Recent updates on the role of microRNAs in prostate cancer

Springer Science and Business Media LLC - Tập 5 Số 1 - Trang 1-10 - 2012
Hassan, Oudai1, Ahmad, Aamir1, Sethi, Seema1, Sarkar, Fazlul H1,2
1Department of Pathology, Karmanos Cancer Institute, Wayne State University School of Medicine, Detroit, USA
2Department of Oncology, Karmanos Cancer Institute/Wayne State University School of Medicine, Detroit, USA

Tóm tắt

MicroRNAs (miRNAs) are short non-coding RNAs that are involved in several important biological processes through regulation of genes post-transcriptionally. Carcinogenesis is one of the key biological processes where miRNAs play important role in the regulation of genes. The miRNAs elicit their effects by binding to the 3' untranslated region (3'UTR) of their target mRNAs, leading to the inhibition of translation or the degradation of the mRNA, depending on the degree of complementary base pairing. To-date more than 1,000 miRNAs are postulated to exist, although the field is moving rapidly. Currently, miRNAs are becoming the center of interest in a number of research areas, particularly in oncology, as documented by exponential growth in publications in the last decade. These studies have shown that miRNAs are deregulated in a wide variety of human cancers. Thus, it is reasonable to ask the question whether further understanding on the role of miRNAs could be useful for diagnosis, prognosis and predicting therapeutic response for prostate cancer (PCa). Therefore, in this review article, we will discuss the potential roles of different miRNAs in PCa in order to provide up-to-date information, which is expected to stimulate further research in the field for realizing the benefit of miRNA-targeted therapeutic approach for the treatment of metastatic castrate resistant prostate cancer (mCRPC) in the near future because there is no curative treatment for mCRPC at the moment.

Tài liệu tham khảo

citation_journal_title=PLoS One; citation_title=Identification of miRs-143 and -145 that is associated with bone metastasis of prostate cancer and involved in the regulation of EMT; citation_author=X Peng, W Guo, T Liu, X Wang, X Tu, D Xiong; citation_volume=6; citation_publication_date=2011; citation_pages=e20341; citation_doi=10.1371/journal.pone.0020341; citation_id=CR1 citation_journal_title=Cancer Invest; citation_title=Improvement of prostate cancer detection by integrating the PSA test with miRNA expression profiling; citation_author=Y Hao, Y Zhao, X Zhao, C He, X Pang, TC Wu; citation_volume=29; citation_publication_date=2011; citation_pages=318-324; citation_doi=10.3109/07357907.2011.554477; citation_id=CR2 citation_journal_title=Int J Cancer; citation_title=MicroRNA profiles of prostate carcinoma detected by multiplatform microRNA screening; citation_author=S Wach, E Nolte, J Szczyrba, R Stohr, A Hartmann, T Orntoft; citation_volume=130; citation_publication_date=2011; citation_pages=611-621; citation_doi=10.1002/ijc.26064; citation_id=CR3 citation_journal_title=Mol Cell Biochem; citation_title=miR-143 decreases prostate cancer cells proliferation and migration and enhances their sensitivity to docetaxel through suppression of KRAS; citation_author=B Xu, X Niu, X Zhang, J Tao, D Wu, Z Wang; citation_volume=350; citation_publication_date=2011; citation_pages=207-213; citation_doi=10.1007/s11010-010-0700-6; citation_id=CR4 citation_journal_title=Genes Dev; citation_title=The C. elegans microRNA let-7 binds to imperfect let-7 complementary sites from the lin-41 3'UTR; citation_author=MC Vella, EY Choi, SY Lin, K Reinert, FJ Slack; citation_volume=18; citation_publication_date=2004; citation_pages=132-137; citation_doi=10.1101/gad.1165404; citation_id=CR5 citation_journal_title=Genes Dev; citation_title=Specificity of microRNA target selection in translational repression; citation_author=JG Doench, PA Sharp; citation_volume=18; citation_publication_date=2004; citation_pages=504-511; citation_doi=10.1101/gad.1184404; citation_id=CR6 citation_journal_title=Cell; citation_title=The C. elegans heterochronic gene lin-4 encodes small RNAs with antisense complementarity to lin-14; citation_author=RC Lee, RL Feinbaum, V Ambros; citation_volume=75; citation_publication_date=1993; citation_pages=843-854; citation_doi=10.1016/0092-8674(93)90529-Y; citation_id=CR7 citation_journal_title=Cell; citation_title=Posttranscriptional regulation of the heterochronic gene lin-14 by lin-4 mediates temporal pattern formation in C. elegans; citation_author=B Wightman, I Ha, G Ruvkun; citation_volume=75; citation_publication_date=1993; citation_pages=855-862; citation_doi=10.1016/0092-8674(93)90530-4; citation_id=CR8 citation_journal_title=Curr Genomics; citation_title=MicroRNA and Cancer: Tiny molecules with major implications; citation_author=TG Vandenboom Ii, Y Li, PA Philip, FH Sarkar; citation_volume=9; citation_publication_date=2008; citation_pages=97-109; citation_doi=10.2174/138920208784139555; citation_id=CR9 citation_journal_title=Nature; citation_title=The 21-nucleotide let-7 RNA regulates developmental timing in Caenorhabditis elegans; citation_author=BJ Reinhart, FJ Slack, M Basson, AE Pasquinelli, JC Bettinger, AE Rougvie; citation_volume=403; citation_publication_date=2000; citation_pages=901-906; citation_doi=10.1038/35002607; citation_id=CR10 citation_journal_title=Nucleic Acids Res; citation_title=miRBase: microRNA sequences, targets and gene nomenclature; citation_author=S Griffiths-Jones, RJ Grocock, DS Van, A Bateman, AJ Enright; citation_volume=34; citation_publication_date=2006; citation_pages=D140-D144; citation_doi=10.1093/nar/gkj112; citation_id=CR11 citation_journal_title=Cell; citation_title=MicroRNA pathways in flies and worms: growth, death, fat, stress, and timing; citation_author=V Ambros; citation_volume=113; citation_publication_date=2003; citation_pages=673-676; citation_doi=10.1016/S0092-8674(03)00428-8; citation_id=CR12 citation_journal_title=Endocr Relat Cancer; citation_title=MicroRNAs and prostate cancer; citation_author=V Coppola, MR De, D Bonci; citation_volume=17; citation_publication_date=2010; citation_pages=F1-F17; citation_doi=10.1677/ERC-09-0172; citation_id=CR13 citation_journal_title=Annu Rev Cell Dev Biol; citation_title=microRNA functions; citation_author=N Bushati, SM Cohen; citation_volume=23; citation_publication_date=2007; citation_pages=175-205; citation_doi=10.1146/annurev.cellbio.23.090506.123406; citation_id=CR14 citation_journal_title=Nat Rev Mol Cell Biol; citation_title=Small non-coding RNAs in animal development; citation_author=G Stefani, FJ Slack; citation_volume=9; citation_publication_date=2008; citation_pages=219-230; citation_doi=10.1038/nrm2347; citation_id=CR15 citation_journal_title=Nat Rev Mol Cell Biol; citation_title=MicroRNAs: key regulators of stem cells; citation_author=VK Gangaraju, H Lin; citation_volume=10; citation_publication_date=2009; citation_pages=116-125; citation_doi=10.1038/nrm2621; citation_id=CR16 citation_journal_title=Nat Immunol; citation_title=MicroRNAs: new regulators of immune cell development and function; citation_author=D Baltimore, MP Boldin, RM O'Connell, DS Rao, KD Taganov; citation_volume=9; citation_publication_date=2008; citation_pages=839-845; citation_doi=10.1038/ni.f.209; citation_id=CR17 citation_journal_title=Nature; citation_title=Viral and cellular messenger RNA targets of viral microRNAs; citation_author=BR Cullen; citation_volume=457; citation_publication_date=2009; citation_pages=421-425; citation_doi=10.1038/nature07757; citation_id=CR18 citation_journal_title=Nat Rev Cardiol; citation_title=MicroRNAs and cardiac pathology; citation_author=MV Latronico, G Condorelli; citation_volume=6; citation_publication_date=2009; citation_pages=419-429; citation_doi=10.1038/nrcardio.2009.56; citation_id=CR19 citation_journal_title=Curr Opin Neurobiol; citation_title=MicroRNAs in neurodegeneration; citation_author=N Bushati, SM Cohen; citation_volume=18; citation_publication_date=2008; citation_pages=292-296; citation_doi=10.1016/j.conb.2008.07.001; citation_id=CR20 citation_journal_title=Dev Cell; citation_title=The diverse functions of microRNAs in animal development and disease; citation_author=WP Kloosterman, RH Plasterk; citation_volume=11; citation_publication_date=2006; citation_pages=441-450; citation_doi=10.1016/j.devcel.2006.09.009; citation_id=CR21 citation_journal_title=Int J Cancer; citation_title=miRNA control of tumor cell invasion and metastasis; citation_author=S Baranwal, SK Alahari; citation_volume=126; citation_publication_date=2010; citation_pages=1283-1290; citation_id=CR22 citation_journal_title=Acta Biochim Biophys Sin (Shanghai); citation_title=MicroRNAs and prostate cancer; citation_author=Y Pang, CY Young, H Yuan; citation_volume=42; citation_publication_date=2010; citation_pages=363-369; citation_doi=10.1093/abbs/gmq038; citation_id=CR23 citation_journal_title=PLoS One; citation_title=Role for DNA methylation in the regulation of miR-200c and miR-141 expression in normal and cancer cells; citation_author=L Vrba, TJ Jensen, JC Garbe, RL Heimark, AE Cress, S Dickinson; citation_volume=5; citation_publication_date=2010; citation_pages=e8697; citation_doi=10.1371/journal.pone.0008697; citation_id=CR24 citation_journal_title=Cell Death Differ; citation_title=miR-15a and miR-16-1 in cancer: discovery, function and future perspectives; citation_author=RI Aqeilan, GA Calin, CM Croce; citation_volume=17; citation_publication_date=2010; citation_pages=215-220; citation_doi=10.1038/cdd.2009.69; citation_id=CR25 citation_journal_title=Proc Natl Acad Sci USA; citation_title=An androgen-regulated miRNA suppresses Bak1 expression and induces androgen-independent growth of prostate cancer cells; citation_author=XB Shi, L Xue, J Yang, AH Ma, J Zhao, M Xu; citation_volume=104; citation_publication_date=2007; citation_pages=19983-19988; citation_doi=10.1073/pnas.0706641104; citation_id=CR26 citation_journal_title=Oncogene; citation_title=MicroRNA-21 promotes cell transformation by targeting the programmed cell death 4 gene; citation_author=Z Lu, M Liu, V Stribinskis, CM Klinge, KS Ramos, NH Colburn; citation_volume=27; citation_publication_date=2008; citation_pages=4373-4379; citation_doi=10.1038/onc.2008.72; citation_id=CR27 citation_journal_title=Mol Cancer; citation_title=Optimized high-throughput microRNA expression profiling provides novel biomarker assessment of clinical prostate and breast cancer biopsies; citation_author=MD Mattie, CC Benz, J Bowers, K Sensinger, L Wong, GK Scott; citation_volume=5; citation_publication_date=2006; citation_pages=24; citation_doi=10.1186/1476-4598-5-24; citation_id=CR28 citation_journal_title=Cancer Res; citation_title=MicroRNA expression profiling in prostate cancer; citation_author=KP Porkka, MJ Pfeiffer, KK Waltering, RL Vessella, TL Tammela, T Visakorpi; citation_volume=67; citation_publication_date=2007; citation_pages=6130-6135; citation_doi=10.1158/0008-5472.CAN-07-0533; citation_id=CR29 citation_journal_title=EMBO J; citation_title=MicroRNA genes are transcribed by RNA polymerase II; citation_author=Y Lee, M Kim, J Han, KH Yeom, S Lee, SH Baek; citation_volume=23; citation_publication_date=2004; citation_pages=4051-4060; citation_doi=10.1038/sj.emboj.7600385; citation_id=CR30 citation_journal_title=Nature; citation_title=Processing of primary microRNAs by the Microprocessor complex; citation_author=AM Denli, BB Tops, RH Plasterk, RF Ketting, GJ Hannon; citation_volume=432; citation_publication_date=2004; citation_pages=231-235; citation_doi=10.1038/nature03049; citation_id=CR31 citation_journal_title=Nature; citation_title=The nuclear RNase III Drosha initiates microRNA processing; citation_author=Y Lee, C Ahn, J Han, H Choi, J Kim, J Yim; citation_volume=425; citation_publication_date=2003; citation_pages=415-419; citation_doi=10.1038/nature01957; citation_id=CR32 citation_journal_title=RNA; citation_title=Exportin 5 is a RanGTP-dependent dsRNA-binding protein that mediates nuclear export of pre-miRNAs; citation_author=MT Bohnsack, K Czaplinski, D Gorlich; citation_volume=10; citation_publication_date=2004; citation_pages=185-191; citation_doi=10.1261/rna.5167604; citation_id=CR33 citation_journal_title=Genes Dev; citation_title=Exportin-5 mediates the nuclear export of pre-microRNAs and short hairpin RNAs; citation_author=R Yi, Y Qin, IG Macara, BR Cullen; citation_volume=17; citation_publication_date=2003; citation_pages=3011-3016; citation_doi=10.1101/gad.1158803; citation_id=CR34 citation_journal_title=Nature; citation_title=Role for a bidentate ribonuclease in the initiation step of RNA interference; citation_author=E Bernstein, AA Caudy, SM Hammond, GJ Hannon; citation_volume=409; citation_publication_date=2001; citation_pages=363-366; citation_doi=10.1038/35053110; citation_id=CR35 citation_journal_title=Genes Dev; citation_title=Dicer functions in RNA interference and in synthesis of small RNA involved in developmental timing in C. elegans; citation_author=RF Ketting, SE Fischer, E Bernstein, T Sijen, GJ Hannon, RH Plasterk; citation_volume=15; citation_publication_date=2001; citation_pages=2654-2659; citation_doi=10.1101/gad.927801; citation_id=CR36 citation_journal_title=Nature; citation_title=An RNA-directed nuclease mediates post-transcriptional gene silencing in Drosophila cells; citation_author=SM Hammond, E Bernstein, D Beach, GJ Hannon; citation_volume=404; citation_publication_date=2000; citation_pages=293-296; citation_doi=10.1038/35005107; citation_id=CR37 citation_journal_title=Mol Cell; citation_title=Evidence that siRNAs function as guides, not primers, in the Drosophila and human RNAi pathways; citation_author=DS Schwarz, G Hutvagner, B Haley, PD Zamore; citation_volume=10; citation_publication_date=2002; citation_pages=537-548; citation_doi=10.1016/S1097-2765(02)00651-2; citation_id=CR38 citation_journal_title=Nat Rev Cancer; citation_title=Cancer stem cells in solid tumours: accumulating evidence and unresolved questions; citation_author=JE Visvader, GJ Lindeman; citation_volume=8; citation_publication_date=2008; citation_pages=755-768; citation_doi=10.1038/nrc2499; citation_id=CR39 citation_journal_title=AAPS J; citation_title=MicroRNA regulation of cancer stem cells and therapeutic implications; citation_author=JT DeSano, L Xu; citation_volume=11; citation_publication_date=2009; citation_pages=682-692; citation_doi=10.1208/s12248-009-9147-7; citation_id=CR40 citation_journal_title=BMC Med; citation_title=MicroRNAs: regulators of oncogenesis and stemness; citation_author=T Papagiannakopoulos, KS Kosik; citation_volume=6; citation_publication_date=2008; citation_pages=15; citation_doi=10.1186/1741-7015-6-15; citation_id=CR41 citation_journal_title=Semin Immunol; citation_title=Normal and leukemic human stem cells assayed in SCID mice; citation_author=JE Dick; citation_volume=8; citation_publication_date=1996; citation_pages=197-206; citation_doi=10.1006/smim.1996.0025; citation_id=CR42 citation_journal_title=Nat Med; citation_title=Targeting of CD44 eradicates human acute myeloid leukemic stem cells; citation_author=L Jin, KJ Hope, Q Zhai, F Smadja-Joffe, JE Dick; citation_volume=12; citation_publication_date=2006; citation_pages=1167-1174; citation_doi=10.1038/nm1483; citation_id=CR43 citation_journal_title=Cancer Res; citation_title=Prospective identification of tumorigenic prostate cancer stem cells; citation_author=AT Collins, PA Berry, C Hyde, MJ Stower, NJ Maitland; citation_volume=65; citation_publication_date=2005; citation_pages=10946-10951; citation_doi=10.1158/0008-5472.CAN-05-2018; citation_id=CR44 citation_journal_title=Oncogene; citation_title=Highly purified CD44+ prostate cancer cells from xenograft human tumors are enriched in tumorigenic and metastatic progenitor cells; citation_author=L Patrawala, T Calhoun, R Schneider-Broussard, H Li, B Bhatia, S Tang; citation_volume=25; citation_publication_date=2006; citation_pages=1696-1708; citation_doi=10.1038/sj.onc.1209327; citation_id=CR45 citation_journal_title=Cancer Res; citation_title=Hierarchical organization of prostate cancer cells in xenograft tumors: the CD44+alpha2beta1+ cell population is enriched in tumor-initiating cells; citation_author=L Patrawala, T Calhoun-Davis, R Schneider-Broussard, DG Tang; citation_volume=67; citation_publication_date=2007; citation_pages=6796-6805; citation_doi=10.1158/0008-5472.CAN-07-0490; citation_id=CR46 citation_journal_title=Cell; citation_title=miRNAs, cancer, and stem cell division; citation_author=CM Croce, GA Calin; citation_volume=122; citation_publication_date=2005; citation_pages=6-7; citation_doi=10.1016/j.cell.2005.06.036; citation_id=CR47 citation_journal_title=Nature; citation_title=Opposing microRNA families regulate self-renewal in mouse embryonic stem cells; citation_author=C Melton, RL Judson, R Blelloch; citation_volume=463; citation_publication_date=2010; citation_pages=621-626; citation_doi=10.1038/nature08725; citation_id=CR48 citation_journal_title=Cell; citation_title=let-7 regulates self renewal and tumorigenicity of breast cancer cells; citation_author=F Yu, H Yao, P Zhu, X Zhang, Q Pan, C Gong; citation_volume=131; citation_publication_date=2007; citation_pages=1109-1123; citation_doi=10.1016/j.cell.2007.10.054; citation_id=CR49 citation_journal_title=Cell; citation_title=Downregulation of miRNA-200c links breast cancer stem cells with normal stem cells; citation_author=Y Shimono, M Zabala, RW Cho, N Lobo, P Dalerba, D Qian; citation_volume=138; citation_publication_date=2009; citation_pages=592-603; citation_doi=10.1016/j.cell.2009.07.011; citation_id=CR50 citation_journal_title=Dev Biol; citation_title=Human embryonic stem cells express a unique set of microRNAs; citation_author=MR Suh, Y Lee, JY Kim, SK Kim, SH Moon, JY Lee; citation_volume=270; citation_publication_date=2004; citation_pages=488-498; citation_doi=10.1016/j.ydbio.2004.02.019; citation_id=CR51 citation_journal_title=Nature; citation_title=A microRNA component of the p53 tumour suppressor network; citation_author=L He, X He, LP Lim, SE De, Z Xuan, Y Liang; citation_volume=447; citation_publication_date=2007; citation_pages=1130-1134; citation_doi=10.1038/nature05939; citation_id=CR52 citation_journal_title=Mol Cell; citation_title=Transcriptional activation of miR-34a contributes to p53-mediated apoptosis; citation_author=N Raver-Shapira, E Marciano, E Meiri, Y Spector, N Rosenfeld, N Moskovits; citation_volume=26; citation_publication_date=2007; citation_pages=731-743; citation_doi=10.1016/j.molcel.2007.05.017; citation_id=CR53 citation_journal_title=Mol Cell; citation_title=Transactivation of miR-34a by p53 broadly influences gene expression and promotes apoptosis; citation_author=TC Chang, EA Wentzel, OA Kent, K Ramachandran, M Mullendore, KH Lee; citation_volume=26; citation_publication_date=2007; citation_pages=745-752; citation_doi=10.1016/j.molcel.2007.05.010; citation_id=CR54 citation_journal_title=Curr Biol; citation_title=p53-mediated activation of miRNA34 candidate tumor-suppressor genes; citation_author=GT Bommer, I Gerin, Y Feng, AJ Kaczorowski, R Kuick, RE Love; citation_volume=17; citation_publication_date=2007; citation_pages=1298-1307; citation_doi=10.1016/j.cub.2007.06.068; citation_id=CR55 citation_journal_title=Cell Cycle; citation_title=Differential regulation of microRNAs by p53 revealed by massively parallel sequencing: miR-34a is a p53 target that induces apoptosis and G1-arrest; citation_author=V Tarasov, P Jung, B Verdoodt, D Lodygin, A Epanchintsev, A Menssen; citation_volume=6; citation_publication_date=2007; citation_pages=1586-1593; citation_doi=10.4161/cc.6.13.4436; citation_id=CR56 citation_journal_title=Nat Med; citation_title=The microRNA miR-34a inhibits prostate cancer stem cells and metastasis by directly repressing CD44; citation_author=C Liu, K Kelnar, B Liu, X Chen, T Calhoun-Davis, H Li; citation_volume=17; citation_publication_date=2011; citation_pages=211-215; citation_doi=10.1038/nm.2284; citation_id=CR57 citation_journal_title=Cell; citation_title=Epithelial-mesenchymal transitions in development and disease; citation_author=JP Thiery, H Acloque, RY Huang, MA Nieto; citation_volume=139; citation_publication_date=2009; citation_pages=871-890; citation_doi=10.1016/j.cell.2009.11.007; citation_id=CR58 citation_journal_title=PLoS One; citation_title=TMPRSS2/ERG promotes epithelial to mesenchymal transition through the ZEB1/ZEB2 axis in a prostate cancer model; citation_author=O Leshem, S Madar, I Kogan-Sakin, I Kamer, I Goldstein, R Brosh; citation_volume=6; citation_publication_date=2011; citation_pages=e21650; citation_doi=10.1371/journal.pone.0021650; citation_id=CR59 citation_journal_title=J Clin Invest; citation_title=The basics of epithelial-mesenchymal transition; citation_author=R Kalluri, RA Weinberg; citation_volume=119; citation_publication_date=2009; citation_pages=1420-1428; citation_doi=10.1172/JCI39104; citation_id=CR60 citation_journal_title=Cell Mol Life Sci; citation_title=The role of microRNAs in metastasis and epithelial-mesenchymal transition; citation_author=CP Bracken, PA Gregory, Y Khew-Goodall, GJ Goodall; citation_volume=66; citation_publication_date=2009; citation_pages=1682-1699; citation_doi=10.1007/s00018-009-8750-1; citation_id=CR61 citation_journal_title=J Clin Invest; citation_title=Biomarkers for epithelial-mesenchymal transitions; citation_author=M Zeisberg, EG Neilson; citation_volume=119; citation_publication_date=2009; citation_pages=1429-1437; citation_doi=10.1172/JCI36183; citation_id=CR62 citation_title=MicroRNAs: Targets of Interest in Breast Cancer Research; citation_inbook_title=MicroRNA: Expression, Detection and Therapeutic Strategies; citation_publication_date=2011; citation_pages=59-78; citation_id=CR63; citation_author=A Ahmad; citation_author=AS Ali; citation_author=S Ali; citation_author=Z Wang; citation_author=D Kong; citation_author=FH Sarkar; citation_publisher=Nova Publishers citation_journal_title=Int J Cancer; citation_title=Diagnostic and prognostic implications of microRNA profiling in prostate carcinoma; citation_author=A Schaefer, M Jung, HJ Mollenkopf, I Wagner, C Stephan, F Jentzmik; citation_volume=126; citation_publication_date=2010; citation_pages=1166-1176; citation_id=CR64 citation_journal_title=Oncogene; citation_title=Widespread deregulation of microRNA expression in human prostate cancer; citation_author=M Ozen, CJ Creighton, M Ozdemir, M Ittmann; citation_volume=27; citation_publication_date=2008; citation_pages=1788-1793; citation_doi=10.1038/sj.onc.1210809; citation_id=CR65 citation_journal_title=Mol Biosyst; citation_title=The activity and expression of microRNAs in prostate cancers; citation_author=X Fu, C Xue, Y Huang, Y Xie, Y Li; citation_volume=6; citation_publication_date=2010; citation_pages=2561-2572; citation_doi=10.1039/c0mb00100g; citation_id=CR66 citation_journal_title=PLoS One; citation_title=miR-143 interferes with ERK5 signaling, and abrogates prostate cancer progression in mice; citation_author=C Clape, V Fritz, C Henriquet, F Apparailly, PL Fernandez, F Iborra; citation_volume=4; citation_publication_date=2009; citation_pages=e7542; citation_doi=10.1371/journal.pone.0007542; citation_id=CR67 citation_journal_title=J Mammary Gland Biol Neoplasia; citation_title=Epithelial-mesenchymal transition in cancer: parallels between normal development and tumor progression; citation_author=DS Micalizzi, SM Farabaugh, HL Ford; citation_volume=15; citation_publication_date=2010; citation_pages=117-134; citation_doi=10.1007/s10911-010-9178-9; citation_id=CR68 citation_journal_title=Stem Cells; citation_title=miR-200 regulates PDGF-D-mediated epithelial-mesenchymal transition, adhesion, and invasion of prostate cancer cells; citation_author=D Kong, Y Li, Z Wang, S Banerjee, A Ahmad, HR Kim; citation_volume=27; citation_publication_date=2009; citation_pages=1712-1721; citation_doi=10.1002/stem.101; citation_id=CR69 citation_journal_title=PLoS One; citation_title=Epithelial to mesenchymal transition is mechanistically linked with stem cell signatures in prostate cancer cells; citation_author=D Kong, S Banerjee, A Ahmad, Y Li, Z Wang, S Sethi; citation_volume=5; citation_publication_date=2010; citation_pages=e12445; citation_doi=10.1371/journal.pone.0012445; citation_id=CR70 citation_journal_title=Int J Cancer; citation_title=Circulating miRNAs are correlated with tumor progression in prostate cancer; citation_author=JC Brase, M Johannes, T Schlomm, M Falth, A Haese, T Steuber; citation_volume=128; citation_publication_date=2011; citation_pages=608-616; citation_doi=10.1002/ijc.25376; citation_id=CR71 citation_journal_title=Oncogene; citation_title=Control of tumor and microenvironment cross-talk by miR-15a and miR-16 in prostate cancer; citation_author=M Musumeci, V Coppola, A Addario, M Patrizii, M Maugeri-Sacca, L Memeo; citation_volume=30; citation_publication_date=2011; citation_pages=4231-4242; citation_doi=10.1038/onc.2011.140; citation_id=CR72 citation_journal_title=Genome Res; citation_title=Most mammalian mRNAs are conserved targets of microRNAs; citation_author=RC Friedman, KK Farh, CB Burge, DP Bartel; citation_volume=19; citation_publication_date=2009; citation_pages=92-105; citation_doi=10.1101/gr.082701.108; citation_id=CR73 citation_journal_title=Cancer Res; citation_title=Phosphoglucose isomerase/autocrine motility factor mediates epithelial-mesenchymal transition regulated by miR-200 in breast cancer cells; citation_author=A Ahmad, A Aboukameel, D Kong, Z Wang, S Sethi, W Chen; citation_volume=71; citation_publication_date=2011; citation_pages=3400-3409; citation_doi=10.1158/0008-5472.CAN-10-0965; citation_id=CR74 citation_title=miR 488* inhibits androgen receptor expression in prostate carcinoma cells; citation_inbook_title=Int J Cancer; citation_publication_date=2010; citation_id=CR75; citation_author=K Sikand; citation_author=JE Slaibi; citation_author=R Singh; citation_author=SD Slane; citation_author=GC Shukla citation_journal_title=Cancer Res; citation_title=The role of microRNA-221 and microRNA-222 in androgen-independent prostate cancer cell lines; citation_author=T Sun, Q Wang, S Balk, M Brown, GS Lee, P Kantoff; citation_volume=69; citation_publication_date=2009; citation_pages=3356-3363; citation_doi=10.1158/0008-5472.CAN-08-4112; citation_id=CR76 citation_journal_title=J Biol Chem; citation_title=miR-221 and miR-222 expression affects the proliferation potential of human prostate carcinoma cell lines by targeting p27Kip1; citation_author=S Galardi, N Mercatelli, E Giorda, S Massalini, GV Frajese, SA Ciafre; citation_volume=282; citation_publication_date=2007; citation_pages=23716-23724; citation_doi=10.1074/jbc.M701805200; citation_id=CR77 citation_title=MiR-221 expression affects invasion potential of human prostate carcinoma cell lines by targeting DVL2; citation_inbook_title=Med Oncol; citation_publication_date=2011; citation_id=CR78; citation_author=C Zheng; citation_author=S Yinghao; citation_author=J Li citation_journal_title=Oncogene; citation_title=miR-21-mediated tumor growth; citation_author=ML Si, S Zhu, H Wu, Z Lu, F Wu, YY Mo; citation_volume=26; citation_publication_date=2007; citation_pages=2799-2803; citation_doi=10.1038/sj.onc.1210083; citation_id=CR79 citation_journal_title=Biochem Soc Trans; citation_title=miR-21 as a key regulator of oncogenic processes; citation_author=SD Selcuklu, MT Donoghue, C Spillane; citation_volume=37; citation_publication_date=2009; citation_pages=918-925; citation_doi=10.1042/BST0370918; citation_id=CR80 citation_journal_title=Biochem Biophys Res Commun; citation_title=MicroRNA-21 directly targets MARCKS and promotes apoptosis resistance and invasion in prostate cancer cells; citation_author=T Li, D Li, J Sha, P Sun, Y Huang; citation_volume=383; citation_publication_date=2009; citation_pages=280-285; citation_doi=10.1016/j.bbrc.2009.03.077; citation_id=CR81 citation_journal_title=Cancer Res; citation_title=miR-21: an androgen receptor-regulated microRNA that promotes hormone-dependent and hormone-independent prostate cancer growth; citation_author=J Ribas, X Ni, M Haffner, EA Wentzel, AH Salmasi, WH Chowdhury; citation_volume=69; citation_publication_date=2009; citation_pages=7165-7169; citation_doi=10.1158/0008-5472.CAN-09-1448; citation_id=CR82 citation_journal_title=PLoS One; citation_title=Anti-tumor activity of a novel compound-CDF is mediated by regulating miR-21, miR-200, and PTEN in pancreatic cancer; citation_author=B Bao, S Ali, D Kong, SH Sarkar, Z Wang, S Banerjee; citation_volume=6; citation_publication_date=2011; citation_pages=e17850; citation_doi=10.1371/journal.pone.0017850; citation_id=CR83 citation_journal_title=J Biol Chem; citation_title=Depletion of human micro-RNA miR-125b reveals that it is critical for the proliferation of differentiated cells but not for the down-regulation of putative targets during differentiation; citation_author=YS Lee, HK Kim, S Chung, KS Kim, A Dutta; citation_volume=280; citation_publication_date=2005; citation_pages=16635-16641; citation_doi=10.1074/jbc.M412247200; citation_id=CR84 citation_journal_title=Urol Oncol; citation_title=MicroRNAs and their potential for translation in prostate cancer; citation_author=RW Vere White, RL Vinall, CG Tepper, XB Shi; citation_volume=27; citation_publication_date=2009; citation_pages=307-311; citation_doi=10.1016/j.urolonc.2009.01.004; citation_id=CR85 citation_journal_title=Cancer Res; citation_title=Gemcitabine sensitivity can be induced in pancreatic cancer cells through modulation of miR-200 and miR-21 expression by curcumin or its analogue CDF; citation_author=S Ali, A Ahmad, S Banerjee, S Padhye, K Dominiak, JM Schaffert; citation_volume=70; citation_publication_date=2010; citation_pages=3606-3617; citation_doi=10.1158/0008-5472.CAN-09-4598; citation_id=CR86 citation_journal_title=Am J Transl Res; citation_title=Differentially expressed miRNAs in the plasma may provide a molecular signature for aggressive pancreatic cancer; citation_author=S Ali, K Almhanna, W Chen, PA Philip, FH Sarkar; citation_volume=3; citation_publication_date=2010; citation_pages=28-47; citation_id=CR87 citation_title=Inactivation of Ink4a/Arf leads to deregulated expression of miRNAs in K-Ras transgenic mouse model of pancreatic cancer; citation_inbook_title=J Cell Physiol; citation_publication_date=2011; citation_id=CR88; citation_author=S Ali; citation_author=S Banerjee; citation_author=F Logna; citation_author=B Bao; citation_author=PA Philip; citation_author=M Korc citation_title=Increased Ras GTPase activity is regulated by miRNAs that can be attenuated by CDF treatment in pancreatic cancer cells; citation_inbook_title=Cancer Lett; citation_publication_date=2012; citation_id=CR89; citation_author=S Ali; citation_author=A Ahmad; citation_author=A Aboukameel; citation_author=B Bao; citation_author=S Padhye; citation_author=PA Philip citation_journal_title=Carcinogenesis; citation_title=MicroRNA-21 induces stemness by downregulating transforming growth factor beta receptor 2 (TGFbetaR2) in colon cancer cells; citation_author=Y Yu, SS Kanwar, BB Patel, PS Oh, J Nautiyal, FH Sarkar; citation_volume=33; citation_publication_date=2012; citation_pages=68-76; citation_doi=10.1093/carcin/bgr246; citation_id=CR90