| Literature DB >> 30109262 |
Yuan-Ke Liang1,2,3, Hao-Yu Lin2,4, Xiao-Wei Dou1,2, Min Chen2, Xiao-Long Wei2,5, Yong-Qu Zhang1,2, Yang Wu1,2, Chun-Fa Chen2,4, Jing-Wen Bai1,2, Ying-Sheng Xiao1,2, Yu-Zhu Qi1,2, Frank A E Kruyt3, Guo-Jun Zhang1,2,6.
Abstract
Basal-like breast cancer (BLBC) is an aggressive subtype with a strong tendency to metastasize. Due to the lack of effective chemotherapy, BLBC has a poor prognosis compared with luminal subtype breast cancer. MicroRNA-221 and -222 (miR-221/222) are overexpressed in BLBC and associate with metastasis as well as poor prognosis; however, the mechanisms by which miR-221/222 function as oncomiRs remain unknown. Here, we report that miR-221/222 expression is inversely correlated with Notch3 expression in breast cancer cell lines. Notch3 is known to be overexpressed in luminal breast cancer cells and inhibits epithelial to mesenchymal transition (EMT). We demonstrate that miR-221/222 target Notch3 by binding to its 3' untranslated region and suppressing protein translation. Ectopic expression of miR-221/222 significantly promotes EMT, whereas overexpression of Notch3 intracellular domain attenuates the oncogenic function of miR-221/222, suggesting that miR-221/222 exerts its oncogenic role by negatively regulating Notch3. Taken together, our results elucidated that miR-221/222 promote EMT via targeting Notch3 in breast cancer cell lines suggesting that miR-221/222 can serve as a potential therapeutic target in BLBC.Entities:
Year: 2018 PMID: 30109262 PMCID: PMC6079079 DOI: 10.1038/s41523-018-0073-7
Source DB: PubMed Journal: NPJ Breast Cancer ISSN: 2374-4677
Fig. 1miR-221/222 have an inverse correlation with Notch3 in breast cancer cells. a qRT-PCR analysis of Notch3 mRNA expression in breast cancer cell lines. b Endogenous Notch3 full length (FL) and the intracellular domain (ICD), ERα, E-cadherin, and Vimentin protein levels in breast cancer cell lines. c, d Databases to predict miR-221/222 target genes and sequence alignment of the human miR-221 and miR-222 seed regions with Notch3 3′UTR, which contains predicted miR-221/222 binding site. e qRT-PCR analysis of miR-221/222 expression in breast cancer cell lines
Fig. 2Notch3 is a target of miR-221/222 in breast cancer cells. a MiR-221 and miR-222 expression levels were detected by qRT-PCR after forced transfection of miR-221 or miR-222 mimics in MCF-7 cells. b qRT-PCR of Notch3 mRNA after forced transfection of miR-221 and miR-222 mimics in MCF-7 cells. c Western blot analysis of endogenous Notch3, ERα, p27 and E-cadherin protein levels in MCF-7 cells after ectopic expression of miR-221/222 mimics in MCF-7 cells. d, e qRT-PCR of endogenous miR-221/222 and Notch3 mRNA in MDA-MB-231 cells after transfection with miR-221/222 inhibitors. f Western blot analysis of N3FL, N3ICD, ERα, p27, and Vimentin protein levels after transfection with miR-221/222 inhibitors in MDA-MB-231 cells. g Immunofluorescence staining of MCF-7 cells transiently transfected with GFP vector (expressing only GFP), GFP-miR-221 or GFP-miR-222 using an anti-Notch3 antibody. Notch3 signals (red) in miR-221 and miR-222-transfected cells are labeled with arrowheads. DAPI, 4′,6-diamidino-2-phenylindole
Fig. 3MiR-221/222 directly target Notch3 3′UTR. a The schematic luciferase reporter containing predicted Notch3 wild-type (WT) or its mutant 3′UTR sequences for miR-221/222. b, c MCF-7 cells were co-transfected with pMIR-Notch3-3′UTR WT or pMIR control reporters in the presence of agomiR-221/222 (10, 30, and 90 nM) or miR-control (NC). Fluc/Rluc activities were measured 48 h post-transfection and normalized to the corresponding vector control. Each transfection was performed in triplicate, and the experiment was repeated three times. Data represent the mean ± SEM. ***P < 0.001. d, e MCF-7 cells stably transfected with pMIR-Notch3-3′UTR were treated with agomiR-221/222 at the indicated concentrations or pMIR-control vector, and luciferase activities were detected 48 h after transfection by a molecular imaging device (IVIS KINETIC). f, g Quantitation of luciferase activities when transfected with agomiR-221 and agomiR-222 in IVIS KINETIC system. h, i MCF-7 cells were co-transfected with pMIR-Notch3-3′UTR wild-type (WT) or pMIR-Notch3-3′UTRmutant (Mutant) reporters in the presence of agomiR-221/222 (10, 30 nM) and antagomiR-221/222 (10, 30 nM) or miR-control (NC). Fluc/Rluc activities were measured 48 h post-transfection and normalized to the corresponding vector control. j, k MDA-MB-231 cells were co-transfected with pMIR-Notch3-3′UTR reporters in the presence of antagomiR-221/222 (10, 30 nM) and agomiR-221/222 (10, 30 nM) or miR-control (NC). Fluc/Rluc activities were measured 48 h post-transfection and normalized to the corresponding vector control. Each transfection was performed in triplicate, and the experiment was repeated three times. Data represent mean ± SEM
Fig. 4N3ICD overexpression reverses EMT promotion by miR-221 and miR-222 in MCF-7 cells. a Western blot shows that MCF-7 cells that were stably transfected with GFP-miR-221 and GFP-miR-222 vectors suppressed Notch3 ICD and ERα as well as E-cadherin. b Effect of miR-221/222 overexpression on cell morphology evaluated by phase contrast microscopy (×100). Scale bars represent 50 μm. c, d Representative micrographs (×40) of the wound healing assay in MCF-7 cells. Cells were photographed to measure wound length at 0 and 48 h. Wound healing lengths were measured in 5 random fields. Data represent the mean of triplicate experiments ± SEM. e–h Representative micrographs (×200) of migration and invasion Transwell assays. Stably transfected miR-221/222 MCF-7 cells were co-transfected with N3ICD or a control plasmid. Invading or migrating cells were counted in 5 random fields. Data represent the mean of triplicate experiments ± SEM. Scale bars represent 50 μm
Fig. 5Inhibition of miR-221/222 decreases migration and invasion ability in MDA-MB-231 breast cancer cells. a, b Representative panels from the scratch wound assay in MDA-MB-231 cells imaged by microscopy. MDA-MB-231 cells were transfected with a miR-221/222 inhibitor or miR-control. Wound healing was measured in 5 random fields. Data represent the mean of triplicate experiments ± SEM. c, d Representative micrographs (×200) of matrigel-coated or non-coated Transwell assays in MDA-MB-231 cells transfected with miR-221/222 inhibitors or miR-NC. Cells were photographed to measure wound length at 0 and 24 h. Invading or migrating cells were counted in five random fields. Data represent the mean of triplicate experiments ± SEM. Scale bars represent 50 μm. *P < 0.05; **P < 0.01; ***P < 0.001