Ciani Lorenza, Krylova Olga, Smalley Matthew J, Dale Trevor C, Salinas Patricia C
Department of Biological Sciences, Imperial College London, London SW7 2AZ, England, UK.
J Cell Biol. 2004 Jan 19;164(2):243-53. doi: 10.1083/jcb.200309096.
Dishevelled (DVL) is associated with axonal microtubules and regulates microtubule stability through the inhibition of the serine/threonine kinase, glycogen synthase kinase 3beta (GSK-3beta). In the canonical WNT pathway, the negative regulator Axin forms a complex with beta-catenin and GSK-3beta, resulting in beta-catenin degradation. Inhibition of GSK-3beta by DVL increases beta-catenin stability and TCF transcriptional activation. Here, we show that Axin associates with microtubules and unexpectedly stabilizes microtubules through DVL. In turn, DVL stabilizes microtubules by inhibiting GSK-3beta through a transcription- and beta-catenin-independent pathway. More importantly, axonal microtubules are stabilized after DVL localizes to axons. Increased microtubule stability is correlated with a decrease in GSK-3beta-mediated phosphorylation of MAP-1B. We propose a model in which Axin, through DVL, stabilizes microtubules by inhibiting a pool of GSK-3beta, resulting in local changes in the phosphorylation of cellular targets. Our data indicate a bifurcation in the so-called canonical WNT-signaling pathway to regulate microtubule stability.
散乱蛋白(DVL)与轴突微管相关,并通过抑制丝氨酸/苏氨酸激酶糖原合酶激酶3β(GSK-3β)来调节微管稳定性。在经典的WNT信号通路中,负调节因子轴抑制蛋白(Axin)与β-连环蛋白和GSK-3β形成复合物,导致β-连环蛋白降解。DVL对GSK-3β的抑制作用增加了β-连环蛋白的稳定性和TCF转录激活。在此,我们表明轴抑制蛋白与微管相关,并且出乎意料地通过DVL使微管稳定。反过来,DVL通过一条不依赖转录和β-连环蛋白的途径抑制GSK-3β,从而使微管稳定。更重要的是,DVL定位于轴突后轴突微管得以稳定。微管稳定性的增加与GSK-3β介导的微管相关蛋白1B(MAP-1B)磷酸化的减少相关。我们提出了一个模型,即轴抑制蛋白通过DVL抑制一部分GSK-3β,从而使微管稳定,导致细胞靶点磷酸化的局部变化。我们的数据表明在所谓的经典WNT信号通路中存在一个分支来调节微管稳定性。