Department of Cellular and Molecular Physiology, Yale School of Medicine, New Haven, Connecticut.
Groupe Interdisciplinaire de Génoprotéomique Appliquée, Cardiovascular Sciences, University of Liège, Liège, Belgium.
Am J Physiol Cell Physiol. 2020 Mar 1;318(3):C486-C501. doi: 10.1152/ajpcell.00422.2019. Epub 2020 Jan 8.
AMP-activated protein kinase (AMPK) activation promotes early stages of epithelial junction assembly. AMPK activation in MDCK renal epithelial cells facilitates localization of the junction-associated proteins aPKCζ and Par3 to the plasma membrane and promotes conversion of Cdc42, a key regulator of epithelial polarization and junction assembly, to its active GTP bound state. Furthermore, Par3 is an important regulator of AMPK-mediated aPKCζ localization. Both aPKCζ and Par3 serve as intermediates in AMPK-mediated junction assembly, with inhibition of aPKCζ activity or Par3 knockdown disrupting AMPK's ability to facilitate zonula occludens (ZO-1) localization. AMPK phosphorylates the adherens junction protein afadin and regulates its interaction with the tight-junction protein zonula occludens-1. Afadin is phosphorylated at two critical sites, S228 (residing within an aPKCζ consensus site) and S1102 (residing within an AMPK consensus site), that are differentially regulated during junction assembly and that exert different effects on the process. Expression of phospho-defective mutants (S228A and S1102A) perturbed ZO-1 localization to the plasma membrane during AMPK-induced junction assembly. Expression of S228A increased the ZO-1/afadin interaction, while S1102A reduced this interaction during extracellular calcium-induced junction assembly. Inhibition of aPKCζ activity also increased the ZO-1/afadin interaction. Taken together, these data suggest that aPKCζ phosphorylation of afadin terminates the ZO-1/afadin interaction and thus permits the later stages of junction assembly.
AMP 激活的蛋白激酶 (AMPK) 的激活促进上皮细胞连接的早期组装。AMPK 在 MDCK 肾上皮细胞中的激活有助于将连接相关蛋白 aPKCζ 和 Par3 定位于质膜,并促进关键的上皮极化和连接组装调节剂 Cdc42 转化为其活性 GTP 结合状态。此外,Par3 是 AMPK 介导的 aPKCζ 定位的重要调节剂。aPKCζ 和 Par3 均作为 AMPK 介导的连接组装的中间物,aPKCζ 活性的抑制或 Par3 敲低会破坏 AMPK 促进封闭小带(ZO-1)定位的能力。AMPK 磷酸化黏附连接蛋白 afadin 并调节其与紧密连接蛋白 zonula occludens-1 的相互作用。afadin 在两个关键位点(S228 位于 aPKCζ 共有位点内)和 S1102(位于 AMPK 共有位点内)上被磷酸化,在连接组装过程中这两个位点受到不同的调节,并对该过程产生不同的影响。磷酸化缺陷突变体(S228A 和 S1102A)的表达扰乱了 AMPK 诱导的连接组装过程中 ZO-1 向质膜的定位。S228A 的表达增加了 ZO-1/afadin 的相互作用,而 S1102A 在细胞外钙诱导的连接组装过程中减少了这种相互作用。aPKCζ 活性的抑制也增加了 ZO-1/afadin 的相互作用。综上所述,这些数据表明 aPKCζ 对 afadin 的磷酸化终止了 ZO-1/afadin 的相互作用,从而允许连接的后期组装阶段的进行。