元分化抑制同时发生。
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