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A Highlights from MBoC Selection: NLK-mediated phosphorylation of HDAC1 negatively regulates Wnt signaling

机译:MBoC选择的亮点:NLK介导的HDAC1磷酸化负调控Wnt信号传导

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摘要

The Wnt signaling pathway is essential in regulating various cellular processes. Different mechanisms of inhibition for Wnt signaling have been proposed. Besides β-catenin degradation through the proteasome, nemo-like kinase (NLK) is another molecule that is known to negatively regulate Wnt signaling. However, the mechanism by which NLK mediates the inhibition of Wnt signaling was not known. In the present study, we used primary embryonic fibroblast cells isolated from NLK-deficient mice and showed that these cells proliferate faster and have a shorter cell cycle than wild-type cells. In NLK-knockout cells, we observed sustained interaction between Lef1 and β-catenin, leading to elevated luciferase reporter of β-catenin/Lef1–mediated transcriptional activation. The mechanism for the reduced β-catenin/Lef1 promoter activation was explained by phosphorylation of HDAC1 at serine 421 via NLK. The phosphorylation of HDAC1 was achieved only in the presence of wild-type NLK because a catalytically inactive mutant of NLK was unable to phosphorylate HDAC1 and reduced the luciferase reporter of β-catenin/Lef1–mediated transcriptional activation. This result suggests that NLK and HDAC1 together negatively regulate Wnt signaling, which is vital in preventing aberrant proliferation of nontransformed primary fibroblast cells.
机译:Wnt信号通路是调节各种细胞过程中必不可少的。已经提出了抑制Wnt信号转导的不同机制。除了通过蛋白酶体降解β-catenin之外,nemo-like蛋白激酶(NLK)是另一种负调控Wnt信号的分子。但是,NLK介导抑制Wnt信号的机制尚不清楚。在本研究中,我们使用了从NLK缺陷小鼠中分离的原代胚胎成纤维细胞,结果表明这些细胞的增殖速度比野生型细胞快,细胞周期短。在NLK基因敲除细胞中,我们观察到Lef1和β-catenin之间持续的相互作用,导致β-catenin/ Lef1介导的转录激活的荧光素酶报告基因升高。 β-catenin/ Lef1启动子激活减少的机制是通过HNL在丝氨酸421上通过NLK磷酸化而解释的。 HDAC1的磷酸化仅在野生型NLK存在下才能实现,因为NLK的无催化活性的突变体无法磷酸化HDAC1并减少β-catenin/ Lef1介导的转录激活的萤光素酶报道基因。该结果表明NLK和HDAC1一起负调控Wnt信号传导,这对于防止未转化的原代成纤维细胞的异常增殖至关重要。

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