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Updated: May 21, 2026

miRNA Expression Analyses in Prostate Cancer Clinical Tissues
Published on: September 8, 2015
Promoter variants in the MSMB gene associated with prostate cancer regulate MSMB/NCOA4 fusion transcripts
Hong Lou1, Hongchuan Li2, Meredith Yeager3
1Human Genetics Section, Basic Research Program, SAIC-Frederick Inc., National Cancer Institute-Frederick, Frederick, MD 21702, USA.
Abstract:
Beta-microseminoprotein (MSP)/MSMB is an immunoglobulin superfamily protein synthesized by prostate epithelial cells and secreted into seminal plasma. Variants in the promoter of the MSMB gene have been associated with the risk of prostate cancer (PCa) in several independent genome-wide association studies. Both MSMB and an adjacent gene, NCOA4, are subjected to transcriptional control via androgen response elements. The gene product of NCOA4 interacts directly with the androgen receptor as a co-activator to enhance AR transcriptional activity. Here, we provide evidence for the expression of full-length MSMB-NCOA4 fusion transcripts regulated by the MSMB promoter. The predominant MSMB-NCOA4 transcript arises by fusion of the 5'UTR and exons 1-2 of the MSMB pre-mRNA, with exons 2-10 of the NCOA4 pre-mRNA, producing a stable fusion protein, comprising the essential domains of NCOA4. Analysis of the splice sites of this transcript shows an unusually strong splice acceptor at NCOA4 exon 2 and the presence of Alu repeats flanking the exons potentially involved in the splicing event. Transfection experiments using deletion clones of the promoter coupled with luciferase reporter assays define a core MSMB promoter element located between -27 and -236 of the gene, and a negative regulatory element immediately upstream of the start codon. Computational network analysis reveals that the MSMB gene is functionally connected to NCOA4 and the androgen receptor signaling pathway. The data provide an example of how GWAS-associated variants may have multiple genetic and epigenetic effects.
Insights
Genetic variants in the MSMB gene promoter influence prostate cancer risk. Researchers discovered novel MSMB-NCOA4 fusion transcripts, revealing a new mechanism for gene regulation in prostate cancer.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Beta-microseminoprotein (MSP)/MSMB, synthesized by prostate cells, is linked to prostate cancer (PCa) risk via promoter variants.
- MSMB and NCOA4 genes are regulated by androgen response elements; NCOA4 acts as a co-activator for the androgen receptor (AR).
Purpose of the Study:
- To investigate the expression of MSMB-NCOA4 fusion transcripts.
- To identify regulatory elements within the MSMB promoter.
- To elucidate the functional relationship between MSMB, NCOA4, and AR signaling in PCa.
Main Methods:
- Analysis of MSMB-NCOA4 fusion transcript splice sites and flanking Alu repeats.
- Transfection experiments with MSMB promoter deletion clones and luciferase reporter assays.
- Computational network analysis of gene interactions.
Main Results:
- Evidence for full-length MSMB-NCOA4 fusion transcripts regulated by the MSMB promoter.
- Identification of a core MSMB promoter element (-27 to -236) and a negative regulatory element.
- MSMB gene is functionally linked to NCOA4 and the AR signaling pathway.
Conclusions:
- Discovery of MSMB-NCOA4 fusion transcripts provides a novel mechanism for gene regulation.
- The findings offer insights into how GWAS-associated variants can exert multiple genetic and epigenetic effects.
- This study enhances understanding of prostate cancer pathogenesis and androgen receptor signaling.
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