PLoS ONE 2015-01-01

The FKBP52 Cochaperone Acts in Synergy with β-Catenin to Potentiate Androgen Receptor Signaling.

Cheryl Storer Samaniego, Ji Ho Suh, Arundhati Chattopadhyay, Karen Olivares, Naihsuan Guy, Jeffrey C Sivils, Prasenjit Dey, Fumiaki Yumoto, Robert J Fletterick, Anders M Strom, Jan-Åke Gustafsson, Paul Webb, Marc B Cox

Index: PLoS ONE 10(7) , e0134015, (2015)

Full Text: HTML

Abstract

FKBP52 and β-catenin have emerged in recent years as attractive targets for prostate cancer treatment. β-catenin interacts directly with the androgen receptor (AR) and has been characterized as a co-activator of AR-mediated transcription. FKBP52 is a positive regulator of AR in cellular and whole animal models and is required for the development of androgen-dependent tissues. We previously characterized an AR inhibitor termed MJC13 that putatively targets the AR BF3 surface to specifically inhibit FKBP52-regulated AR signaling. Predictive modeling suggests that β-catenin interacts with the AR hormone binding domain on a surface that overlaps with BF3. Here we demonstrate that FKBP52 and β-catenin interact directly in vitro and act in concert to promote a synergistic up-regulation of both hormone-independent and -dependent AR signaling. Our data demonstrate that FKBP52 promotes β-catenin interaction with AR and is required for β-catenin co-activation of AR activity in prostate cancer cells. MJC13 effectively blocks β-catenin interaction with the AR LBD and the synergistic up-regulation of AR by FKBP52 and β-catenin. Our data suggest that co-regulation of AR by FKBP52 and β-catenin does not require FKBP52 PPIase catalytic activity, nor FKBP52 binding to Hsp90. However, the FKBP52 proline-rich loop that overhangs the PPIase pocket is critical for synergy.


Related Compounds

  • N-(2,3-dichlorophe...

Related Articles:

Similarities and Distinctions in Actions of Surface-Directed and Classic Androgen Receptor Antagonists.

2015-01-01

[PLoS ONE 10(9) , e0137103, (2015)]

Quantification of a New Anti-Cancer Molecule MJC13 Using a Rapid, Sensitive, and Reliable Liquid Chromatography-Tandem Mass Spectrometry Method.

2015-01-01

[Am. J. Mod. Chromatogr. 1(1) , 1-11, (2014)]

Androgen receptor splice variants are resistant to inhibitors of Hsp90 and FKBP52, which alter androgen receptor activity and expression.

2013-06-01

[Steroids 78(6) , 548-54, (2013)]

Targeting the regulation of androgen receptor signaling by the heat shock protein 90 cochaperone FKBP52 in prostate cancer cells.

2011-07-19

[Proc. Natl. Acad. Sci. U. S. A. 108(29) , 11878-83, (2011)]

Solution formulation development and efficacy of MJC13 in a preclinical model of castration-resistant prostate cancer.

2016-01-01

[Pharm. Dev. Technol. 21(1) , 121-6, (2016)]

More Articles...