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Updated: Aug 9, 2025

Two- and Three-Dimensional Live Cell Imaging of DNA Damage Response Proteins
Published on: September 28, 2012
hSSB1 (NABP2/OBFC2B) modulates the DNA damage and androgen-induced transcriptional response in prostate cancer
Mark N Adams1, Laura V Croft1, Aaron Urquhart1
1School of Biomedical Sciences, Faculty of Health, Translational Research Institute, Queensland University of Technology, Woolloongabba, Queensland, Australia.
Background:
Activation and regulation of androgen receptor (AR) signaling and the DNA damage response impact the prostate cancer (PCa) treatment modalities of androgen deprivation therapy (ADT) and radiotherapy. Here, we have evaluated a role for human single-strand binding protein 1 (hSSB1/NABP2) in modulation of the cellular response to androgens and ionizing radiation (IR). hSSB1 has defined roles in transcription and maintenance of genome stability, yet little is known about this protein in PCa.
Methods:
We correlated hSSB1 with measures of genomic instability across available PCa cases from The Cancer Genome Atlas (TCGA). Microarray and subsequent pathway and transcription factor enrichment analysis were performed on LNCaP and DU145 prostate cancer cells.
Results:
Our data demonstrate that hSSB1 expression in PCa correlates with measures of genomic instability including multigene signatures and genomic scars that are reflective of defects in the repair of DNA double-strand breaks via homologous recombination. In response to IR-induced DNA damage, we demonstrate that hSSB1 regulates cellular pathways that control cell cycle progression and the associated checkpoints. In keeping with a role for hSSB1 in transcription, our analysis revealed that hSSB1 negatively modulates p53 and RNA polymerase II transcription in PCa. Of relevance to PCa pathology, our findings highlight a transcriptional role for hSSB1 in regulating the androgen response. We identified that AR function is predicted to be impacted by hSSB1 depletion, whereby this protein is required to modulate AR gene activity in PCa.
Conclusions:
Our findings point to a key role for hSSB1 in mediating the cellular response to androgen and DNA damage via modulation of transcription. Exploiting hSSB1 in PCa might yield benefits as a strategy to ensure a durable response to ADT and/or radiotherapy and improved patient outcomes.
Insights
Human single-strand binding protein 1 (hSSB1) is crucial for prostate cancer (PCa) cells to respond to androgens and DNA damage. Targeting hSSB1 may improve treatment outcomes for PCa patients undergoing androgen deprivation therapy or radiotherapy.
Area of Science:
- Molecular biology
- Cancer research
- Genomics
Background:
- Androgen receptor (AR) signaling and DNA damage response are key in prostate cancer (PCa) treatment.
- Human single-strand binding protein 1 (hSSB1/NABP2) roles in transcription and genome stability are known, but its function in PCa is unclear.
Purpose of the Study:
- To investigate the role of hSSB1 in modulating cellular responses to androgens and ionizing radiation (IR) in PCa.
- To correlate hSSB1 expression with genomic instability in PCa.
Main Methods:
- Correlation analysis of hSSB1 with genomic instability in PCa cases from The Cancer Genome Atlas (TCGA).
- Microarray, pathway, and transcription factor enrichment analysis in LNCaP and DU145 prostate cancer cells.
Main Results:
- hSSB1 expression in PCa correlates with genomic instability and defects in DNA double-strand break repair.
- hSSB1 regulates cell cycle progression and checkpoints in response to IR-induced DNA damage.
- hSSB1 negatively modulates p53 and RNA polymerase II transcription and is required for androgen receptor (AR) gene activity in PCa.
Conclusions:
- hSSB1 plays a key role in mediating cellular responses to androgens and DNA damage through transcriptional modulation.
- Targeting hSSB1 could enhance responses to androgen deprivation therapy (ADT) and radiotherapy, improving PCa patient outcomes.
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