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两种功能不同的类轴蛋白在秀丽隐杆线虫中调节经典Wnt信号通路。

Two functionally distinct Axin-like proteins regulate canonical Wnt signaling in C. elegans.

作者信息

Oosterveen Tony, Coudreuse Damien Y M, Yang Pei-Tzu, Fraser Elizabeth, Bergsma Joost, Dale Trevor C, Korswagen Hendrik C

机构信息

Hubrecht Institute, Developmental Biology and Stem Cell Research, Uppsalalaan 8, 3584 CT, Utrecht, The Netherlands.

出版信息

Dev Biol. 2007 Aug 15;308(2):438-48. doi: 10.1016/j.ydbio.2007.05.043. Epub 2007 Jun 6.

Abstract

Axin is a central component of the canonical Wnt signaling pathway that interacts with the adenomatous polyposis coli protein APC and the kinase GSK3beta to downregulate the effector beta-catenin. In the nematode Caenorhabditis elegans, canonical Wnt signaling is negatively regulated by the highly divergent Axin ortholog PRY-1. Mutation of pry-1 leads to constitutive activation of BAR-1/beta-catenin-dependent Wnt signaling and results in a range of developmental defects. The pry-1 null phenotype is however not fully penetrant, indicating that additional factors may partially compensate for PRY-1 function. Here, we report the cloning and functional analysis of a second Axin-like protein, which we named AXL-1. We show that despite considerable sequence divergence with PRY-1 and other Axin family members, AXL-1 is a functional Axin ortholog. AXL-1 functions redundantly with PRY-1 in negatively regulating BAR-1/beta-catenin signaling in the developing vulva and the Q neuroblast lineage. In addition, AXL-1 functions independently of PRY-1 in negatively regulating canonical Wnt signaling during excretory cell development. In contrast to vertebrate Axin and the related protein Conductin, AXL-1 and PRY-1 are not functionally equivalent. We conclude that Axin function in C. elegans is divided over two different Axin orthologs that have specific functions in negatively regulating canonical Wnt signaling.

摘要

Axin是经典Wnt信号通路的核心组成部分,它与腺瘤性息肉病大肠杆菌蛋白APC及激酶GSK3β相互作用,以下调效应分子β-连环蛋白。在秀丽隐杆线虫中,经典Wnt信号通路受高度分化的Axin直系同源物PRY-1负调控。pry-1突变导致BAR-1/β-连环蛋白依赖性Wnt信号通路的组成性激活,并导致一系列发育缺陷。然而,pry-1基因敲除表型并不完全外显,这表明其他因素可能部分补偿PRY-1的功能。在此,我们报道了另一种Axin样蛋白的克隆及功能分析,我们将其命名为AXL-1。我们发现,尽管AXL-1与PRY-1及其他Axin家族成员在序列上有很大差异,但它是一种功能性的Axin直系同源物。在发育中的阴门和Q神经母细胞谱系中,AXL-1与PRY-1在负调控BAR-1/β-连环蛋白信号通路方面发挥冗余功能。此外,在排泄细胞发育过程中,AXL-1在负调控经典Wnt信号通路方面独立于PRY-1发挥作用。与脊椎动物的Axin及相关蛋白Conductin不同,AXL-1和PRY-1在功能上并不等同。我们得出结论,秀丽隐杆线虫中的Axin功能由两种不同的Axin直系同源物分担,它们在负调控经典Wnt信号通路方面具有特定功能。

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