Roles of miR-200a in renal fibrosis through regulating ZEB1 and ZEB2

被引:0
|
作者
Wang, Weisong [1 ]
Gao, Junjie [1 ]
Wang, Fangli [1 ]
机构
[1] Cangzhou Cent Hosp, Dept Nephrol, 16 West Xin Hua Rd, Cangzhou 061001, Hebei, Peoples R China
关键词
MiR-200a; ZEB1; ZEB2; renal fibrosis; MESENCHYMAL TRANSITION; BIOMARKERS; ACTIVATION; MICRORNAS; THERAPY;
D O I
暂无
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Objective: This study aims to investigate the role and mechanism of miR-200a in the epithelial-mesenchymal transition (EMT) of kidney epithelial cells. Methods: Through treatment with transforming growth factor-beta 1 (TGF beta 1), renal epithelial cells HKC were induced to EMT. MiR-200a expression was detected by qRT-PCR and EMT related proteins E-Cadeherin and Vimentin were detected by Western blot. Bioinformatics methods were used to predict the target genes of miR-200a. After transfection with miR-200a mimics or siRNA of ZEB1 and ZEB2, the expressions of ZEB1, ZEB2 and other EMT related proteins were detected by Western blot. The HKC cells with stable expression of ZEB1 and ZEB2 were selected by G418 pressure screening. EMT changes were evaluated for HKC cells. Dual luciferase assay was applied to identify the target of miR-200a. Results: MiR-200a expression was significantly decreased in EMT processes in HKC cells induced by TGF beta 1, and E-Cadherin expression was down-regulated while Vimentin expression was up-regulated after TGF beta 1 treatment. The results indicated that TGF beta 1 can induce the occurrence of EMT. In vitro results showed that miR-200a induced EMT in HKC cells. Over-expressed miR-200a down-regulated the expressions of ZEB1 and ZEB2, and EMT of HKC cells were significantly repressed. After RNAi interference for ZEB1 and ZEB2, the EMT process in HKC cells was inhibited. HKC cells with stable expression of ZEB1 and ZEB2 were selected by G418 pressure screening, and the selected cells stably expressed green fluorescence. Increased expression of ZEB1 and ZEB2 significantly promoted EMT process in HKC cells. These results of dual luciferase assay indicated that miR-200a regulated the expression of ZEB1 and ZEB2 through complementary binding. Conclusion: MiR-200a expression was significantly down-regulated in EMT cell model induced by TGF beta 1. MiR-200a can inhibit EMT process in HKC cells through directly target ZEB1 and ZEB2, which indicates that miR-200a may be a potential therapeutic target for renal fibrosis.
引用
收藏
页码:13852 / 13858
页数:7
相关论文
共 50 条
  • [31] Pleiotropic Roles for ZEB1 in Cancer
    Caramel, Julie
    Ligier, Maud
    Puisieux, Alain
    CANCER RESEARCH, 2018, 78 (01) : 30 - 35
  • [32] ZEB1 and ZEB2 transcription factors are potential therapeutic targets of canine mammary cancer cells
    Xavier, Pedro L. P.
    Cordeiro, Yonara G.
    Rochetti, Arina L.
    Sangalli, Juliano R.
    Zuccari, Debora A. P. C.
    Silveira, Juliano C.
    Bressan, Fabiana F.
    Fukumasu, Heidge
    VETERINARY AND COMPARATIVE ONCOLOGY, 2018, 16 (04) : 596 - 605
  • [33] ZEB2 and ZEB1 expression in a spontaneous canine model of invasive micropapillary carcinoma of the mammary gland
    Gamba, C. O.
    Campos, L. C.
    Negreiros-Lima, G. L.
    Maciel-Lima, K.
    Sousa, L. P.
    Estrela-Lima, A.
    Ferreira, E.
    Cassali, G. D.
    RESEARCH IN VETERINARY SCIENCE, 2014, 97 (03) : 554 - 559
  • [34] TMPRSS2/ERG Promotes Epithelial to Mesenchymal Transition through the ZEB1/ZEB2 Axis in a Prostate Cancer Model
    Leshem, Orit
    Madar, Shalom
    Kogan-Sakin, Ira
    Kamer, Iris
    Goldstein, Ido
    Brosh, Ran
    Cohen, Yehudit
    Jacob-Hirsch, Jasmine
    Ehrlich, Marcelo
    Ben-Sasson, Shmuel
    Goldfinger, Naomi
    Loewenthal, Ron
    Gazit, Ephraim
    Rotter, Varda
    Berger, Raanan
    PLOS ONE, 2011, 6 (07):
  • [35] Progesterone signaling/miR-200a/zeb2 axis regulates self-renewal of mouse embryonic stem cells
    Ai, Yuyan
    Liu, Qidong
    Li, Yanyi
    Duan, Tao
    BIOMEDICINE & PHARMACOTHERAPY, 2014, 68 (02) : 201 - 208
  • [36] miR-200a Regulates Epithelial-Mesenchymal to Stem-like Transition via ZEB2 and β-Catenin Signaling
    Xia, Hongping
    Cheung, William K. C.
    Sze, Johnny
    Lu, Gang
    Jiang, Songshan
    Yao, Hong
    Bian, Xiu-Wu
    Poon, Wai Sang
    Kung, Hsiang-fu
    Lin, Marie C.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2010, 285 (47) : 36995 - 37004
  • [37] microRNA miR-200b differentially affects proliferation, invasiveness and stemness of endometriotic cells by targeting the transcription factors KLF4, ZEB1 and ZEB2
    Eggers, J.
    Martino, V.
    Reinbold, R.
    Schaefer, S.
    Kiesel, L.
    Greve, B.
    Goette, M.
    EXPERIMENTAL AND CLINICAL ENDOCRINOLOGY & DIABETES, 2014, 122 (03)
  • [38] Expression of miRNAs and ZEB1 and ZEB2 correlates with histopathological grade in papillary urothelial tumors of the urinary bladder
    Lee, Heejeong
    Jun, Sun-Young
    Lee, Youn-Soo
    Lee, Hee Jin
    Lee, Weon Sun
    Park, Chul Soo
    VIRCHOWS ARCHIV, 2014, 464 (02) : 213 - 220
  • [39] The role of ZEB1/ZEB2 and βIII-tubulin in mediating docetaxel-resistant prostate cancer
    Hanrahan, Karen
    Prencipe, Maria
    Bugler, Jane
    Murphy, Lisa
    O'Neill, Amanda
    Watson, R. William
    CANCER RESEARCH, 2015, 75
  • [40] Prognostic significance of ZEB1 and ZEB2 in digestive cancers: a cohort-based analysis and secondary analysis
    Chen, Huihui
    Lu, Wei
    Huang, Chongjie
    Ding, Kefeng
    Xia, Dajing
    Wu, Yihua
    Cai, Mao
    ONCOTARGET, 2017, 8 (19) : 31435 - 31448