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An ancient Wnt-Dickkopf antagonism in Hydra.

机译:九头蛇中古老的Wnt-Dickkopf对抗。

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The dickkopf (dkk) gene family encodes secreted antagonists of Wnt signalling proteins, which have important functions in the control of cell fate, proliferation, and cell polarity during development. Here, we report the isolation, from a regeneration-specific signal peptide screen, of a novel dickkopf gene from the fresh water cnidarian Hydra. Comparative sequence analysis demonstrates that the Wnt antagonistic subfamily Dkk1/Dkk2/Dkk4 and the non-modulating subfamily Dkk3 separated prior to the divergence of cnidarians and bilaterians. In steady-state Hydra, hydkk1/2/4-expression is inversely related to that of hywnt3a. hydkk1/2/4 is an early injury and regeneration responsive gene, and hydkk1/2/4-expressing gland cells are essential for head regeneration in Hydra, although once the head has regenerated they are excluded from it. Activation of Wnt/beta-Catenin signalling leads to the complete downregulation of hydkk1/2/4 transcripts. When overexpressed in Xenopus, HyDkk1/2/4 has similar Wnt-antagonizing activity to the Xenopus gene Dkk1. Based on the corresponding expression patterns of hydkk1/2/4 and neuronal genes, we suggest that the body column of Hydra is a neurogenic environment suppressing Wnt signalling and facilitating neurogenesis.
机译:dickkopf(dkk)基因家族编码Wnt信号传导蛋白的分泌拮抗剂,这些拮抗剂在发育过程中对细胞命运,增殖和细胞极性的控制具有重要作用。在这里,我们报道了从再生特异性信号肽筛选中,从淡水刺胞水蛇中分离出一种新型dickkopf基因的方法。比较序列分析表明Wnt拮抗亚科Dkk1 / Dkk2 / Dkk4和非调节性亚科Dkk3在separated虫和双翅类动物分化之前分离。在稳态Hydra中,hydkk1 / 2 / 4-的表达与hywnt3a的表达成反比。 hydkk1 / 2/4是一种早期的损伤和再生响应基因,表达hydkk1 / 2/4的腺细胞对于Hydra的头部再生至关重要,尽管一旦头部再生,它们就会被排除在外。 Wnt /β-连环蛋白信号传导的激活导致hydkk1 / 2/4转录本的完全下调。当在非洲爪蟾中过表达时,HyDkk1 / 2/4具有与非洲爪蟾基因Dkk1类似的Wnt拮抗活性。基于hydkk1 / 2/4和神经元基因的相应表达模式,我们认为Hydra的身体柱是抑制Wnt信号传导并促进神经发生的神经源性环境。

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