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Sequencing Small Non-coding RNA from Formalin-fixed Tissues and Serum-derived Exosomes from Castration-resistant Prostate Cancer Patients
Published on: November 19, 2019
Targeting the BAF57 SWI/SNF subunit in prostate cancer: a novel platform to control androgen receptor activity
Kevin A Link1, Sucharitha Balasubramaniam, Ankur Sharma
1Departments of Cancer Biology and Urology, and Kimmel Cancer Center, Thomas Jefferson University College of Medicine, Philadelphia, Pennsylvania, USa.
Abstract:
The androgen receptor (AR) is critical for disseminated prostate cancer proliferation and survival. AR activity is targeted either through prevention of ligand synthesis or through the use of antagonists that bind the COOH-terminal ligand-binding domain. Although initially effective, treatment fails due to restored AR activity in the presence of therapeutics. Thus, new means must be developed to target AR activity. The SWI/SNF chromatin remodeling complex is critical for AR transcriptional activity, and the BAF57 SWI/SNF subunit facilitates direct interaction with the receptor. Although selected SWI/SNF subunit expression is reduced in prostate cancer, we show that BAF57 is retained in human disease and is elevated in a subset of tumors. Functional analyses showed that BAF57 contributes uniquely to androgen-mediated stimulation of transcription without compromising the effectiveness of AR antagonists. Subsequent studies revealed that BAF57 is recruited to the AR DNA-binding domain/hinge region, which occurs concomitant with receptor activation. These data provided the basis for a novel inhibitor derived from BAF57 [BAF57 inhibitory peptide (BIPep)], which blocked AR residence on chromatin and resultant AR-dependent gene activation. Importantly, BIPep expression was sufficient to inhibit androgen-dependent prostate cancer cell proliferation in AR-positive cells. In summary, these data identify blockade of AR-BAF57 interaction as a novel means to target agonist-induced AR function in prostate cancer, and provide the first evidence that abrogation of SWI/SNF function can be developed as a point of therapeutic intervention in prostate cancer.
Insights
Targeting androgen receptor (AR) interaction with the SWI/SNF complex via BAF57 is a novel therapeutic strategy for prostate cancer. This approach inhibits AR activity and prostate cancer cell proliferation, offering a new treatment avenue.
Area of Science:
- Oncology
- Molecular Biology
- Chromatin Remodeling
Background:
- Androgen receptor (AR) is crucial for prostate cancer growth, but treatments targeting AR often fail due to resistance.
- The SWI/SNF chromatin remodeling complex, particularly the BAF57 subunit, plays a key role in AR transcriptional activity.
Purpose of the Study:
- To investigate the role of BAF57 in AR activity and its potential as a therapeutic target in prostate cancer.
- To develop a novel therapeutic strategy by inhibiting the AR-BAF57 interaction.
Main Methods:
- Analysis of BAF57 expression in human prostate cancer.
- Functional studies assessing BAF57's role in androgen-mediated transcription.
- Development and testing of a BAF57-derived peptide inhibitor (BIPep) in prostate cancer cells.
Main Results:
- BAF57 is retained and sometimes elevated in prostate cancer, contributing to AR-mediated transcription.
- BAF57 interacts with the AR DNA-binding domain upon receptor activation.
- The novel peptide inhibitor BIPep effectively blocked AR chromatin binding and AR-dependent gene activation, inhibiting prostate cancer cell proliferation.
Conclusions:
- Blocking the AR-BAF57 interaction is a promising new strategy for targeting AR function in prostate cancer.
- Abrogating SWI/SNF complex function represents a novel therapeutic intervention point for prostate cancer treatment.

