Kourtidis Antonis, Ngok Siu P, Pulimeno Pamela, Feathers Ryan W, Carpio Lomeli R, Baker Tiffany R, Carr Jennifer M, Yan Irene K, Borges Sahra, Perez Edith A, Storz Peter, Copland John A, Patel Tushar, Thompson E Aubrey, Citi Sandra, Anastasiadis Panos Z
Department of Cancer Biology, Mayo Clinic Comprehensive Cancer Center, Mayo Clinic, 4500 San Pablo Road, Jacksonville, Florida 32224, USA.
Department of Molecular Biology, University of Geneva, 30 quai Ernest-Ansermet, CH-1211, Geneva 4, Switzerland.
Nat Cell Biol. 2015 Sep;17(9):1145-57. doi: 10.1038/ncb3227. Epub 2015 Aug 24.
E-cadherin and p120 catenin (p120) are essential for epithelial homeostasis, but can also exert pro-tumorigenic activities. Here, we resolve this apparent paradox by identifying two spatially and functionally distinct junctional complexes in non-transformed polarized epithelial cells: one growth suppressing at the apical zonula adherens (ZA), defined by the p120 partner PLEKHA7 and a non-nuclear subset of the core microprocessor components DROSHA and DGCR8, and one growth promoting at basolateral areas of cell-cell contact containing tyrosine-phosphorylated p120 and active Src. Recruitment of DROSHA and DGCR8 to the ZA is PLEKHA7 dependent. The PLEKHA7-microprocessor complex co-precipitates with primary microRNAs (pri-miRNAs) and possesses pri-miRNA processing activity. PLEKHA7 regulates the levels of select miRNAs, in particular processing of miR-30b, to suppress expression of cell transforming markers promoted by the basolateral complex, including SNAI1, MYC and CCND1. Our work identifies a mechanism through which adhesion complexes regulate cellular behaviour and reveals their surprising association with the microprocessor.
E-钙黏蛋白和p120连环蛋白(p120)对于上皮细胞稳态至关重要,但也可发挥促肿瘤发生活性。在此,我们通过在未转化的极化上皮细胞中鉴定出两种空间和功能上不同的连接复合体,解决了这一明显的矛盾:一种在顶端黏着小带(ZA)发挥生长抑制作用,由p120的伙伴PLEKHA7以及核心微处理器组件DROSHA和DGCR8的一个非核亚群所定义;另一种在细胞 - 细胞接触的基底外侧区域发挥生长促进作用,包含酪氨酸磷酸化的p120和活性Src。DROSHA和DGCR8向ZA的募集依赖于PLEKHA7。PLEKHA7 - 微处理器复合体与初级微小RNA(pri - miRNA)共沉淀,并具有pri - miRNA加工活性。PLEKHA7调节特定微小RNA的水平,特别是miR - 30b的加工,以抑制由基底外侧复合体促进的细胞转化标志物的表达,包括SNAI1、MYC和CCND1。我们的工作确定了一种黏附复合体调节细胞行为的机制,并揭示了它们与微处理器的惊人关联。