| Literature DB >> 26877888 |
Jey Sabith Ebron1, Crystal M Weyman2, Girish C Shukla2.
Abstract
Prostate cancer begins as an androgen-responsive disease. However, subsequent accumulation of multiple sequential genetic and epigenetic alterations transforms the disease into an aggressive, castration-resistant prostate cancer (CRPC). The monoallelic Androgen Receptor (AR) is associated with the onset, growth and development of Prostate cancer. The AR is a ligand-dependent transcription factor, and the targeting of androgen- and AR-signaling axis remains the primary therapeutic option for Prostate cancer (PCa) treatment. A durable and functional disruption of AR signaling pathways combining both traditional and novel therapeutics is likely to provide better treatment options for CRPC. Recent work has indicated that expression of AR is modulated at the posttranscriptional level by regulatory miRNAs. Due to a relatively long 3' untranslated region (UTR) of AR mRNA, the posttranscription expression is likely to be regulated by hundreds of miRNAs in normal as well as in disease state. The main objective of the article is to offer a thought-provoking concept of "andro-miRs" and their potential application in AR gene expression targeting. This new paradigm for targeting constitutively active AR and its tumor specific splicing isoforms using andro-miRs may pave the way for a novel adjunctive therapy and improved treatment of CRPC.Entities:
Keywords: 3’ Untranslated Region; Andro-miR; Androgen Receptor; Castration-Resistant Prostate Cancer (CRPC); Prostate Cancer; microRNA
Year: 2013 PMID: 26877888 PMCID: PMC4751888 DOI: 10.4236/jct.2013.44A006
Source DB: PubMed Journal: J Cancer Ther ISSN: 2151-1934
Andro-miRs that are known to downregulate AR expression in PCa cells by direct interaction to AR 3’ UTR: The lists includes the miRNAs that have been validated for their AR:miR RNA-RNA binding experiment using heterologous Luciferase reporter constructs in Sikand et al. 2011 and Östling P et al. 2011.
indicates the miRNAs with increased reporter activity, though the endogenous levels of AR protein was downregulated in miRNA overexpression study of Östling P et al. 2011.
Figure 1This figure depicts the relative location of andro-miR target sites on AR 3’ UTR schematically. AR mRNA is shown in the top panel with its 5’ UTR, open reading frame and 6.8 kb 3’ UTR