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Notch信号通路在哺乳动物神经发生中的保守性。

Conservation of the Notch signalling pathway in mammalian neurogenesis.

作者信息

de la Pompa J L, Wakeham A, Correia K M, Samper E, Brown S, Aguilera R J, Nakano T, Honjo T, Mak T W, Rossant J, Conlon R A

机构信息

Amgen Institute, Toronto, Ontario, Canada.

出版信息

Development. 1997 Mar;124(6):1139-48. doi: 10.1242/dev.124.6.1139.

Abstract

The Notch pathway functions in multiple cell fate determination processes in invertebrate embryos, including the decision between the neuroblast and epidermoblast lineages in Drosophila. In the mouse, targeted mutation of the Notch pathway genes Notch1 and RBP-Jk has demonstrated a role for these genes in somite segmentation, but a function in neurogenesis and in cell fate decisions has not been shown. Here we show that these mutations lead to altered expression of the Notch signalling pathway homologues Hes-5, Mash-1 and Dll1, resulting in enhanced neurogenesis. Precocious neuronal differentiation is indicated by the expanded expression domains of Math4A, neuroD and NSCL-1. The RBP-Jk mutation has stronger effects on expression of these genes than does the Notch1 mutation, consistent with functional redundancy of Notch genes in neurogenesis. Our results demonstrate conservation of the Notch pathway and its regulatory mechanisms from fly to mouse, and support a role for the murine Notch signalling pathway in the regulation of neural stem cell differentiation.

摘要

Notch信号通路在无脊椎动物胚胎的多种细胞命运决定过程中发挥作用,包括果蝇中神经母细胞和表皮母细胞谱系之间的决定。在小鼠中,Notch信号通路基因Notch1和RBP-Jk的靶向突变已证明这些基因在体节分割中起作用,但尚未显示其在神经发生和细胞命运决定中的功能。在这里,我们表明这些突变导致Notch信号通路同源物Hes-5、Mash-1和Dll1的表达改变,从而导致神经发生增强。Math4A、neuroD和NSCL-1表达域的扩大表明神经元分化早熟。RBP-Jk突变对这些基因表达的影响比Notch1突变更强,这与Notch基因在神经发生中的功能冗余一致。我们的结果证明了Notch信号通路及其调控机制从果蝇到小鼠的保守性,并支持小鼠Notch信号通路在神经干细胞分化调控中的作用。

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