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Scaffold attachment factor B1 regulates androgen degradation pathways in prostate cancer
Julie Suan-Wei Yang1, Chen Qian1, Sungyong You1
1Division of Cancer Biology and Therapeutics, Departments of Surgery and Biomedical Sciences, Cedars-Sinai Medical Center Los Angeles, CA 90048, USA.
Abstract:
The nuclear matrix protein Scaffold Attachment Factor B1 (SAFB1, SAFB) can act in prostate cancer (PCa) as an androgen receptor (AR) co-repressor that functions through epigenetic silencing of AR targets, such as prostate specific antigen (PSA, KLK3). Genomic profiling of SAFB1-silenced PCa cells indicated that SAFB1 may play a role in modulating intracrine androgen levels through the regulation of UDP-glucuronosyltransferase (UGT) genes, which inactivate steroid hormones. Gene silencing of SAFB1 resulted in increased levels of free dihydrotesterosterone (DHT), and increased resistance to the AR inhibitor enzalutamide. SAFB1 silencing suppressed expression of the UDP-glucuronosyltransferase family 2 member B15 gene (UGT2B15) and the closely related UGT2B17 gene, which encode proteins that irreversibly inactivate testosterone (T) and DHT. Analysis of human data indicated that genomic loss at the SAFB locus, or down-regulation of expression of the SAFB gene, is associated with aggressive PCa. These findings identify SAFB1 as an important regulator of androgen catabolism in PCa and suggest that loss or inactivation of this protein may promote AR activity by retention of active androgen in tumor cells.
Insights
Scaffold Attachment Factor B1 (SAFB1) regulates androgen inactivation in prostate cancer. Loss of SAFB1 increases active androgens, promoting cancer growth and enzalutamide resistance.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Scaffold Attachment Factor B1 (SAFB1) acts as an androgen receptor (AR) co-repressor in prostate cancer (PCa).
- SAFB1 silences AR targets like prostate specific antigen (PSA).
Purpose of the Study:
- To investigate SAFB1's role in regulating intracrine androgen levels in PCa.
- To explore the impact of SAFB1 on androgen catabolism and treatment resistance.
Main Methods:
- Genomic profiling of SAFB1-silenced PCa cells.
- Analysis of UDP-glucuronosyltransferase (UGT) gene expression.
- Assessment of free dihydrotestosterone (DHT) levels and enzalutamide resistance.
- Examination of human PCa data for SAFB gene alterations.
Main Results:
- SAFB1 silencing increased free DHT levels and enzalutamide resistance.
- SAFB1 silencing suppressed UDP-glucuronosyltransferase family 2 member B15 (UGT2B15) and UGT2B17 gene expression.
- Genomic loss or down-regulation of SAFB is linked to aggressive PCa.
Conclusions:
- SAFB1 is a key regulator of androgen catabolism in PCa.
- Loss or inactivation of SAFB1 promotes AR activity by retaining active androgens in tumor cells.
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