The Whitney Laboratory for Marine Bioscience, University of Florida, Florida, United States.
Department of Biology, University of Florida, Florida, United States.
Elife. 2018 Jul 31;7:e36740. doi: 10.7554/eLife.36740.
In triploblastic animals, Par-proteins regulate cell-polarity and adherens junctions of both ectodermal and endodermal epithelia. But, in embryos of the diploblastic cnidarian , Par-proteins are degraded in all cells in the bifunctional gastrodermal epithelium. Using immunohistochemistry, CRISPR/Cas9 mutagenesis, and mRNA overexpression, we describe the functional association between Par-proteins, ß-catenin, and transcription factor genes in embryos. We demonstrate that the aPKC/Par complex regulates the localization of ß-catenin in the ectoderm by stabilizing its role in cell-adhesion, and that endomesodermal epithelial cells are organized by a different cell-adhesion system than overlying ectoderm. We also show that ectopic expression of genes, which are expressed in mesodermal derivatives in bilaterians, is sufficient to downregulate Par-proteins and translocate ß-catenin from the junctions to the cytoplasm in ectodermal cells. These data provide molecular insight into the evolution of epithelial structure and distinct cell behaviors in metazoan embryos.
在三胚层动物中,Par 蛋白调节外胚层和内胚层上皮细胞的细胞极性和黏着连接。但是,在二胚层刺胞动物的胚胎中,Par 蛋白在双功能的原肠上皮中的所有细胞中都被降解。我们使用免疫组织化学、CRISPR/Cas9 诱变和 mRNA 过表达来描述胚胎中 Par 蛋白、β-连环蛋白和转录因子基因之间的功能关联。我们证明,aPKC/Par 复合物通过稳定其在细胞黏附中的作用来调节β-连环蛋白在外胚层中的定位,并且内胚层-中胚层上皮细胞通过不同于覆盖在外胚层上的细胞黏附系统来组织。我们还表明,在两侧对称动物中在中胚层衍生物中表达的基因的异位表达足以下调 Par 蛋白并将 β-连环蛋白从连接转移到外胚层细胞的细胞质中。这些数据为后生动物胚胎中上皮结构和不同细胞行为的进化提供了分子见解。