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A role of Pygopus as an anti-repressor in facilitating Wnt-dependent transcription

机译:pygopu​​s作为抗阻遏物在促进Wnt依赖性转录中的作用

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摘要

Wnt/β-catenin signaling controls animal development and tissue homeostasis, and is also an important cancer pathway. Pygopus (Pygo) is a conserved nuclear Wnt signaling component that is essential for Wingless-induced transcription throughout Drosophila development. It associates with Armadillo/β-catenin and T cell factor (TCF) through the Legless/BCL9 adaptor, but its molecular function in TCF-mediated transcription is unknown. Here, we use a groucho-null allele to show that Groucho represses Wingless target genes during Drosophila development. Interestingly, groucho pygo double-mutants revealed that Pygo is not obligatory for transcriptional and phenotypic Wingless signaling outputs if the interaction between Groucho and Drosophila TCF is compromised genetically. Pygo function is also non-essential for Wingless outputs in the absence of other transcriptional antagonists of Wingless signaling. This indicates an anti-repressor function of Pygo: we propose that Pygo predisposes Drosophila TCF target genes for rapid Wingless-induced transcription, or that it protects them against premature shut-down.
机译:Wnt /β-catenin信号传导控制动物发育和组织体内平衡,并且也是重要的癌症途径。 Pygopu​​s(Pygo)是保守的核Wnt信号转导成分,对于果蝇发育过程中Wingless诱导的转录至关重要。它通过Legless / BCL9衔接子与犰狳/β-catenin和T细胞因子(TCF)结合,但在TCF介导的转录中其分子功能尚不清楚。在这里,我们使用一个空肠等位基因显示果空肠在果蝇发育过程中抑制了Wingless靶基因。有趣的是,果树pygo双突变体表明如果果树和果蝇TCF之间的相互作用在遗传上受到损害,则Pygo对于转录和表型Wingless信号输出不是强制性的。在没有Wingless信号传导的其他转录拮抗剂的情况下,Pygo功能对于Wingless输出也不是必需的。这表明Pygo具有抗抑制功能:我们建议Pygo预先将果蝇TCF目标基因用于Wingless诱导的快速转录,或保护它们免受过早关闭。

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