首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: β-Catenin–related protein WRM-1 is a multifunctional regulatory subunit of the LIT-1 MAPK complex
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PNAS Plus: β-Catenin–related protein WRM-1 is a multifunctional regulatory subunit of the LIT-1 MAPK complex

机译:PNAS Plus:β-Catenin相关蛋白WRM-1是LIT-1 MAPK复合物的多功能调节亚基

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摘要

Vertebrate β-catenin has two functions, as a structural component of the adherens junction in cell adhesion and as the T-cell factor (TCF) transcriptional coactivator in canonical Wnt (wingless-related integration site) signaling. These two functions are split between three of the four β-catenin–related proteins present in the round worm Caenorhabditis elegans. The fourth β-catenin–related protein, WRM-1, exhibits neither of these functions. Instead, WRM-1 binds the MAPK loss of intestine 1 (LIT-1), and these two proteins have been shown to be essential for the transcription of Wnt target genes by phosphorylating and regulating the nuclear level of the sole worm TCF protein. We showed previously that WRM-1 binds to worm TCF and functions as the substrate-binding subunit for LIT-1. In this study, we show that phosphorylation of T220 in the activation loop is essential for LIT-1 kinase activity in vivo and in vitro. T220 can be phosphorylated either through LIT-1 autophosphorylation or directly by the upstream MAP3K MOM-4. Our data support a model in which WRM-1, which can undergo homotypic interaction, binds LIT-1 and thereby generates a kinase complex in which LIT-1 molecules are situated in a conformation enabling autophosphorylation as well as promoting phosphorylation of the T220 residue by MOM-4. In addition, we show that WRM-1 is essential for the translocation of the LIT-1 kinase complex to the nucleus, the site of its TCF substrate. To our knowledge, this is the first report of a MAP3K directly activating a MAPK by phosphorylation within the activation loop. This study should help uncover novel and as yet underappreciated functions of vertebrate β-catenin.
机译:脊椎动物β-catenin具有两个功能,作为细胞粘附中粘附连接的结构成分,以及作为标准Wnt(无翅相关整合位点)信号传导中的T细胞因子(TCF)转录共激活因子。这两种功能在存在于圆线虫秀丽隐杆线虫中的四个与β-catenin相关的蛋白中的三个之间。第四个与β-catenin相关的蛋白WRM-1既不显示这些功能,也不显示任何功能。取而代之的是,WRM-1结合了小肠1(LIT-1)的MAPK丢失,并且已经证明这两种蛋白通过磷酸化和调节唯一蠕虫TCF蛋白的核水平对于Wnt靶基因的转录至关重要。先前我们表明WRM-1与蠕虫TCF结合并充当LIT-1的底物结合亚基。在这项研究中,我们表明激活环中T220的磷酸化对于体内和体外LIT-1激酶活性至关重要。 T220可以通过LIT-1自磷酸化或直接由上游MAP3K MOM-4磷酸化。我们的数据支持一个模型,其中可以经历同型相互作用的WRM-1与LIT-1结合,从而生成一个激酶复合物,其中LIT-1分子处于这样一个构象中,该构象能够使自身磷酸化并促进T220残基的磷酸化, MOM-4。此外,我们显示WRM-1对于LIT-1激酶复合物向核(TCF底物的位点)的易位至关重要。据我们所知,这是MAP3K通过激活环内的磷酸化直接激活MAPK的首次报道。这项研究应有助于发现脊椎动物β-catenin的新颖的和尚未被认识的功能。

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