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首页> 外文期刊>Cilia >Live imaging of individual cell divisions in mouse neuroepithelium shows asymmetry in cilium formation and Sonic hedgehog response
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Live imaging of individual cell divisions in mouse neuroepithelium shows asymmetry in cilium formation and Sonic hedgehog response

机译:小鼠神经上皮单个细胞分裂的实时成像显示纤毛形成和声波刺猬反应不对称

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摘要

Background Primary cilia are microtubule-based sensory organelles that play important roles in developmental signaling pathways. Recent work demonstrated that, in cell culture, the daughter cell that inherits the older mother centriole generates a primary cilium and responds to external stimuli prior to its sister cell. This asynchrony in timing of cilia formation could be especially critical during development as cell divisions are required for both differentiation and maintenance of progenitor cell niches. Methods Here we integrate several fluorescent markers and use ex vivo live imaging of a single cell division within the mouse E8.5 neuroepithelium to reveal both the formation of a primary cilium and the transcriptional response to Sonic hedgehog in the daughter cells. Results We show that, upon cell division, cilia formation and the Sonic hedgehog response are asynchronous between the daughter cells. Conclusions Our results demonstrate that we can directly observe single cell divisions within the developing neuroepithelium and concomitantly monitor cilium formation or Sonic hedgehog response. We expect this method to be especially powerful in examining whether cellular behavior can lead to both differentiation and maintenance of cells in a progenitor niche.
机译:背景原发纤毛是基于微管的感觉细胞器,在发育信号通路中起重要作用。最近的工作表明,在细胞培养中,继承了较老的母体中心细胞的子代细胞会产生初级纤毛,并在其姊妹细胞之前对外部刺激产生反应。纤毛形成时间的这种异步性在发育过程中尤其重要,因为分化和维持祖细胞小生境都需要细胞分裂。方法在这里,我们整合了几种荧光标记,并使用小鼠E8.5神经上皮内单个细胞的离体活体成像来揭示子代细胞中初级纤毛的形成和对Sonic刺猬的转录反应。结果我们显示,在细胞分裂后,子细胞之间的纤毛形成和声波刺猬反应是异步的。结论我们的结果表明,我们可以直接观察发育中的神经上皮内的单细胞分裂,并同时监测纤毛的形成或声波刺猬的反应。我们希望这种方法在检查细胞行为是否会导致祖先小生境中的细胞分化和维持中特别有用。

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