miR-342-3p regulates MYC transcriptional activity via direct repression of E2F1 in human lung cancer
Open Access
- 18 October 2015
- journal article
- research article
- Published by Oxford University Press (OUP) in Carcinogenesis: Integrative Cancer Research
- Vol. 36 (12), 1464-1473
- https://doi.org/10.1093/carcin/bgv152
Abstract
Accumulating evidence indicates that altered miRNA expression is crucially involved in lung cancer development, though scant information is available regarding how MYC , an archetypical oncogene, is regulated by miRNAs, especially via a mechanism involving MYC cofactors. In this study, we attempted to identify miRNAs involved in regulation of MYC transcriptional activity in lung cancer. To this end, we utilized an integrative approach with combinatorial usage of miRNA and mRNA expression profile datasets of patient tumor tissues, as well as those of MYC-inducible cell lines in vitro . In addition to miRNAs previously reported to be directly regulated by MYC, including let-7 and miR-17–92 , our strategy also helped to identify miR-342-3p as capable of indirectly regulating MYC activity via direct repression of E2F1, a MYC-cooperating molecule. Furthermore, miR-342-3p module activity, which we defined as a gene set reflecting the experimentally substantiated influence of miR-342-3p on mRNA expression, was found to be inversely correlated with MYC activity reflected by MYC module activity in three independent datasets of lung adenocarcinoma patients obtained from the Director’s Challenge Consortium of the United States ( P = 1.94×10 −73 ), the National Cancer Center of Japan ( P = 9.05×10 −34 ) and the present study ( P = 1.17×10 −19 ). Our integrative approach appears to be useful to elucidate inter-regulatory relationships between miRNAs and protein coding genes of interest, even those present in patient tumor tissues, which remains a challenge to better understand the pathogenesis of this devastating disease.Keywords
This publication has 39 references indexed in Scilit:
- let‐7 and miR‐17‐92: Small‐sized major players in lung cancer developmentCancer Science, 2010
- Counterbalance between RB inactivation and miR-17–92 overexpression in reactive oxygen species and DNA damage induction in lung cancersOncogene, 2009
- MicroRNAs and cancer: An overviewCell Cycle, 2008
- Identification of Hypoxia-Inducible Factor-1α as a Novel Target for miR-17-92 MicroRNA ClusterCancer Research, 2008
- Suppression of non-small cell lung tumor development by the let-7 microRNA familyProceedings of the National Academy of Sciences, 2008
- Apoptosis induction by antisense oligonucleotides against miR-17-5p and miR-20a in lung cancers overexpressing miR-17-92Oncogene, 2007
- MicroRNAs in biological processes and carcinogenesisCarcinogenesis: Integrative Cancer Research, 2007
- A Polycistronic MicroRNA Cluster, miR-17-92, Is Overexpressed in Human Lung Cancers and Enhances Cell ProliferationCancer Research, 2005
- RAS Is Regulated by the let-7 MicroRNA FamilyCell, 2005
- Reduced Expression of the let-7 MicroRNAs in Human Lung Cancers in Association with Shortened Postoperative SurvivalCancer Research, 2004