首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Smaller inner ear sensory epithelia in Neurog 1 null mice are related to earlier hair cell cycle exit.
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Smaller inner ear sensory epithelia in Neurog 1 null mice are related to earlier hair cell cycle exit.

机译:Neurog 1 null小鼠中较小的内耳感觉上皮细胞与较早的毛细胞周期退出有关。

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We investigated whether co-expression of Neurog 1 and Atoh 1 in common neurosensory precursors could explain the loss of hair cells in Neurog 1 null mice. Analysis of terminal mitosis, using BrdU, supports previous findings regarding timing of exit from cell cycle. Specifically, we show that cell cycle exit occurs in spiral sensory neurons in a base-to-apex progression followed by cell cycle exit of hair cells in the organ of Corti in an apex-to-base progression, with some overlap of cell cycle exit in the apex for both hair cells and spiral sensory neurons. Hair cells in Neurog 1 null mice show cell cycle exit in an apex-to-base progression about 1-2 days earlier. Atoh 1 is expressed in an apex-to-base progression rather then a base-to-apex progression as in wildtype littermates. We tested the possible expression of Atoh1 in neurosensory precursors using two Atoh 1-Cre lines. We show Atoh 1-Cre mediated beta-galactosidase expression in delaminating sensory neuron precursors as well as undifferentiatedepithelial cells at E11 and E12.5. PCR analysis shows expression of Atoh 1 in the otocyst as early as E10.5, prior to any histology-based detection techniques. Combined, these data suggest that low levels of Atoh 1 exist much earlier in precursors of hair cells and sensory neurons, possibly including neurosensory precursors. Analysis of Atoh 1-Cre expression in E18.5 embryos and P31 mice reveal beta-galactosidase stain in all hair cells but also in vestibular and cochlear sensory neurons and some supporting cells. A similar expression of Atoh 1-LacZ exists in postnatal and adult vestibular and cochlear sensory neurons, and Atoh 1 expression in vestibular sensory neurons is confirmed with RT-PCR. We propose that the absence of NEUROG 1 protein leads to loss of sensory neuron formation through a phenotypic switch of cycling neurosensory precursors from sensory neuron to hair cell fate. Neurog 1 null mice show a truncation of clonal expansion of hair cell precursors through temporally altered terminal mitosis, thereby resulting in smaller sensory epithelia.
机译:我们调查了常见的神经感觉前体中Neurog 1和Atoh 1的共表达是否可以解释Neurog 1 null小鼠中毛细胞的损失。使用BrdU分析终末有丝分裂可支持先前有关细胞周期退出时机的发现。具体而言,我们显示细胞周期退出发生在从基端到顶点的螺旋感觉神经元中,随后是Corti器官中的毛细胞的细胞周期退出在先端到基础的过程中,细胞周期退出有一些重叠在毛细胞和螺旋感觉神经元的顶端。 Neurog 1无效小鼠中的毛细胞在大约1-2天前显示出细胞周期退出,从顶点到碱基的过程。 Atoh 1以从顶点到碱基的顺序表达,而不是从在野生型同窝幼虫中的从碱基到顶点的表达。我们测试了使用两个Atoh 1-Cre系在神经感觉前体中Atoh1的可能表达。我们显示在分层的感觉神经元前体以及在E11和E12.5未分化的上皮细胞中Atoh 1-Cre介导的β-半乳糖苷酶表达。 PCR分析显示,在任何基于组织学的检测技术之前,Atoh 1早在E10.5就在卵囊中表达。综合起来,这些数据表明低水平的Atoh 1在毛细胞和感觉神经元的前体中存在的时间要早​​得多,可能包括神经感觉前体。对E18.5胚胎和P31小鼠中Atoh 1-Cre表达的分析表明,所有毛细胞中以及前庭和耳蜗感觉神经元以及某些支持细胞中都存在β-半乳糖苷酶染色。 Atoh 1-LacZ在出生后和成人的前庭和耳蜗感觉神经元中也有类似的表达,并且通过RT-PCR证实了Atoh 1在前庭感觉神经元中的表达。我们提出,NEUROG 1蛋白的缺乏会导致循环神经感觉前体从感觉神经元到毛细胞命运的表型转换,从而导致感觉神经元形成的损失。 Neurog 1无效小鼠显示通过暂时改变的末端有丝分裂截断了毛细胞前体的克隆扩增,从而导致较小的感觉上皮细胞。

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