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      miR-675-5p enhances tumorigenesis and metastasis of esophageal squamous cell carcinoma by targeting REPS2

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          Abstract

          Recently H19 has been demonstrated to be up-regulated in esophageal squamous cell carcinoma (ESCC) and shown to be the precursor of miR-675 that encodes miR-675-5p conservatively. miR-675 is overexpressed in many human cancers; however, the function of miR-675-5p is largely unknown in ESCC. In this study, we found that miR-675-5p expression was significantly increased in ESCC tissues and cell lines and related with ESCC progression and poor prognosis. We also showed here that down-regulation of miR-675-5p in ESCC cells dramatically induced cell G1 arrest and reduced cell proliferation, colony formation, migration and invasion in vitro as well as tumorigenesis and tumor metastasis in vivo. We subsequently identified that REPS2 was a target gene of miR-675-5p. We found that inhibition of miR-675-5p up-regulated the expression of REPS2, inhibited RalBP1/RAC1/CDC42 signaling pathway. Inversely, interference of REPS2 abrogated the effect induced by miR-675-5p inhibition, which resembled the function of miR-675-5p up-regulation. Taken together, our findings suggested that miR-675-5p might play an oncogenic role in ESCC through RalBP1/RAC1/CDC42 signaling pathway by inhibiting REPS2 and might serve as a valuable prognostic biomarker and therapeutic target for ESCC patients.

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          Most cited references45

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          The H19 lincRNA is a developmental reservoir of miR-675 which suppresses growth and Igf1r

          The H19 large intergenic noncoding RNA (lincRNA) is one of the most highly abundant and conserved transcripts in mammalian development, being expressed in both embryonic and extraembryonic cell lineages, yet its physiological function is unknown. Here we show that miR-675, a microRNA (miRNA) embedded within H19’s first exon, is expressed exclusively in the placenta from the gestational time point when placental growth normally ceases, and placentas that lack H19 continue to grow. Overexpression of miR-675 in a range of embryonic and extraembryonic cell lines results in their reduced proliferation; targets of the miRNA are upregulated in the H19 null placenta, including the growth promoting Insulin-like growth factor 1 receptor (Igf1r). Moreover, the excision of miR-675 from H19 is dynamically regulated by the stress response RNA binding protein HuR. These results suggest that H19’s main physiological role is in limiting growth of the placenta prior to birth, by regulated processing of miR-675. The controlled release of miR-675 from H19 may also allow rapid inhibition of cell proliferation in response to cellular stress or oncogenic signals.
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            Long non-coding RNA H19 increases bladder cancer metastasis by associating with EZH2 and inhibiting E-cadherin expression.

            lncRNA H19 is essential for human tumor growth. However, little is known about whether H19 regulates bladder cancer metastasis. Here we found that H19 levels are remarkably increased in bladder cancer tissues, and upregulated H19 promotes bladder cancer cell migration in vitro and in vivo. H19 is associated with enhancer of zeste homolog 2 (EZH2), and that this association results in Wnt/β-catenin activation and subsequent downregulation of E-cadherin. A significant negative correlation is also observed between H19 levels and E-cad levels in vivo. These data suggest that upregulated H19 enhances bladder cancer metastasis by associating with EZH2 and inhibiting E-cad expression. Copyright © 2013 Elsevier Ireland Ltd. All rights reserved.
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              Mechanisms of miRNA-mediated post-transcriptional regulation in animal cells.

              MicroRNAs (miRNAs) are 20-nt-long to 24-nt-long noncoding RNAs acting as post-transcriptional regulators of gene expression in animals and plants. In mammals, more than 50% of mRNAs are predicted to be the subject of miRNA-mediated control but mechanistic aspects of the regulation are not fully understood and different studies have produced often-contradictory results. miRNAs can affect both the translation and stability of mRNAs. In this report, we review current progress in understanding how miRNAs execute these effects in animals and we discuss some of the controversies regarding different modes of miRNA function.
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                Author and article information

                Journal
                Oncotarget
                Oncotarget
                Oncotarget
                ImpactJ
                Oncotarget
                Impact Journals LLC
                1949-2553
                24 May 2016
                23 April 2016
                : 7
                : 21
                : 30730-30747
                Affiliations
                1 Department of Thoracic Surgery, Xiangya Hospital, Central South University, Changsha 410008, Hunan, China
                2 Institute of Medical Science, Xiangya Hospital, Central South University, Changsha 410008, Hunan, China
                3 Department of Gastroenterology, Xiangya Hospital, Central South University, Changsha 410008, Hunan, China
                Author notes
                Correspondence to: Chun-Fang Zhang, zcf6636169@ 123456sina.com
                Article
                8950
                10.18632/oncotarget.8950
                5058713
                27120794
                1299ec34-7d47-479c-a3d4-8b91277802a1
                Copyright: © 2016 Zhou et al.

                This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

                History
                : 8 November 2015
                : 8 April 2016
                Categories
                Research Paper

                Oncology & Radiotherapy
                mir-675-5p,reps2,esophageal squamous cell carcinoma,microrna,rac1/cdc42
                Oncology & Radiotherapy
                mir-675-5p, reps2, esophageal squamous cell carcinoma, microrna, rac1/cdc42

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