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Estrogen receptor alpha drives proliferation in PTEN-deficient prostate carcinoma by stimulating survival signaling, MYC expression and altering glucose sensitivity

While high doses of estrogen, in combination with androgens, can initiate prostate cancer (PCa) via activation of the estrogen receptor α (ERα), the role of ERα in PCa cells within established tumors is largely unknown. Here we show that expression of ERα is increased in high grade human PCa. Simila...

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Autores principales: Takizawa, Itsuhiro, Lawrence, Mitchell G., Balanathan, Preetika, Rebello, Richard, Pearson, Helen B., Garg, Elika, Pedersen, John, Pouliot, Normand, Nadon, Robert, Watt, Matthew J., Taylor, Renea A., Humbert, Patrick, Topisirovic, Ivan, Larsson, Ola, Risbridger, Gail P., Furic, Luc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4359242/
https://www.ncbi.nlm.nih.gov/pubmed/25436982
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author Takizawa, Itsuhiro
Lawrence, Mitchell G.
Balanathan, Preetika
Rebello, Richard
Pearson, Helen B.
Garg, Elika
Pedersen, John
Pouliot, Normand
Nadon, Robert
Watt, Matthew J.
Taylor, Renea A.
Humbert, Patrick
Topisirovic, Ivan
Larsson, Ola
Risbridger, Gail P.
Furic, Luc
author_facet Takizawa, Itsuhiro
Lawrence, Mitchell G.
Balanathan, Preetika
Rebello, Richard
Pearson, Helen B.
Garg, Elika
Pedersen, John
Pouliot, Normand
Nadon, Robert
Watt, Matthew J.
Taylor, Renea A.
Humbert, Patrick
Topisirovic, Ivan
Larsson, Ola
Risbridger, Gail P.
Furic, Luc
author_sort Takizawa, Itsuhiro
collection PubMed
description While high doses of estrogen, in combination with androgens, can initiate prostate cancer (PCa) via activation of the estrogen receptor α (ERα), the role of ERα in PCa cells within established tumors is largely unknown. Here we show that expression of ERα is increased in high grade human PCa. Similarly, ERα is elevated in mouse models of aggressive PCa driven by MYC overexpression or deletion of PTEN. Within the prostate of PTEN-deficient mice, there is a progressive pattern of ERα expression: low in benign glands, moderate in tumors within the dorsal, lateral and ventral lobes, and high in tumors within the anterior prostate. This expression significantly correlates with the proliferation marker Ki67. Furthermore, in vitro knockdown of ERα in cells derived from PTEN-deficient tumors causes a significant and sustained decrease in proliferation. Depletion of ERα also reduces the activity of the PI3K and MAPK pathways, both downstream targets of non-genomic ERα action. Finally, ERα knockdown reduces the levels of the MYC protein and lowers the sensitivity of cellular proliferation to glucose withdrawal, which correlates with decreased expression of the glucose transporter GLUT1. Collectively, these results demonstrate that ERα orchestrates proliferation and metabolism to promote the neoplastic growth of PCa cells.
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spelling pubmed-43592422015-03-27 Estrogen receptor alpha drives proliferation in PTEN-deficient prostate carcinoma by stimulating survival signaling, MYC expression and altering glucose sensitivity Takizawa, Itsuhiro Lawrence, Mitchell G. Balanathan, Preetika Rebello, Richard Pearson, Helen B. Garg, Elika Pedersen, John Pouliot, Normand Nadon, Robert Watt, Matthew J. Taylor, Renea A. Humbert, Patrick Topisirovic, Ivan Larsson, Ola Risbridger, Gail P. Furic, Luc Oncotarget Priority Research Paper While high doses of estrogen, in combination with androgens, can initiate prostate cancer (PCa) via activation of the estrogen receptor α (ERα), the role of ERα in PCa cells within established tumors is largely unknown. Here we show that expression of ERα is increased in high grade human PCa. Similarly, ERα is elevated in mouse models of aggressive PCa driven by MYC overexpression or deletion of PTEN. Within the prostate of PTEN-deficient mice, there is a progressive pattern of ERα expression: low in benign glands, moderate in tumors within the dorsal, lateral and ventral lobes, and high in tumors within the anterior prostate. This expression significantly correlates with the proliferation marker Ki67. Furthermore, in vitro knockdown of ERα in cells derived from PTEN-deficient tumors causes a significant and sustained decrease in proliferation. Depletion of ERα also reduces the activity of the PI3K and MAPK pathways, both downstream targets of non-genomic ERα action. Finally, ERα knockdown reduces the levels of the MYC protein and lowers the sensitivity of cellular proliferation to glucose withdrawal, which correlates with decreased expression of the glucose transporter GLUT1. Collectively, these results demonstrate that ERα orchestrates proliferation and metabolism to promote the neoplastic growth of PCa cells. Impact Journals LLC 2014-11-26 /pmc/articles/PMC4359242/ /pubmed/25436982 Text en Copyright: © 2015 Takizawa 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 Priority Research Paper
Takizawa, Itsuhiro
Lawrence, Mitchell G.
Balanathan, Preetika
Rebello, Richard
Pearson, Helen B.
Garg, Elika
Pedersen, John
Pouliot, Normand
Nadon, Robert
Watt, Matthew J.
Taylor, Renea A.
Humbert, Patrick
Topisirovic, Ivan
Larsson, Ola
Risbridger, Gail P.
Furic, Luc
Estrogen receptor alpha drives proliferation in PTEN-deficient prostate carcinoma by stimulating survival signaling, MYC expression and altering glucose sensitivity
title Estrogen receptor alpha drives proliferation in PTEN-deficient prostate carcinoma by stimulating survival signaling, MYC expression and altering glucose sensitivity
title_full Estrogen receptor alpha drives proliferation in PTEN-deficient prostate carcinoma by stimulating survival signaling, MYC expression and altering glucose sensitivity
title_fullStr Estrogen receptor alpha drives proliferation in PTEN-deficient prostate carcinoma by stimulating survival signaling, MYC expression and altering glucose sensitivity
title_full_unstemmed Estrogen receptor alpha drives proliferation in PTEN-deficient prostate carcinoma by stimulating survival signaling, MYC expression and altering glucose sensitivity
title_short Estrogen receptor alpha drives proliferation in PTEN-deficient prostate carcinoma by stimulating survival signaling, MYC expression and altering glucose sensitivity
title_sort estrogen receptor alpha drives proliferation in pten-deficient prostate carcinoma by stimulating survival signaling, myc expression and altering glucose sensitivity
topic Priority Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4359242/
https://www.ncbi.nlm.nih.gov/pubmed/25436982
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