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Protection of Armadillo/β-Catenin by Armless, a Novel Positive Regulator of Wingless Signaling

机译:通过无翼式的无翼信号传导阳性调节器保护Armadillo /β-catenin

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The Wingless (Wg/Wnt) signaling pathway is essential for metazoan development, where it is central to tissue growth and cellular differentiation. Deregulated Wg pathway activation underlies severe developmental abnormalities, as well as carcinogenesis. Armadillo/β-Catenin plays a key role in the Wg transduction cascade; its cytoplasmic and nuclear levels directly determine the output activity of Wg signaling and are thus tightly controlled. In all current models, once Arm is targeted for degradation by the Arm/β-Catenin destruction complex, its fate is viewed as set. We identified a novel Wg/Wnt pathway component, Armless (Als), which is required for Wg target gene expression in a cell-autonomous manner. We found by genetic and biochemical analyses that Als functions downstream of the destruction complex, at the level of the SCF/Slimb/βTRCP E3 Ub ligase. In the absence of Als, Arm levels are severely reduced. We show by biochemical and in vivo studies that Als interacts directly with Ter94, an AAA ATPase known to associate with E3 ligases and to drive protein turnover. We suggest that Als antagonizes Ter94's positive effect on E3 ligase function and propose that Als promotes Wg signaling by rescuing Arm from proteolytic degradation, spotlighting an unexpected step where the Wg pathway signal is modulated.
机译:无翼(WNT)信号传导途径对于美化甲烷的发展至关重要,在那里它是组织生长和细胞分化的核心。 Deriocated WG途径激活是严重的发育异常,以及致癌作用。 Armadillo /β-Catenin在WG转导级联中起着关键作用;其细胞质和核水平直接确定WG信号传导的输出活性,因此紧密控制。在所有目前的模型中,一旦ARM靶向臂/β-连环蛋白破坏复合物的降解,它的命运被视为设定。我们鉴定了一种新型的WG / WNT途径成分,无武器(ALS),其需要以细胞自主方式进行WG靶基因表达所必需的。我们发现通过遗传和生化分析,即ALS在破坏复合物下游的函数,在SCF / SLIMB /βTRCPE3 UB连接酶的水平下。在没有ALS的情况下,臂水平严重减少。我们通过生化和体内研究表明,ALS直接与TER94相互作用,已知与E3连接酶相关联的AAA ATP酶并促进蛋白质周转。我们建议ALS拮抗TER94对E3连接酶功能的阳性作用,并提出通过从蛋白水解降解中拯救臂来促进WG信号传导,从而显影为改变WG途径信号的意外步骤。

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