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Updated: Jul 19, 2025

miRNA Expression Analyses in Prostate Cancer Clinical Tissues
Published on: September 8, 2015
Androgen receptor and MYC transcriptomes are equilibrated in multilayer regulatory circuitries in prostate cancer
Bin Fu1, Liyang Wang2,3, Tianwei Jia4,5,6
1Department of Urology, The First Affiliated Hospital of Nanchang University, Nanchang, P.R.China.
Background:
The discovery of androgen receptor (AR) having transrepression effects completes the circle of its functionalities as a typical transcription factor, which intrinsically bears dual functions of activation and repression linked to co-factor competition and redistribution. Indeed, AR dual functions are exemplified by locus-wide regulation of the oncogenic 8q24-MYC region.
Methods:
RT-qPCR assay and public RNA-profiling datasets were used to assess MYC transcription in androgen-sensitive cell lines. Public ChIP-seq and RNA-Seq datasets were computed to evaluate AR-MYC direct and indirect signatures. Gene sets in typical MYC and AR pathways were monitored to validate their cross-talks. Bio-informatics and chromosome conformation capture (3C) assay were performed in the AR gene locus to examine androgen-elicited distal regulation. Finally, co-factor re-distribution were globally tracked between AR and MYC binding sites.
Results:
In this report, we found MYC responded negatively to androgen with hypersensitivity, rivaling AR natural functions as an innate androgen effector. Furthermore, both direct and indirect AR and MYC transcriptional programs were actively in equilibration. With established androgen-mediated versus MYC-mediated gene subsets, we validated AR and MYC pathways were both bidirectional and extensively entangled. In addition, we determined that the AR gene locus resembled the MYC gene region and both loci were androgen-repressed via epigenetics and chromatin architectural alterations. Significantly, transcriptional factor profiling along the prostate cancer (PCa) genome exposed that PCa transcriptomes were dynamically equilibrated between AR-binding site and MYC-binding site.
Conclusion:
Together, our findings stratified AR-MYC interactions that are extensively wired and intricately organized to compensate for essential PCa transcriptional programs and neutralize excessive signaling.
Insights
Androgen receptor (AR) and MYC exhibit dual functions, regulating gene expression through activation and repression. Their intricate interactions are crucial for prostate cancer (PCa) transcriptional programs and signaling.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- Androgen receptor (AR) functions as a transcription factor with dual activation and repression capabilities.
- AR's transrepression effects are linked to co-factor competition and redistribution.
- AR dual functions are exemplified by locus-wide regulation of the oncogenic 8q24-MYC region.
Purpose of the Study:
- To investigate the intricate relationship between androgen receptor (AR) and MYC in androgen-sensitive cell lines.
- To elucidate the dual functions of AR in gene regulation, particularly its interaction with MYC.
- To understand the implications of AR-MYC cross-talk in prostate cancer (PCa) pathogenesis.
Main Methods:
- Quantitative real-time PCR (RT-qPCR) and public RNA-profiling datasets were used to assess MYC transcription.
- Public ChIP-seq and RNA-Seq datasets were analyzed to evaluate AR-MYC direct and indirect signatures.
- Bio-informatics, chromosome conformation capture (3C) assays, and co-factor tracking were employed to examine AR gene locus regulation and cross-talk.
Main Results:
- MYC transcription demonstrated hypersensitivity and negative response to androgen, indicating a rivaling function to AR.
- AR and MYC transcriptional programs were found to be bidirectional, extensively entangled, and actively in equilibration.
- Both AR and MYC gene loci were androgen-repressed via epigenetic and chromatin architectural alterations, with PCa transcriptomes dynamically equilibrated between AR and MYC binding sites.
Conclusions:
- AR-MYC interactions are extensively wired and intricately organized.
- These interactions compensate for essential PCa transcriptional programs.
- AR-MYC pathways neutralize excessive signaling in prostate cancer.
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