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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Ectopic expression of activated notch or SOX2 reveals similar and unique roles in the development of the sensory cell progenitors in the mammalian inner ear
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Ectopic expression of activated notch or SOX2 reveals similar and unique roles in the development of the sensory cell progenitors in the mammalian inner ear

机译:活化的缺口或SOX2的异位表达在哺乳动物内耳的感觉细胞祖细胞的发育中显示出相似且独特的作用

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摘要

Hearing impairment or vestibular dysfunction in humans often results from a permanent loss of critical cell types in the sensory regions of the inner ear, including hair cells, supporting cells, or cochleovestibular neurons. These important cell types arise from a common sensory or neurosensory progenitor, although little is known about how these progenitors are specified. Studies have shown that Notch signaling and the transcription factor Sox2 are required for the development of these lineages. Previously we and others demonstrated that ectopic activation of Notch can direct nonsensory cells to adopt a sensory fate, indicating a role for Notch in early specification events. Here, we explore the relationship between Notch and SOX2 by ectopically activating these factors in nonsensory regions of the mouse cochlea, and demonstrate that, similar to Notch, SOX2 can specify sensory progenitors, consistent with a role downstream of Notch signaling. However, we also show that Notch has a unique role in promoting the proliferation of the sensory progenitors. We further demonstrate that Notch can only induce ectopic sensory regions within a certain time window of development, and that the ectopic hair cells display specialized stereocilia bundles similar to endogenous hair cells. These results demonstrate that Notch and SOX2 can both drive the sensory program in nonsensory cells, indicating these factors may be useful in cell replacement strategies in the inner ear.
机译:人类的听力障碍或前庭功能障碍通常是由于内耳感觉区域中的关键细胞类型(包括毛细胞,支持细胞或耳蜗前庭神经元)永久丧失而引起的。这些重要的细胞类型来自普通的感觉或神经感觉祖细胞,尽管对这些祖细胞的指定方式知之甚少。研究表明,Notch信号传导和转录因子Sox2是这些谱系发育所必需的。以前,我们和其他人证明了Notch的异位激活可以指导非感觉细胞采取感觉命运,这表明Notch在早期规范事件中的作用。在这里,我们通过在小鼠耳蜗的非感觉区域中异位激活这些因子来探索Notch和SOX2之间的关系,并证明与Notch类似,SOX2可以指定感觉祖细胞,与Notch信号下游的作用一致。但是,我们还表明,Notch在促进感觉祖细胞的增殖中具有独特的作用。我们进一步证明,Notch只能在发育的特定时间窗口内诱导异位感觉区域,并且异位毛细胞显示出类似于内生性毛细胞的特殊的立体纤毛束。这些结果表明,Notch和SOX2均可在非感觉细胞中驱动感觉程序,表明这些因素可能在内耳的细胞置换策略中有用。

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