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Lfng regulates the synchronized oscillation of the mouse segmentation clock via trans-repression of Notch signalling

机译:Lfng通过对Notch信号的反式调控来调节鼠标分段时钟的同步振荡

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The synchronized oscillation of segmentation clock is required to generate a sharp somite boundary during somitogenesis. However, the molecular mechanism underlying this synchronization in the mouse embryos is not clarified yet. We used both experimental and theoretical approaches to address this key question. Here we show, using chimeric embryos composed of wild-type cells and Delta like 1 (Dll1)-null cells, that Dll1-mediated Notch signalling is responsible for the synchronization mechanism. By analysing Lunatic fringe (Lfng) chimeric embryos and Notch signal reporter assays using a co-culture system, we further find that Lfng represses Notch activity in neighbouring cells by modulating Dll1 function. Finally, numerical simulations confirm that the repressive effect of Lfng against Notch activities in neighbouring cells can sufficiently explain the synchronization in vivo. Collectively, we provide a new model in which Lfng has a crucial role in intercellular coupling of the segmentation clock through a trans-repression mechanism.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:分段时钟的同步振荡是必需的,以便在生成过程中生成清晰的somite边界。但是,尚不清楚在小鼠胚胎中这种同步的潜在分子机制。我们使用实验和理论方法来解决这个关键问题。在这里,我们显示,使用由野生型细胞和Delta像1(Dll1)-空细胞组成的嵌合胚胎,Dll1介导的Notch信号负责同步机制。通过分析共生系统的Lunatic条纹(Lfng)嵌合胚胎和Notch信号报告基因分析,我们进一步发现Lfng通过调节Dll1功能来抑制邻近细胞中的Notch活性。最后,数值模拟证实,Lfng对邻近细胞中Notch活性的抑制作用可以充分解释体内的同步性。我们共同提供了一个新模型,其中Lfng通过反转录机制在分段时钟的细胞间偶联中起着至关重要的作用。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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