Yamanaka T, Horikoshi Y, Suzuki A, Sugiyama Y, Kitamura K, Maniwa R, Nagai Y, Yamashita A, Hirose T, Ishikawa H, Ohno S
Department of Molecular Biology, Yokohama City University School of Medicine, 3-9 Fuku-ura, Kanazawa-ku, Yokohama 236-0004, Japan.
Genes Cells. 2001 Aug;6(8):721-31. doi: 10.1046/j.1365-2443.2001.00453.x.
PAR-6, aPKC and PAR-3 are polarity proteins that co-operate in the establishment of cell polarity in Caenorhabditis elegans and Drosophila embryos. We have recently shown that mammalian aPKC is required for the formation of the epithelia-specific cell-cell junctional structure. We have also revealed that a mammalian PAR-6 forms a ternary complex with aPKC and ASIP/PAR-3, and localizes at the most apical end of the junctional complex in epithelial cells.
The ternary complex formation and junctional co-localization of PAR-6 with aPKC and ASIP/PAR-3 are observed during the early stage of epithelial cell polarization. In addition, over-expression of the PAR-6 mutant with CRIB/PDZ domain in MDCK cells disturbs the cell-cell contact-induced junctional localization of tight junction proteins, as well as inhibiting TER development. Furthermore, the binding of Cdc42:GTP to the CRIB/PDZ domain of PAR-6 enhances the kinase activity of PAR-6-bound aPKC. Detailed analyses suggest that the binding of PAR-6 to aPKC has the intrinsic potential to activate aPKC, which is only released when Cdc42:GTP binds to the CRIB/PDZ domain.
The results indicate the involvement of PAR-6 in the aPKC function which is required for the cell-cell adhesion-induced formation of epithelial junctional structures, possibly through the cooperative regulation of aPKC activity with Cdc42.
PAR-6、非典型蛋白激酶C(aPKC)和PAR-3是极性蛋白,它们在秀丽隐杆线虫和果蝇胚胎的细胞极性建立过程中协同作用。我们最近发现,哺乳动物aPKC是上皮特异性细胞间连接结构形成所必需的。我们还揭示,哺乳动物PAR-6与aPKC和ASIP/PAR-3形成三元复合物,并定位于上皮细胞连接复合物的最顶端。
在上皮细胞极化的早期阶段,观察到PAR-6与aPKC和ASIP/PAR-3的三元复合物形成以及连接共定位。此外,在MDCK细胞中过表达具有CRIB/PDZ结构域的PAR-6突变体,会干扰细胞间接触诱导的紧密连接蛋白的连接定位,同时抑制跨上皮电阻(TER)的发育。此外,Cdc42:GTP与PAR-6的CRIB/PDZ结构域结合可增强与PAR-6结合的aPKC的激酶活性。详细分析表明,PAR-6与aPKC的结合具有激活aPKC的内在潜力,只有当Cdc42:GTP与CRIB/PDZ结构域结合时,这种潜力才会释放。
结果表明PAR-6参与了aPKC的功能,这可能是细胞间黏附诱导上皮连接结构形成所必需的,可能是通过与Cdc42协同调节aPKC活性来实现的。