Center for Research and Advanced Studies (Cinvestav), Department of Physiology, Biophysics and Neuroscience, Mexico City 07360, Mexico.
Department of Genetics and Molecular Biology, Mexico City 07360, Mexico.
Mol Biol Cell. 2019 Aug 15;30(18):2377-2398. doi: 10.1091/mbc.E18-09-0591. Epub 2019 Jul 18.
Zonula occludens-2 (ZO-2) is a tight junction (TJ) cytoplasmic protein, whose localization varies according to cell density and Ca in the media. In cells cultured in low calcium (LC), ZO-2 displays a diffuse cytoplasmic distribution, but activation of the Ca sensing receptor (CaSR) with Gd triggers the appearance of ZO-2 at the cell borders. CaSR downstream signaling involves activation of protein kinase C, which phosphorylates and activates with no lysine kinase-4 that phosphorylates ZO-2 inducing its concentration at TJs. In LC, ZO-2 is protected from degradation by association to 14-3-3 proteins. When monolayers are transferred to normal calcium, the complexes ZO-2/14-3-3ζ and ZO-2/14-3-3σ move to the cell borders and dissociate. The 14-3-3 proteins are then degraded in proteosomes, whereas ZO-2 integrates to TJs. From the plasma membrane residual ZO-2 is endocyted and degradaded in lysosomes. The unique region 2 of ZO-2, and S261 located within a nuclear localization signal, are critical for the interaction with 14-3-3 ζ and σ and for the efficient nuclear importation of ZO-2. These results explain the molecular mechanism through which extracellular Ca triggers the appearance of ZO-2 at TJs in epithelial cells and reveal the novel interaction between ZO-2 and 14-3-3 proteins, which is critical for ZO-2 protection and intracellular traffic.
紧密连接(TJ)细胞质蛋白紧密连接蛋白-2(ZO-2),其定位根据细胞密度和培养基中的 Ca 而变化。在低钙(LC)中培养的细胞中,ZO-2 呈现弥散的细胞质分布,但用 Gd 激活 Ca 感受器(CaSR)会导致 ZO-2 出现在细胞边缘。CaSR 下游信号转导涉及蛋白激酶 C 的激活,其磷酸化并激活无赖氨酸激酶-4,后者磷酸化 ZO-2,诱导其在 TJ 处浓缩。在 LC 中,ZO-2 通过与 14-3-3 蛋白结合而免于降解。当单层细胞被转移到正常钙中时,ZO-2/14-3-3ζ 和 ZO-2/14-3-3σ 复合物移动到细胞边缘并解离。然后,14-3-3 蛋白在蛋白酶体中降解,而 ZO-2 整合到 TJ 中。从质膜残留的 ZO-2 被内吞并在溶酶体中降解。ZO-2 的独特区域 2 和位于核定位信号内的 S261 对于与 14-3-3 ζ 和 σ 的相互作用以及 ZO-2 的有效核导入至关重要。这些结果解释了细胞外 Ca 通过何种分子机制触发上皮细胞 TJ 处 ZO-2 的出现,并揭示了 ZO-2 和 14-3-3 蛋白之间的新相互作用,这对于 ZO-2 的保护和细胞内运输至关重要。