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Cell migration in Drosophila optic lobe neurons is controlled by eyeless/Pax6

机译:果蝇视神经元中的细胞迁移由无眼/ Pax6控制

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摘要

In the developing Drosophila optic lobe, eyeless, apterous and distal-less, three genes that encode transcription factors with important functions during development, are expressed in broad subsets of medulla neurons. Medulla cortex cells follow two patterns of cell movements to acquire their final position: first, neurons are arranged in columns below each neuroblast. Then, during pupation, they migrate laterally, intermingling with each other to reach their retinotopic position in the adult optic lobe. eyeless, which encodes a Pax6 transcription factor, is expressed early in progenitors and controls aspects of this cell migration. Its loss in medulla neurons leads to overgrowth and a failure of lateral migration during pupation. These defects in cell migration among medulla cortex cells can be rescued by removing DE-Cadherin. Thus, eyeless links neurogenesis and neuronal migration.
机译:在发育中的果蝇视神经叶中,无眼,无翅和无远端的三个编码在发育过程中具有重要功能的转录因子的基因在髓质神经元的广泛子集中表达。髓质皮层细胞遵循两种细胞运动模式来获取其最终位置:首先,神经元排列在每个成神经细胞下方的列中。然后,在化up期间,它们向侧面迁移,彼此交织在一起,以到达成年视神经叶中的视网膜位置。编码Pax6转录因子的无眼细胞在祖细胞中早期表达,并控制这种细胞迁移的各个方面。它在延髓神经元中的丧失导致化脓过程中过度生长和侧向迁移失败。可通过除去DE-钙黏着蛋白来挽救髓质皮质细胞之间细胞迁移的这些缺陷。因此,无眼联系神经发生和神经元迁移。

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