Department of Animal Resource Sciences, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo 113-8657, Japan.
Curr Biol. 2011 Apr 26;21(8):705-11. doi: 10.1016/j.cub.2011.03.029. Epub 2011 Apr 14.
Epithelial cells possess apical-basolateral polarity and form tight junctions (TJs) at the apical-lateral border, separating apical and basolateral membrane domains. The PAR3-aPKC-PAR6 complex plays a central role in TJ formation and apical domain development during tissue morphogenesis. Inactivation and overactivation of aPKC kinase activity disrupts membrane polarity. The mechanism that suppresses active aPKC is unknown. KIBRA, an upstream regulator of the Hippo pathway, regulates tissue size in Drosophila and can bind to aPKC. However, the relationship between KIBRA and the PAR3-aPKC-PAR6 complex remains unknown. We report that KIBRA binds to the PAR3-aPKC-PAR6 complex and localizes at TJs and apical domains in epithelial tissues and cells. The knockdown of KIBRA causes expansion of the apical domain in MDCK three-dimensional cysts and suppresses the formation of apical-containing vacuoles through enhanced de novo apical exocytosis. These phenotypes are restored by inhibition of aPKC. In addition, KIBRA directly inhibits the kinase activity of aPKC in vitro. These results strongly support the notion that KIBRA regulates epithelial cell polarity by suppressing apical exocytosis through direct inhibition of aPKC kinase activity in the PAR3-aPKC-PAR6 complex.
上皮细胞具有顶-基底极性,并在顶-侧边界形成紧密连接 (TJ),将顶膜和基底膜域分开。PAR3-aPKC-PAR6 复合物在组织形态发生过程中 TJ 形成和顶域发育中发挥核心作用。aPKC 激酶活性的失活和过激活会破坏膜极性。抑制活性 aPKC 的机制尚不清楚。KIBRA 是 Hippo 通路的上游调节剂,可调节果蝇的组织大小,并能与 aPKC 结合。然而,KIBRA 和 PAR3-aPKC-PAR6 复合物之间的关系仍不清楚。我们报告 KIBRA 与 PAR3-aPKC-PAR6 复合物结合,并定位于上皮组织和细胞的 TJ 和顶域。KIBRA 的敲低导致 MDCK 三维胞囊中顶域的扩张,并通过增强从头的顶部分泌作用抑制含有顶膜的空泡的形成。这些表型通过抑制 aPKC 得到恢复。此外,KIBRA 在体外直接抑制 aPKC 的激酶活性。这些结果强烈支持 KIBRA 通过直接抑制 PAR3-aPKC-PAR6 复合物中 aPKC 激酶活性来调节上皮细胞极性的观点。