MicroRNA-217 functions as a prognosis predictor and inhibits colorectal cancer cell proliferation and invasion via an AEG-1 dependent mechanism
Bo Wang,Zhanlong Shen,Kewei Jiang,Gang Zhao,Chunyou Wang,Yichao Yan,Yang Yang,Jizhun Zhang,Chao Shen,Zhidong Gao,Yingjiang Ye,Shan Wang +11 more
TL;DR: In this article, the role of miR-217 in colorectal cancer (CRC) was examined by qRT-PCR and miR217 expression levels were closely correlated with tumor differentiation.
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Abstract: Recent studies have indicated the possible function of miR-217 in tumorigenesis. However, the roles of miR-217 in colorectal cancer (CRC) are still largely unknown. We examined the expression of miR-217 and AEG-1 in 50 CRC tissues and the corresponding noncancerous tissues by qRT-PCR. The clinical significance of miR-217 was analyzed. CRC cell lines with miR-217 upregulation and AEG-1 silencing were established and the effects on tumor growth in vitro and in vivo were assessed. Dual-luciferase reporter gene assays were also performed to investigate the interaction between miR-217 and AEG-1. Our data demonstrated that miR-217 was significantly downregulated in 50 pairs of colorectal cancer tissues. MiR-217 expression levels were closely correlated with tumor differentiation. Moreover, decreased miR-217 expression was also associated with shorter overall survival of CRC patients. MiR-217 overexpression significantly inhibited proliferation, colony formation and invasiveness of CRC cells by promoting apoptosis and G0/G1 phase arrest. Interestingly, ectopic miR-217 expression decreased AEG-1 expression and repressed luciferase reporter activity associated with the AEG-1 3′-untranslated region (UTR). AEG-1 silencing resulted in similar biological behavior changes to those associated with miR-217 overexpression. Finally, in a nude mouse xenografted tumor model, miR-217 overexpression significantly suppressed CRC cell growth. Our findings suggest that miR-217 has considerable value as a prognostic marker and potential therapeutic target in CRC.
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Citations
•Journal Article
MicroRNA 217 Modulates Endothelial Cell Senescence via Silent Information Regulator 1
RossellaMenghini,VivianaCasagrande,MarinaCardellini,EugenioMartelli,AlessandroTerrinoni,FrancescaAmati,MariucaVasa-Nicotera,ArnaldoIppoliti,GiuseppeNovelli,GerryMelino,RenatoLauro,MassimoFederici +11 more
TL;DR: A microRNA (miR-217) is identified that is progressively expressed in endothelial cells with aging and regulates the expression of silent information regulator 1 (SirT1), a major regulator of longevity and metabolic disorders that was progressively reduced in multiple tissues during aging.
134
Downregulation of miR-199b is associated with distant metastasis in colorectal cancer via activation of SIRT1 and inhibition of CREB/KISS1 signaling
Zhanlong Shen,Bo Wang,Kewei Jiang,Chunxiang Ye,Cheng Cheng,Yichao Yan,Jizhun Zhang,Yang Yang,Zhidong Gao,Yingjiang Ye,Shan Wang +10 more
TL;DR: It is concluded that miR-199b regulates SIRT1/CREB/KISS1 signaling pathway and might serve as a prognosis marker or a novel therapeutic target for patients with CRC.
Exosome-Mediated Transfer of circ_0000338 Enhances 5-Fluorouracil Resistance in Colorectal Cancer through Regulating MicroRNA 217 (miR-217) and miR-485-3p.
TL;DR: The role of exosomal circ_0000338 in 5-fluorouracil (5-FU) resistance in colorectal cancer (CRC) cells is largely unknown as discussed by the authors.
67
Anti-tumor Activity of miniPEG-γ-Modified PNAs to Inhibit MicroRNA-210 for Cancer Therapy.
Anisha Gupta,Elias Quijano,Yanfeng Liu,Raman Bahal,Susan E. Scanlon,Eric Song,Wei-Che Hsieh,Demetrios E. Braddock,Danith H. Ly,W. Mark Saltzman,Peter M. Glazer +10 more
TL;DR: This work provides a chemical framework for a novel anti-miR therapeutic approach using γPNAs that should facilitate rational design of agents to potently inhibit oncogenic microRNAs.
65
Long non-coding RNA GAS5 inhibits cell proliferation, induces G0/G1 arrest and apoptosis, and functions as a prognostic marker in colorectal cancer.
Yang Yang,Zhanlong Shen,Yichao Yan,Bo Wang,Jizhun Zhang,Chao Shen,Tao Li,Chunxiang Ye,Zhidong Gao,Guo Peng,Yingjiang Ye,Kewei Jiang,Shan Wang +12 more
TL;DR: It is suggested that GAS5 is essential in the control of apoptosis and cell growth in CRC and may represent a novel prognostic and diagnostic marker of CRC, in addition to being a potential therapeutic target.
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