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c-Jun氨基末端激酶(JNK)与糖原合成酶激酶3β(Gsk3β)协同作用,以调节由Dishevelled介导的微管稳定性。

c-Jun N-terminal kinase (JNK) cooperates with Gsk3beta to regulate Dishevelled-mediated microtubule stability.

作者信息

Ciani Lorenza, Salinas Patricia C

机构信息

Department of Anatomy and Developmental Biology, University College London, London, UK.

出版信息

BMC Cell Biol. 2007 Jul 3;8:27. doi: 10.1186/1471-2121-8-27.

Abstract

BACKGROUND

Wnt factors are a large family of signaling molecules that play important roles in the regulation of cell fate specification, tissue polarity and cell movement. In the nervous system, Wnts also regulates the formation of neuronal connection acting as retrograde signals that regulate the remodeling of the axons prior to the assembly of the presynaptic apparatus. The scaffold protein Dishevelled (Dvl) mimics the effect of Wnt on the neuronal cytoskeleton by increasing the number of stable microtubule along the axon shaft and inducing the formation of looped microtubules (MT) at enlarged growth cones. A divergent Wnt-Dvl canonical pathway which bifurcates downstream of Gsk3beta regulates MT dynamics.

RESULTS

Here we show that the Wnt pathway also activates c-Jun N-terminal kinase (JNK) to regulate MT stabilization. Although in the Wnt planar cell polarity (PCP) pathway, JNK lays downstream of Rho GTPases, these GTPases are not required for Wnt-mediated MTs stability. Epistatic analyses and pharmacological studies suggest that the Wnt-Dvl signalling regulates the dynamic of the cytoskeleton through two different pathways that lead to inhibition of Gsk3beta and activation of JNK in the same cell.

CONCLUSION

We demonstrate a novel role for JNK in Wnt-mediated MT stability. Wnt-Dvl pathway increases MT stability through a transcription independent mechanism that requires the concomitant inhibition of Gsk3beta and activation of JNK. These studies demonstrate that Wnts can simultaneously activate different signalling pathways to modulate cytoskeleton dynamics.

摘要

背景

Wnt因子是一大类信号分子,在细胞命运决定、组织极性和细胞运动的调控中发挥重要作用。在神经系统中,Wnts还作为逆行信号调节神经元连接的形成,在突触前装置组装之前调节轴突的重塑。支架蛋白Dishevelled(Dvl)通过增加轴突轴上稳定微管的数量并在增大的生长锥处诱导环状微管(MT)的形成,模拟Wnt对神经元细胞骨架的作用。一种在Gsk3β下游分叉的不同的Wnt-Dvl经典途径调节MT动力学。

结果

在这里我们表明,Wnt途径还激活c-Jun氨基末端激酶(JNK)来调节MT稳定。虽然在Wnt平面细胞极性(PCP)途径中,JNK位于Rho GTPases下游,但这些GTPases对于Wnt介导的MT稳定性不是必需的。上位性分析和药理学研究表明,Wnt-Dvl信号通过两种不同的途径调节细胞骨架的动态,这两种途径导致同一细胞中Gsk3β的抑制和JNK的激活。

结论

我们证明了JNK在Wnt介导的MT稳定性中的新作用。Wnt-Dvl途径通过一种不依赖转录的机制增加MT稳定性,该机制需要同时抑制Gsk3β和激活JNK。这些研究表明,Wnts可以同时激活不同的信号通路来调节细胞骨架动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2177/1940000/4cdfa927d131/1471-2121-8-27-1.jpg

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