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斑马鱼patched同源物的空间调控反映了音猬因子和蛋白激酶A在神经管和体节模式形成中的作用。

Spatial regulation of a zebrafish patched homologue reflects the roles of sonic hedgehog and protein kinase A in neural tube and somite patterning.

作者信息

Concordet J P, Lewis K E, Moore J W, Goodrich L V, Johnson R L, Scott M P, Ingham P W

机构信息

Molecular Embryology Laboratory, Imperial Cancer Research Fund, London, UK.

出版信息

Development. 1996 Sep;122(9):2835-46. doi: 10.1242/dev.122.9.2835.

Abstract

Signalling by members of the Hedgehog family of secreted proteins plays a central role in the development of vertebrate and invertebrate embryos. In Drosophila, transduction of the Hedgehog signal is intimately associated with the activity of protein kinase A and the product of the segment polarity gene patched. We have cloned a homologue of patched from the zebrafish Danio rerio and analysed the spatiotemporal regulation of its transcription during embryonic development in both wild-type and mutant animals. We find a striking correlation between the accumulation of patched1 transcripts and cells responding to sonic hedgehog activity both in the neurectoderm and mesoderm, suggesting that like its Drosophila counterpart, patched1 is regulated by sonic hedgehog activity. Consistent with this interpretation, mis-expression of sonic hedgehog results in ectopic activation of patched1 transcription. Using dominant negative and constitutively active forms of the protein kinase A subunits, we also show that expression of patched1 as well as of other sonic hedgehog targets, is regulated by protein kinase A activity. Taken together, our findings suggest that the mechanism of signalling by Hedgehog family proteins has been highly conserved during evolution.

摘要

分泌蛋白刺猬家族成员发出的信号在脊椎动物和无脊椎动物胚胎发育中起着核心作用。在果蝇中,刺猬信号的转导与蛋白激酶A的活性以及节段极性基因patched的产物密切相关。我们从斑马鱼Danio rerio中克隆了patched的一个同源物,并分析了其在野生型和突变动物胚胎发育过程中的转录时空调控。我们发现patched1转录本的积累与神经外胚层和中胚层中对音猬因子活性作出反应的细胞之间存在显著相关性,这表明与果蝇中的对应物一样,patched1受音猬因子活性调控。与这一解释一致的是,音猬因子的错误表达导致patched1转录的异位激活。使用蛋白激酶A亚基的显性负性和组成型活性形式,我们还表明patched1以及其他音猬因子靶标的表达受蛋白激酶A活性调控。综上所述,我们的发现表明刺猬家族蛋白的信号传导机制在进化过程中高度保守。

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