Notch活性对自然转分化事件的重要影响和双重影响

Thomas Daniele, Jeanne Cury, Marie-Charlotte Morin, Arnaud Ahier, Davide Isaia, Sophie Jarriault
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引用次数: 0

摘要

细胞身份可以通过自然或实验进行重编程,尽管频率很低。为什么特定的细胞会发生细胞身份转换,而它们的邻近细胞却不会?我们发现,Notch 信号在促进秀丽隐杆线虫的自然转分化中发挥着关键作用。内源性 Notch 信号通过促进可塑性因子(hlh-16/Olig 和 sem-4/Sall)的表达,赋予细胞进行转分化的能力。令人震惊的是,外源性Notch可在体内引发异位转分化。然而,Notch 信号既能促进转分化,也能阻止转分化,这取决于其激活时间。Notch 只在一个精确的机会窗口促进转分化,信号持续时间必须在时间上严格控制。我们的研究结果强调了自然细胞重编程启动前潜在分子事件的时间性和动态性的重要性。最后,我们的研究结果支持这样一个模型:外在信号和细胞内在环境共同赋予细胞转分化的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Essential and dual effects of Notch activity on a natural transdifferentiation event
Cell identity can be reprogrammed, naturally or experimentally, albeit with low frequency. Why given cells, but not their neighbours, undergo a cell identity conversion remains unclear. We find that Notch signalling plays a key role to promote natural transdifferentiation in C. elegans. Endogenous Notch signal endows a cell with the competence to transdifferentiate by promoting plasticity factors expression (hlh-16/Olig and sem-4/Sall). Strikingly, exogenous Notch can trigger ectopic transdifferentiation in vivo. However, Notch signalling can both promote and block transdifferentiation depending on its activation timing. Notch only promotes transdifferentiation during a precise window of opportunity and signal duration must be tightly controlled in time. Our findings emphasise the importance of temporality and dynamics of the underlying molecular events preceding the initiation of natural cell reprogramming. Finally, our results support a model where both an extrinsic signal and the intrinsic cellular context combine to empower a cell with the competence to transdifferentiate.
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