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首页> 外文期刊>Mechanisms of Development >Mouse Nkd1, a Wnt antagonist, exhibits oscillatory gene expression in the PSM under the control of Notch signaling
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Mouse Nkd1, a Wnt antagonist, exhibits oscillatory gene expression in the PSM under the control of Notch signaling

机译:Wnt拮抗剂小鼠Nkd1在Notch信号的控制下在PSM中表现出振荡基因表达

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摘要

During vertebrate embryogenesis, the formation of reiterated structures along the body axis is dependent upon the generation of the somite by segmentation of the presomitic mesoderm (PSM). Notch signaling plays a crucial role in both the generation and regulation of the molecular clock that provides the spatial information for PSM cells to form somites. In a screen for novel genes involved in somitogenesis, we identified a gene encoding a Wnt antagonist, Nkd1, which is transcribed in an oscillatory manner, and may represent a new member of the molecular clock constituents. The transcription of nkd1 is extremely downregulated in the PSM of vestigial tail (vt/vt), a hypomorphic mutant of Wnt3a, whereas nkd1 oscillations have a similar phase to lunatic fringe (L-fng) transcription and they are arrested in Hes7 (a negative regulator of Notch signaling) deficient embryos. These results suggest that the transcription of nkd1 requires Wnt3a, and that its oscillation patterns depend upon the function of Hes7 Wnt signaling has been postulated to be upstream of Notch signaling but we demonstrate in this study that a Wnt-signal-related gene may also be regulated by Notch signaling. Collectively, our data suggest that the reciprocal interaction of Notch and Wnt signals, and of their respective negative feedback loops, function to organize the segmentation clock required for somitogenesis. Copyright 2004 Elsevier Ireland Ltd. All rights reserved.
机译:在脊椎动物胚胎发生过程中,沿着体轴的重复结构的形成取决于节律性中胚层(PSM)的分割而形成的节肢动物。缺刻信号在分子时钟的产生和调节中都起着至关重要的作用,分子时钟为PSM细胞形成体节提供了空间信息。在筛选涉及体发生的新基因的过程中,我们鉴定了编码Wnt拮抗剂Nkd1的基因,该基因以振荡方式转录,并可能代表了分子钟成分的新成员。 nkd1的转录在残留尾巴的PSM(vt / vt)(Wnt3a的一个亚型突变体)中极度下调,而nkd1振荡的相位与癫痫边缘(L-fng)转录相似,并且被Hes7阻滞Notch信号调节剂)胚胎不足。这些结果表明nkd1的转录需要Wnt3a,并且其振荡模式取决于Hes7 Wnt信号的功能已被假定为Notch信号的上游,但我们在这项研究中证明了Wnt信号相关的基因也可能是由Notch信号调节。总体而言,我们的数据表明,Notch和Wnt信号以及它们各自的负反馈回路的相互交互作用,可以组织体细胞发生所需的分段时钟。版权所有2004 Elsevier Ireland Ltd.保留所有权利。

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