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Notch signalling is required for cyclic expression of the hairy-like gene HES1 in the presomitic mesoderm.

机译:Notch信号是毛状基因HES1在早熟中胚层中循环表达所必需的。

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Somitic segmentation provides the framework on which the segmental pattern of the vertebrae, some muscles and the peripheral nervous system is established. Recent evidence indicates that a molecular oscillator, the 'segmentation clock', operates in the presomitic mesoderm (PSM) to direct periodic expression of c-hairy1 and lunatic fringe (l-fng). Here, we report the identification and characterisation of a second avian hairy-related gene, c-hairy2, which also cycles in the PSM and whose sequence is closely related to the mammalian HES1 gene, a downstream target of Notch signalling in vertebrates. We show that HES1 mRNA is also expressed in a cyclic fashion in the mouse PSM, similar to that observed for c-hairy1 and c-hairy2 in the chick. In HES1 mutant mouse embryos, the periodic expression of l-fng is maintained, suggesting that HES1 is not a critical component of the oscillator mechanism. In contrast, dynamic HES1 expression is lost in mice mutant for Delta1, which are defective for Notch signalling. These results suggest that Notch signalling is required for hairy-like genes cyclic expression in the PSM.
机译:体节分割提供了建立椎骨,一些肌肉和周围神经系统的分割模式的框架。最近的证据表明,分子振荡器,即“分段时钟”,在早熟中胚层(PSM)中起作用,以指导c-hairy1和疯子边缘(l-fng)的周期性表达。在这里,我们报告了第二个禽类毛发相关基因c-hairy2的鉴定和表征,该基因也在PSM中循环,其序列与哺乳动物HES1基因(脊椎动物Notch信号的下游靶标)密切相关。我们显示,HES1 mRNA在小鼠PSM中也以循环方式表达,类似于在雏鸡中观察到的c-hairy1和c-hairy2。在HES1突变小鼠胚胎中,l-fng的周期性表达得以维持,这表明HES1不是振荡器机制的关键组成部分。相反,在突变为Notch的Delta1小鼠中,动态HES1表达丢失。这些结果表明,Notch信号传导是PSM中毛状基因循环表达所必需的。

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