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首页> 外文期刊>Current Biology: CB >A mutation in the Lunatic fringe gene suppresses the effects of a Jagged2 mutation on inner hair cell development in the cochlea
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A mutation in the Lunatic fringe gene suppresses the effects of a Jagged2 mutation on inner hair cell development in the cochlea

机译:Lunatic边缘基因中的突变抑制了Jagged2突变对耳蜗内毛细胞发育的影响

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Recent studies have demonstrated that the Notch signaling pathway regulates the differentiation of sensory hair cells in the vertebrate inner ear [1-9], We have shown previously that in mice homozygous for a targeted null mutation of the Jagged2 (Jag2) gene, which encodes a Notch ligand, supernumerary hair cells differentiate in the cochlea of the inner ear [7], Other components of the Notch pathway, including the Lunatic fringe (Lfng) gene, are also expressed during differentiation of the inner ear in mice [6-10]. In contrast to the Jag2 gene, which is expressed in hair cells, the Lfng gene is expressed in non-sensory supporting cells in the mouse cochlea [10]. Here we demonstrate that a mutation in the Lfng gene partially suppresses the effects of the Jag2 mutation on hair cell development. In mice homozygous for targeted mutations of both Jag2 and Lfng, the generation of supernumerary hair cells in the inner hair cell row is suppressed, while supernumerary hair cells in the outer hair cell rows are unaffected. We also demonstrate that supernumerary hair cells are generated in mice heterozygous for a Notch1 mutation. We suggest a model for the action of the Notch signaling pathway in regulating hair cell differentiation in the cochlear sensory epithelium. [References: 24]
机译:最近的研究表明,Notch信号通路调节脊椎动物内耳的感觉毛细胞的分化[1-9]。我们先前已经证明,在纯合子中,Jagged2(Jag2)基因的靶向无效突变是纯合子,该基因编码一个Notch配体,多余的毛细胞在内耳的耳蜗中分化[7],Notch通路的其他成分,包括Lunatic条纹(Lfng)基因,也在小鼠内耳的分化过程中表达[6-10] ]。与在毛细胞中表达的Jag2基因相反,Lfng基因在小鼠耳蜗的非感觉支持细胞中表达[10]。在这里,我们证明Lfng基因中的突变部分抑制了Jag2突变对毛细胞发育的影响。在Jag2和Lfng的靶向突变纯合子的小鼠中,内侧毛细胞行中多余的毛细胞的生成受到抑制,而外侧毛细胞行中的多余毛细胞不受影响。我们还证明多余的毛细胞在Notch1突变杂合的小鼠中产生。我们建议Notch信号通路在调节耳蜗感觉上皮毛细胞分化中的作用的模型。 [参考:24]

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