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Protein phosphatase 1 suppresses androgen receptor ubiquitylation and degradation

The phosphoprotein phosphatases are emerging as important androgen receptor (AR) regulators in prostate cancer (PCa). We reported previously that the protein phosphatase 1 catalytic subunit (PP1α) can enhance AR activity by dephosphorylating a site in the AR hinge region (Ser650) and thereby decreas...

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Autores principales: Liu, Xiaming, Han, Weiwei, Gulla, Sarah, Simon, Nicholas I., Gao, Yanfei, Cai, Changmeng, Yang, Hongmei, Zhang, Xiaoping, Liu, Jihong, Balk, Steven P., Chen, Shaoyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4811495/
https://www.ncbi.nlm.nih.gov/pubmed/26636645
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author Liu, Xiaming
Han, Weiwei
Gulla, Sarah
Simon, Nicholas I.
Gao, Yanfei
Cai, Changmeng
Yang, Hongmei
Zhang, Xiaoping
Liu, Jihong
Balk, Steven P.
Chen, Shaoyong
author_facet Liu, Xiaming
Han, Weiwei
Gulla, Sarah
Simon, Nicholas I.
Gao, Yanfei
Cai, Changmeng
Yang, Hongmei
Zhang, Xiaoping
Liu, Jihong
Balk, Steven P.
Chen, Shaoyong
author_sort Liu, Xiaming
collection PubMed
description The phosphoprotein phosphatases are emerging as important androgen receptor (AR) regulators in prostate cancer (PCa). We reported previously that the protein phosphatase 1 catalytic subunit (PP1α) can enhance AR activity by dephosphorylating a site in the AR hinge region (Ser650) and thereby decrease AR nuclear export. In this study we show that PP1α increases the expression of wildtype as well as an S650A mutant AR, indicating that it is acting through one or more additional mechanisms. We next show that PP1α binds primarily to the AR ligand binding domain and decreases its ubiquitylation and degradation. Moreover, we find that the PP1α inhibitor tautomycin increases phosphorylation of AR ubiquitin ligases including SKP2 and MDM2 at sites that enhance their activity, providing a mechanism by which PP1α may suppress AR degradation. Significantly, the tautomycin mediated decrease in AR expression was most pronounced at low androgen levels or in the presence of the AR antagonist enzalutamide. Consistent with this finding, the sensitivity of LNCaP and C4–2 PCa cells to tautomycin, as assessed by PSA synthesis and proliferation, was enhanced at low androgen levels or by treatment with enzalutamide. Together these results indicate that PP1α may contribute to stabilizing AR protein after androgen deprivation therapies, and that targeting PP1α or the AR-PP1α interaction may be effective in castration-resistant prostate cancer (CRPC).
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spelling pubmed-48114952016-04-25 Protein phosphatase 1 suppresses androgen receptor ubiquitylation and degradation Liu, Xiaming Han, Weiwei Gulla, Sarah Simon, Nicholas I. Gao, Yanfei Cai, Changmeng Yang, Hongmei Zhang, Xiaoping Liu, Jihong Balk, Steven P. Chen, Shaoyong Oncotarget Research Paper The phosphoprotein phosphatases are emerging as important androgen receptor (AR) regulators in prostate cancer (PCa). We reported previously that the protein phosphatase 1 catalytic subunit (PP1α) can enhance AR activity by dephosphorylating a site in the AR hinge region (Ser650) and thereby decrease AR nuclear export. In this study we show that PP1α increases the expression of wildtype as well as an S650A mutant AR, indicating that it is acting through one or more additional mechanisms. We next show that PP1α binds primarily to the AR ligand binding domain and decreases its ubiquitylation and degradation. Moreover, we find that the PP1α inhibitor tautomycin increases phosphorylation of AR ubiquitin ligases including SKP2 and MDM2 at sites that enhance their activity, providing a mechanism by which PP1α may suppress AR degradation. Significantly, the tautomycin mediated decrease in AR expression was most pronounced at low androgen levels or in the presence of the AR antagonist enzalutamide. Consistent with this finding, the sensitivity of LNCaP and C4–2 PCa cells to tautomycin, as assessed by PSA synthesis and proliferation, was enhanced at low androgen levels or by treatment with enzalutamide. Together these results indicate that PP1α may contribute to stabilizing AR protein after androgen deprivation therapies, and that targeting PP1α or the AR-PP1α interaction may be effective in castration-resistant prostate cancer (CRPC). Impact Journals LLC 2015-11-30 /pmc/articles/PMC4811495/ /pubmed/26636645 Text en Copyright: © 2016 Liu et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Liu, Xiaming
Han, Weiwei
Gulla, Sarah
Simon, Nicholas I.
Gao, Yanfei
Cai, Changmeng
Yang, Hongmei
Zhang, Xiaoping
Liu, Jihong
Balk, Steven P.
Chen, Shaoyong
Protein phosphatase 1 suppresses androgen receptor ubiquitylation and degradation
title Protein phosphatase 1 suppresses androgen receptor ubiquitylation and degradation
title_full Protein phosphatase 1 suppresses androgen receptor ubiquitylation and degradation
title_fullStr Protein phosphatase 1 suppresses androgen receptor ubiquitylation and degradation
title_full_unstemmed Protein phosphatase 1 suppresses androgen receptor ubiquitylation and degradation
title_short Protein phosphatase 1 suppresses androgen receptor ubiquitylation and degradation
title_sort protein phosphatase 1 suppresses androgen receptor ubiquitylation and degradation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4811495/
https://www.ncbi.nlm.nih.gov/pubmed/26636645
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