Wetzel Franziska, Mittag Sonnhild, Cano-Cortina Misael, Wagner Tobias, Krämer Oliver H, Niedenthal Rainer, Gonzalez-Mariscal Lorenza, Huber Otmar
Institute of Biochemistry II, Jena University Hospital, Friedrich-Schiller-University Jena, Nonnenplan 2-4, 07743, Jena, Germany.
Institut für Ernährungswissenschaften, Abt. Humanernährung, Dornburger Str. 29, 07743, Jena, Germany.
Cell Mol Life Sci. 2017 Jan;74(2):373-392. doi: 10.1007/s00018-016-2352-5. Epub 2016 Sep 7.
The zonula occludens (ZO)-2 protein links tight junctional transmembrane proteins to the actin cytoskeleton and associates with splicing and transcription factors in the nucleus. Multiple posttranslational modifications control the intracellular distribution of ZO-2. Here, we report that ZO-2 is a target of the SUMOylation machinery and provide evidence on how this modification may affect its cellular distribution and function. We show that ZO-2 associates with the E2 SUMO-conjugating enzyme Ubc9 and with SUMO-deconjugating proteases SENP1 and SENP3. In line with this, modification of ZO-2 by endogenous SUMO1 was detectable. Ubc9 fusion-directed SUMOylation confirmed SUMOylation of ZO-2 and was inhibited in the presence of SENP1 but not by an enzymatic-dead SENP1 protein. Moreover, lysine 730 in human ZO-2 was identified as a potential modification site. Mutation of this site to arginine resulted in prolonged nuclear localization of ZO-2 in nuclear recruitment assays. In contrast, a construct mimicking constitutive SUMOylation of ZO-2 (SUMO1ΔGG-ZO-2) was preferentially localized in the cytoplasm. Based on previous findings the differential localization of these ZO-2 constructs may affect glycogen-synthase-kinase-3β (GSK3β) activity and β-catenin/TCF-4-mediated transcription. In this context we observed that ZO-2 directly binds to GSK3β and SUMO1ΔGG-ZO-2 modulates its kinase activity. Moreover, we show that ZO-2 forms a complex with β-catenin. Wild-type ZO-2 and ZO-2-K730R inhibited transcriptional activity in reporter gene assays, whereas the cytosolic SUMO1ΔGG-ZO-2 did not. From these data we conclude that SUMOylation affects the intracellular localization of ZO-2 and its regulatory role on GSK3β and β-catenin signaling activity.
闭合小带(ZO)-2蛋白将紧密连接跨膜蛋白与肌动蛋白细胞骨架相连,并与细胞核中的剪接和转录因子相关联。多种翻译后修饰控制着ZO-2在细胞内的分布。在此,我们报道ZO-2是SUMO化机制的一个靶点,并提供了关于这种修饰如何影响其细胞分布和功能的证据。我们表明ZO-2与E2 SUMO结合酶Ubc9以及SUMO去结合蛋白酶SENP1和SENP3相关联。与此一致的是,可检测到内源性SUMO1对ZO-2的修饰。Ubc9融合导向的SUMO化证实了ZO-2的SUMO化,并且在存在SENP1的情况下受到抑制,但不受酶失活的SENP1蛋白的抑制。此外,人ZO-2中的赖氨酸730被确定为一个潜在的修饰位点。在核招募实验中,将该位点突变为精氨酸导致ZO-2在细胞核中的定位延长。相反,模拟ZO-2组成型SUMO化的构建体(SUMO1ΔGG-ZO-2)优先定位于细胞质中。基于先前的研究结果,这些ZO-2构建体的差异定位可能影响糖原合酶激酶-3β(GSK3β)活性以及β-连环蛋白/TCF-4介导的转录。在这种情况下,我们观察到ZO-2直接与GSK3β结合,并且SUMO1ΔGG-ZO-2调节其激酶活性。此外,我们表明ZO-2与β-连环蛋白形成复合物。在报告基因实验中,野生型ZO-2和ZO-2-K730R抑制转录活性,而细胞质中的SUMO1ΔGG-ZO-2则没有。从这些数据我们得出结论,SUMO化影响ZO-2的细胞内定位及其对GSK3β和β-连环蛋白信号活性的调节作用。