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斑马鱼侧线原基中神经前体基因和神经发生基因的表达与神经丘中毛细胞命运的选择相关。

Expression of proneural and neurogenic genes in the zebrafish lateral line primordium correlates with selection of hair cell fate in neuromasts.

作者信息

Itoh M, Chitnis A B

机构信息

Laboratory of Molecular Genetics, NICHD, NIH, Bethesda, MD 20892, USA.

出版信息

Mech Dev. 2001 Apr;102(1-2):263-6. doi: 10.1016/s0925-4773(01)00308-2.

Abstract

Expression of a mouse atonal homologue, math1, defines cells with the potential to become sensory hair cells in the mouse inner ear (Science 284 (1999) 1837) and Notch signaling limits the number of cells that are permitted to adopt this fate (Nat. Genet. 21 (1999) 289; J. Neurocytol. 28 (1999) 809). Failure of lateral inhibition mediated by Notch signaling is associated with an overproduction of ear hair cells in the zebrafish mind bomb (mib) and deltaA mutants (Development 125 (1998a) 4637; Development 126 (1999) 5669), suggesting a similar role for these genes in limiting the number of hair cells in the zebrafish ear. This study extends the analysis of proneural and neurogenic gene expression to the lateral line system, which detects movement via clusters of related sensory hair cells in specialized structures called neuromasts. We have compared the expression of a zebrafish atonal homologue, zath1, and neurogenic genes, deltaA, deltaB and notch3, in neuromasts and the posterior lateral line primordium (PLLP) of wild-type and mib mutant embryos. We describe progressive restriction of proneural and neurogenic gene expression in the migrating PLLP that appears to correlate with selection of hair cell fate in maturing neuromasts. In mib mutants there is a failure to restrict expression of zath1 and Delta homologues in the neuromasts revealing similarities with the phenotype previously described in the ear.

摘要

小鼠无调性同源物math1的表达确定了小鼠内耳中具有成为感觉毛细胞潜力的细胞(《科学》284卷(1999年)第1837页),并且Notch信号传导限制了被允许采用这种命运的细胞数量(《自然遗传学》21卷(1999年)第289页;《神经细胞杂志》28卷(1999年)第809页)。Notch信号传导介导的侧向抑制失败与斑马鱼mind bomb(mib)和deltaA突变体中耳毛细胞的过度产生有关(《发育》125卷(1998a年)第4637页;《发育》126卷(1999年)第5669页),表明这些基因在限制斑马鱼耳中毛细胞数量方面具有类似作用。本研究将对神经源性和神经发生基因表达的分析扩展到侧线系统,该系统通过称为神经丘的特殊结构中的相关感觉毛细胞簇来检测运动。我们比较了斑马鱼无调性同源物zath1以及神经发生基因deltaA、deltaB和notch3在野生型和mib突变体胚胎的神经丘和后侧线原基(PLLP)中的表达。我们描述了迁移的PLLP中神经源性和神经发生基因表达的逐步限制,这似乎与成熟神经丘中毛细胞命运的选择相关。在mib突变体中,神经丘中zath1和Delta同源物的表达未能受到限制,这揭示了与先前在耳中描述的表型的相似性。

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