Qi Jing, Lee Ho-Jin, Saquet Audrey, Cheng Xiao-Ning, Shao Ming, Zheng Jie J, Shi De-Li
From the School of Life Sciences, Shandong University, 27 Shanda Nan Road, Jinan 250100, China.
the Shandong Key Laboratory of Animal Disease Control and Breeding, Institute of Animal Science and Veterinary Medicine, Shandong Academy of Agricultural Sciences, Jinan 250100, China, and.
J Biol Chem. 2017 Apr 7;292(14):5898-5908. doi: 10.1074/jbc.M116.772509. Epub 2017 Feb 21.
Dishevelled (Dvl) is a key intracellular signaling molecule that mediates the activation of divergent Wnt pathways. It contains three highly conserved domains known as DIX, PDZ, and DEP, the functions of which have been well characterized in β-catenin-dependent canonical and β-catenin-independent noncanonical Wnt signaling. The C-terminal region is also highly conserved from invertebrates to vertebrates. However, its function in regulating the activation of different Wnt signals remains unclear. We reported previously that Dvl conformational change triggered by the highly conserved PDZ-binding C terminus is important for the pathway specificity. Here we provide further evidence demonstrating that binding of the C terminus to the PDZ domain results in Dvl autoinhibition in the Wnt signaling pathways. Therefore, the forced binding of the C terminus to the PDZ domain reduces the activity of Dvl in noncanonical Wnt signaling, whereas obstruction of this interaction releases Dvl autoinhibition, impairs its functional interaction with LRP6 in canonical Wnt signaling, and increases its specificity in noncanonical Wnt signaling, which is closely correlated with an enhanced Dvl membrane localization. Our findings highlight the importance of the C terminus in keeping Dvl in an appropriate autoinhibited state, accessible for regulation by other partners to switch pathway specificity. Particularly, the C-terminally tagged Dvl fusion proteins that have been widely used to study the function and cellular localization of Dvl may not truly represent the wild-type Dvl because those proteins cannot be autoinhibited.
无序蛋白(Dvl)是一种关键的细胞内信号分子,介导多种不同Wnt信号通路的激活。它包含三个高度保守的结构域,即DIX、PDZ和DEP,其功能在β-连环蛋白依赖性经典Wnt信号通路和β-连环蛋白非依赖性非经典Wnt信号通路中已得到充分表征。从无脊椎动物到脊椎动物,其C末端区域也高度保守。然而,其在调节不同Wnt信号激活中的功能仍不清楚。我们之前报道过,由高度保守的PDZ结合C末端触发的Dvl构象变化对信号通路特异性很重要。在此,我们提供进一步证据表明,C末端与PDZ结构域的结合导致Dvl在Wnt信号通路中发生自身抑制。因此,C末端与PDZ结构域的强制结合会降低Dvl在非经典Wnt信号通路中的活性,而这种相互作用的阻碍会释放Dvl的自身抑制,损害其在经典Wnt信号通路中与低密度脂蛋白受体相关蛋白6(LRP6)的功能相互作用,并增加其在非经典Wnt信号通路中的特异性,这与Dvl膜定位增强密切相关。我们的研究结果突出了C末端在使Dvl保持适当自身抑制状态方面的重要性,以便其他伙伴能够对其进行调节以切换信号通路特异性。特别是,广泛用于研究Dvl功能和细胞定位的C末端标记的Dvl融合蛋白可能无法真正代表野生型Dvl,因为这些蛋白不能被自身抑制。