首页> 美国卫生研究院文献>PLoS Genetics >The Midline Protein Regulates Axon Guidance by Blocking the Reiteration of Neuroblast Rows within the Drosophila Ventral Nerve Cord
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The Midline Protein Regulates Axon Guidance by Blocking the Reiteration of Neuroblast Rows within the Drosophila Ventral Nerve Cord

机译:中线蛋白通过阻止果蝇腹侧神经索内神经母细胞行的重复来调节轴突指导。

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摘要

Guiding axon growth cones towards their targets is a fundamental process that occurs in a developing nervous system. Several major signaling systems are involved in axon-guidance, and disruption of these systems causes axon-guidance defects. However, the specific role of the environment in which axons navigate in regulating axon-guidance has not been examined in detail. In Drosophila, the ventral nerve cord is divided into segments, and half-segments and the precursor neuroblasts are formed in rows and columns in individual half-segments. The row-wise expression of segment-polarity genes within the neuroectoderm provides the initial row-wise identity to neuroblasts. Here, we show that in embryos mutant for the gene midline, which encodes a T-box DNA binding protein, row-2 neuroblasts and their neuroectoderm adopt a row-5 identity. This reiteration of row-5 ultimately creates a non-permissive zone or a barrier, which prevents the extension of interneuronal longitudinal tracts along their normal anterior-posterior path. While we do not know the nature of the barrier, the axon tracts either stall when they reach this region or project across the midline or towards the periphery along this zone. Previously, we had shown that midline ensures ancestry-dependent fate specification in a neuronal lineage. These results provide the molecular basis for the axon guidance defects in midline mutants and the significance of proper specification of the environment to axon-guidance. These results also reveal the importance of segmental polarity in guiding axons from one segment to the next, and a link between establishment of broad segmental identity and axon guidance.
机译:将轴突生长锥导向其靶标是发生在发育中的神经系统中的基本过程。轴突引导涉及几种主要的信号系统,这些系统的破坏会导致轴突引导缺陷。但是,尚未详细研究轴突在调节轴突引导中所处环境的特定作用。在果蝇中,腹神经索被分成多个部分,并且半段和前体成神经细胞在单个半段的行和列中形成。神经外胚层中节段极性基因的逐行表达为成神经细胞提供了初始的逐行身份。在这里,我们显示了在胚胎中线中突变基因,该中线编码T-box DNA结合蛋白,第2行成神经细胞及其神经外胚层采用第5行身份。第5行的这种重复最终会创建一个非许可区域或屏障,从而阻止了神经元间纵向通道沿其正常的前后路径延伸。虽然我们不知道屏障的性质,但轴突束到达该区域时要么停滞,要么越过中线或沿着该区域向外围突出。以前,我们已经证明中线可以确保神经元谱系中祖先的命运规范。这些结果提供了中线突变体中轴突导向缺陷的分子基础,以及对轴突导向的适当环境规范的意义。这些结果还揭示了节段极性在将轴突从一个节段引导至下一个节段以及建立广泛的节段同一性和轴突指导之间的联系方面的重要性。

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