Long non-coding RNA colon cancer–associated transcript 1 functions as a competing endogenous RNA to regulate cyclin-dependent kinase 1 expression by sponging miR-490-3p in hepatocellular carcinoma progression

Hepatocellular carcinoma is an aggressive neoplasm and is one of the most common human cancers. Recently, long non-coding RNAs have been demonstrated to participate in pathogenesis of many diseases including the progression in several cancers. In this study, we found that the long non-coding RNA col...

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Main Authors: Chunqing Dou, Liyuan Sun, Xin Jin, Mingming Han, Bao Zhang, Tao Li
Format: Article
Language:English
Published: IOS Press 2017-04-01
Series:Tumor Biology
Online Access:https://doi.org/10.1177/1010428317697572
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spelling doaj-84a23c67bfbb4d33bb2dfc24c669a1092021-05-03T01:07:39ZengIOS PressTumor Biology1423-03802017-04-013910.1177/1010428317697572Long non-coding RNA colon cancer–associated transcript 1 functions as a competing endogenous RNA to regulate cyclin-dependent kinase 1 expression by sponging miR-490-3p in hepatocellular carcinoma progressionChunqing DouLiyuan SunXin JinMingming HanBao ZhangTao LiHepatocellular carcinoma is an aggressive neoplasm and is one of the most common human cancers. Recently, long non-coding RNAs have been demonstrated to participate in pathogenesis of many diseases including the progression in several cancers. In this study, we found that the long non-coding RNA colon cancer–associated transcript 1 was upregulated in hepatocellular carcinoma tissues (p < 0.05), and high colon cancer–associated transcript 1 expression level was positively associated with tumor volume (p < 0.05) and American Joint Committee on Cancer stage (p < 0.05) in hepatocellular carcinoma patients. Luciferase reporter assays and RNA-pulldown assays showed that colon cancer–associated transcript 1 is a target of miR-490-3p. Real-time quantitative polymerase chain reaction and Western blot analysis indicated that colon cancer–associated transcript 1 regulated cyclin-dependent kinase 1 expression as a competing endogenous RNA by sponging miR-490-3p in hepatocellular carcinoma cells. Furthermore, colon cancer–associated transcript 1 silencing decreased hepatocellular carcinoma cells proliferation and invasion and overexpression promoted cell proliferation and invasion in vitro. These data demonstrated that the colon cancer–associated transcript 1/miR-490-3p/cyclin-dependent kinase 1 regulatory pathway promotes the progression of hepatocellular carcinoma. Inhibition of colon cancer–associated transcript 1 expression may be a novel therapeutic strategy for hepatocellular carcinoma.https://doi.org/10.1177/1010428317697572
collection DOAJ
language English
format Article
sources DOAJ
author Chunqing Dou
Liyuan Sun
Xin Jin
Mingming Han
Bao Zhang
Tao Li
spellingShingle Chunqing Dou
Liyuan Sun
Xin Jin
Mingming Han
Bao Zhang
Tao Li
Long non-coding RNA colon cancer–associated transcript 1 functions as a competing endogenous RNA to regulate cyclin-dependent kinase 1 expression by sponging miR-490-3p in hepatocellular carcinoma progression
Tumor Biology
author_facet Chunqing Dou
Liyuan Sun
Xin Jin
Mingming Han
Bao Zhang
Tao Li
author_sort Chunqing Dou
title Long non-coding RNA colon cancer–associated transcript 1 functions as a competing endogenous RNA to regulate cyclin-dependent kinase 1 expression by sponging miR-490-3p in hepatocellular carcinoma progression
title_short Long non-coding RNA colon cancer–associated transcript 1 functions as a competing endogenous RNA to regulate cyclin-dependent kinase 1 expression by sponging miR-490-3p in hepatocellular carcinoma progression
title_full Long non-coding RNA colon cancer–associated transcript 1 functions as a competing endogenous RNA to regulate cyclin-dependent kinase 1 expression by sponging miR-490-3p in hepatocellular carcinoma progression
title_fullStr Long non-coding RNA colon cancer–associated transcript 1 functions as a competing endogenous RNA to regulate cyclin-dependent kinase 1 expression by sponging miR-490-3p in hepatocellular carcinoma progression
title_full_unstemmed Long non-coding RNA colon cancer–associated transcript 1 functions as a competing endogenous RNA to regulate cyclin-dependent kinase 1 expression by sponging miR-490-3p in hepatocellular carcinoma progression
title_sort long non-coding rna colon cancer–associated transcript 1 functions as a competing endogenous rna to regulate cyclin-dependent kinase 1 expression by sponging mir-490-3p in hepatocellular carcinoma progression
publisher IOS Press
series Tumor Biology
issn 1423-0380
publishDate 2017-04-01
description Hepatocellular carcinoma is an aggressive neoplasm and is one of the most common human cancers. Recently, long non-coding RNAs have been demonstrated to participate in pathogenesis of many diseases including the progression in several cancers. In this study, we found that the long non-coding RNA colon cancer–associated transcript 1 was upregulated in hepatocellular carcinoma tissues (p < 0.05), and high colon cancer–associated transcript 1 expression level was positively associated with tumor volume (p < 0.05) and American Joint Committee on Cancer stage (p < 0.05) in hepatocellular carcinoma patients. Luciferase reporter assays and RNA-pulldown assays showed that colon cancer–associated transcript 1 is a target of miR-490-3p. Real-time quantitative polymerase chain reaction and Western blot analysis indicated that colon cancer–associated transcript 1 regulated cyclin-dependent kinase 1 expression as a competing endogenous RNA by sponging miR-490-3p in hepatocellular carcinoma cells. Furthermore, colon cancer–associated transcript 1 silencing decreased hepatocellular carcinoma cells proliferation and invasion and overexpression promoted cell proliferation and invasion in vitro. These data demonstrated that the colon cancer–associated transcript 1/miR-490-3p/cyclin-dependent kinase 1 regulatory pathway promotes the progression of hepatocellular carcinoma. Inhibition of colon cancer–associated transcript 1 expression may be a novel therapeutic strategy for hepatocellular carcinoma.
url https://doi.org/10.1177/1010428317697572
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