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Glial development in the Drosophila CNS requires concomitant activation of glial and repression of neuronal differentiation genes.

机译:果蝇中枢神经系统的胶质细胞发育需要神经胶质细胞的活化和神经元分化基因的抑制。

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摘要

Two classes of glial cells are found in the embryonic Drosophila CNS, midline glial cells and lateral glial cells. Midline glial development is triggered by EGF-receptor signalling, whereas lateral glial development is controlled by the gcm gene. Subsequent glial cell differentiation depends partly on the pointed gene. Here we describe a novel component required for all CNS glia development. The tramtrack gene encodes two zinc-finger proteins, one of which, ttkp69, is expressed in all non-neuronal CNS cells. We show that ttkp69 is downstream of gcm and can repress neuronal differentiation. Double mutant analysis and coexpression experiments indicate that glial cell differentiation may depend on a dual process, requiring the activation of glial differentiation by pointed and the concomitant repression of neuronal development by tramtrack.
机译:在胚胎果蝇中枢神经系统中发现了两类神经胶质细胞:中线神经胶质细胞和外侧神经胶质细胞。中线神经胶质发育是由EGF受体信号触发的,而侧神经胶质发育是由gcm基因控制的。随后的神经胶质细胞分化部分取决于所指向的基因。在这里,我们描述了所有中枢神经系统胶质细胞发育所需的新型组件。 tramtrack基因编码两种锌指蛋白,其中一种ttkp69在所有非神经元CNS细胞中表达。我们显示,ttkp69位于gcm的下游,可以抑制神经元分化。双重突变体分析和共表达实验表明,神经胶质细胞的分化可能取决于双重过程,需要通过尖锐化激活神经胶质细胞分化,并通过电车轨道同时抑制神经元发育。

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