Chung Pei-Jung Katy, Chi Lang-Ming, Chen Chien-Lun, Liang Chih-Lung, Lin Chung-Tzu, Chang Yu-Xun, Chen Chun-Hsien, Chang Yu-Sun
From the ‡Molecular Medicine Research Center, Chang Gung University, Taoyuan 33302, Taiwan;
§Medical Research and Development, Chang Gung Memorial Hospital, Taoyuan 33375, Taiwan;
Mol Cell Proteomics. 2014 Sep;13(9):2321-36. doi: 10.1074/mcp.M113.033563. Epub 2014 Jun 9.
The mammalian bladder urothelium classified as basal, intermediate, and terminally differentiated umbrella cells offers one of the most effective permeability barrier functions known to exist in nature because of the formation of apical uroplakin plaques and tight junctions. To improve our understanding of urothelial differentiation, we analyzed the microRNA (miRNA) expression profiles of mouse urinary tissues and by TaqMan miRNA analysis of microdissected urothelial layers and in situ miRNA-specific hybridization to determine the dependence of these miRNAs on the differentiation stage. Our in situ hybridization studies revealed that miR-205 was enriched in the undifferentiated basal and intermediate cell layers. We then used a quantitative proteomics approach to identify miR-205 target genes in primary cultured urothelial cells subjected to antagomir-mediated knockdown of specific miRNAs. Twenty-four genes were reproducibly regulated by miR-205; eleven of them were annotated as cell junction- and tight junction-related molecules. Western blot analysis demonstrated that antagomir-induced silencing of miR-205 in primary cultured urothelial cells elevated the expression levels of Tjp1, Cgnl1, and Cdc42. Ectopic expression of miR-205 in MDCK cells inhibited the expression of tight junction proteins and the formation of tight junctions. miR-205- knockdown urothelial cells showed alterations in keratin synthesis and increases of uroplakin Ia and Ib, which are the urothelial differentiation products. These results suggest that miR-205 may contribute a role in regulation of urothelial differentiation by modulating the expression of tight junction-related molecules.
哺乳动物膀胱尿路上皮分为基底细胞、中间细胞和终末分化的伞细胞,由于顶端尿路上皮斑和紧密连接的形成,它具有自然界已知的最有效的渗透屏障功能之一。为了增进我们对尿路上皮分化的理解,我们分析了小鼠泌尿组织的微小RNA(miRNA)表达谱,并通过对显微切割的尿路上皮层进行TaqMan miRNA分析以及原位miRNA特异性杂交,以确定这些miRNA对分化阶段的依赖性。我们的原位杂交研究表明,miR-205在未分化的基底细胞层和中间细胞层中富集。然后,我们采用定量蛋白质组学方法,在经抗反义寡核苷酸介导敲低特定miRNA的原代培养尿路上皮细胞中鉴定miR-205的靶基因。有24个基因受miR-205的可重复性调控;其中11个被注释为与细胞连接和紧密连接相关的分子。蛋白质印迹分析表明,抗反义寡核苷酸诱导的原代培养尿路上皮细胞中miR-205沉默提高了Tjp1、Cgnl1和Cdc42的表达水平。在MDCK细胞中异位表达miR-205抑制了紧密连接蛋白的表达和紧密连接的形成。敲低miR-205的尿路上皮细胞显示角蛋白合成发生改变,并且尿路上皮分化产物尿路上皮蛋白Ia和Ib增加。这些结果表明,miR-205可能通过调节紧密连接相关分子的表达,在尿路上皮分化的调控中发挥作用。