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果蝇类驱动蛋白Costal2的一个同源物调节脊椎动物胚胎中的Hedgehog信号转导。

A homologue of the Drosophila kinesin-like protein Costal2 regulates Hedgehog signal transduction in the vertebrate embryo.

作者信息

Tay Shang Yew, Ingham Philip W, Roy Sudipto

机构信息

Institute of Molecular and Cell Biology, Proteos, 61 Biopolis Drive, Singapore 138673.

出版信息

Development. 2005 Feb;132(4):625-34. doi: 10.1242/dev.01606. Epub 2005 Jan 12.

Abstract

Orthologues of nearly all of the core components of the Hedgehog signalling pathway, defined originally through genetic analysis in Drosophila, have now been discovered in vertebrates and shown to have highly conserved functions. The one striking exception to this rule is the kinesin-like protein Costal2, which plays a central role in controlling the activity of the zinc-finger-containing transcriptional regulator, Cubitus interruptus that modulates all Hedgehog-dependent target gene expression, but whose involvement in Hedgehog signalling has not been demonstrated in vertebrates. We report the cloning of a kinesin-related gene from the zebrafish that in structure as well as function, appears to represent the first vertebrate orthologue of costal2. Using a combination of genetic and biochemical analysis, we provide evidence that as in Drosophila, zebrafish Costal2 acts principally as an intracellular repressor of signal transduction, in conjunction with Suppressor of Fused, another protein that negatively regulates signalling in Hedgehog-responsive cells.

摘要

刺猬信号通路几乎所有核心成分的直系同源物最初是通过果蝇的遗传分析确定的,现在已在脊椎动物中发现,并显示出具有高度保守的功能。该规则的一个显著例外是类驱动蛋白Costal2,它在控制含锌指转录调节因子Cubitus interruptus的活性中起核心作用,Cubitus interruptus调节所有刺猬依赖的靶基因表达,但其在刺猬信号通路中的作用尚未在脊椎动物中得到证实。我们报告了从斑马鱼中克隆出一个与驱动蛋白相关的基因,该基因在结构和功能上似乎代表了Costal2的第一个脊椎动物直系同源物。通过遗传和生化分析相结合,我们提供的证据表明,与果蝇一样,斑马鱼Costal2主要作为信号转导的细胞内抑制剂,与Fused抑制因子一起发挥作用,Fused抑制因子是另一种在刺猬反应性细胞中负调节信号传导的蛋白质。

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