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“漂流”,一个新的由布鲁克海文国家实验室诱导产生的果蝇基因,是气管向中枢神经系统寻路所必需的。

adrift, a novel bnl-induced Drosophila gene, required for tracheal pathfinding into the CNS.

作者信息

Englund C, Uv A E, Cantera R, Mathies L D, Krasnow M A, Samakovlis C

机构信息

Umeâ Center for Molecular Pathogenesis, Umeâ University, S-90187 Umeâ, Sweden.

出版信息

Development. 1999 Apr;126(7):1505-14. doi: 10.1242/dev.126.7.1505.

Abstract

Neurons and glial cells provide guidance cues for migrating neurons. We show here that migrating epithelial cells also contact specific neurons and glia during their pathfinding, and we describe the first gene required in the process. In wild-type Drosophila embryos, the ganglionic tracheal branch navigates a remarkably complex path along specific neural and glial substrata, switching substrata five times before reaching its ultimate target in the CNS. In adrift mutants, ganglionic branches migrate normally along the intersegmental nerve, but sporadically fail to switch to the segmental nerve and enter the CNS; they wind up meandering along the ventral epidermis instead. adrift encodes a novel nuclear protein with an evolutionarily conserved motif. The gene is required in the trachea and is expressed in the leading cells of migrating ganglionic branches where it is induced by the branchless FGF pathway. We propose that Adrift regulates expression of tracheal genes required for pathfinding on the segmental nerve, and FGF induction of adrift expression in migrating tracheal cells promotes the switch from the intersegmental to the segmental nerve.

摘要

神经元和神经胶质细胞为迁移的神经元提供引导线索。我们在此表明,迁移的上皮细胞在其寻路过程中也会与特定的神经元和神经胶质细胞接触,并且我们描述了该过程中所需的第一个基因。在野生型果蝇胚胎中,神经节气管分支沿着特定的神经和神经胶质基质 navigate 一条非常复杂的路径,在到达中枢神经系统的最终目标之前切换基质五次。在漂流突变体中,神经节分支通常沿着节间神经迁移,但偶尔会无法切换到节段神经并进入中枢神经系统;相反,它们最终沿着腹侧表皮蜿蜒前行。漂流编码一种具有进化保守基序的新型核蛋白。该基因在气管中是必需的,并且在迁移的神经节分支的前端细胞中表达,在那里它由无分支 FGF 通路诱导。我们提出,Adrift 调节节段神经上寻路所需的气管基因的表达,并且 FGF 在迁移的气管细胞中诱导漂流表达促进从节间神经到节段神经的切换。

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