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首页> 外文期刊>Current Biology: CB >Pygopus and Legless Provide Essential Transcriptional Coactivator Functions to Armadillo/beta-Catenin
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Pygopus and Legless Provide Essential Transcriptional Coactivator Functions to Armadillo/beta-Catenin

机译:Pygopu​​s和Legless为Armadillo / beta-Catenin提供必需的转录共激活因子功能

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摘要

Wnt signaling controls important aspects of animal development, and its deregulation has been causally linked to cancer. Transduction of Wnt signals entails the association of beta-catenin with nuclear TCF DNA binding proteins and the subsequent activation of target genes. The transcriptional activity of Armadillo (Arm, the Drosophila beta-catenin homolog) largely depends on two recently discovered components, Legless (Lgs) and Pygopus (Pygo). Lgs functions as an adaptor between Arm/beta-catenin and Pygo, but different mechanisms have been proposed as to how Arm/beta-catenin is controlled by Lgs and Pygo. Although Lgs and Pygo were originally thought to serve as nuclear cofactors for Arm/beta-catenin to enhance its transactivation capacity, a recent analysis argued that they function instead to target Arm/beta-catenin to the nucleus. Here, we used genetic assays in cultured cells and in vivo to discriminate between the two paradigms. Regardless of the measures taken to maintain the nuclear presence of Arm/beta-catenin, a transcriptional-activation function of Pygo could not be bypassed. Our findings therefore indicate that Arm/beta-catenin depends on Lgs and Pygo primarily for its transcriptional output rather than for its nuclear import.
机译:Wnt信号控制着动物发展的重要方面,其失调与癌症有着因果关系。 Wnt信号的转导需要β-catenin与核TCF DNA结合蛋白的结合以及随后靶基因的激活。犰狳(Arm,果蝇β-catenin同源物)的转录活性在很大程度上取决于两个最近发现的成分:无腿(Lgs)和扁桃体(Pygo)。 Lgs充当Arm /β-catenin和Pygo之间的衔接子,但是关于Lgs和Pygo如何控制Arm /β-catenin的机制已被提出。尽管最初认为Lgs和Pygo是Arm /β-catenin的核辅因子,以增强其反式激活能力,但最近的分析认为,它们的功能是将Arm /β-catenin靶向核。在这里,我们在培养的细胞和体内使用了基因测定法来区分这两种范例。无论采取什么措施来维持Arm /β-catenin的核存在,都不能绕过Pygo的转录激活功能。因此,我们的发现表明Arm / beta-catenin主要依赖Lgs和Pygo的转录输出而不是其核输入。

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