Cytoplasmic PELP1 and ERRgamma protect human mammary epithelial cells from Tam-induced cell death.

Tamoxifen (Tam) is the only FDA-approved chemoprevention agent for pre-menopausal women at high risk for developing breast cancer. While Tam reduces a woman's risk of developing estrogen receptor positive (ER+) breast cancer, the molecular mechanisms associated with risk reduction are poorly un...

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Main Authors: Brian J Girard, Tarah M Regan Anderson, Siya Lem Welch, Julie Nicely, Victoria L Seewaldt, Julie H Ostrander
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4366195?pdf=render
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spelling doaj-5c51500b93814e7889bad0d426af324d2020-11-24T21:39:10ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01103e012120610.1371/journal.pone.0121206Cytoplasmic PELP1 and ERRgamma protect human mammary epithelial cells from Tam-induced cell death.Brian J GirardTarah M Regan AndersonSiya Lem WelchJulie NicelyVictoria L SeewaldtJulie H OstranderTamoxifen (Tam) is the only FDA-approved chemoprevention agent for pre-menopausal women at high risk for developing breast cancer. While Tam reduces a woman's risk of developing estrogen receptor positive (ER+) breast cancer, the molecular mechanisms associated with risk reduction are poorly understood. Prior studies have shown that cytoplasmic proline, glutamic acid and leucine rich protein 1 (PELP1) promotes Tam resistance in breast cancer cell lines. Herein, we tested for PELP1 localization in breast epithelial cells from women at high risk for developing breast cancer and found that PELP1 was localized to the cytoplasm in 36% of samples. In vitro, immortalized HMECs expressing a nuclear localization signal (NLS) mutant of PELP1 (PELP1-cyto) were resistant to Tam-induced death. Furthermore, PELP1-cyto signaling through estrogen-related receptor gamma (ERRγ) promoted cell survival in the presence of Tam. Overexpression of ERRγ in immortalized HMECs protected cells from Tam-induced death, while knockdown of ERRγ sensitized PELP1-cyto expressing HMECs to Tam. Moreover, Tam-induced HMEC cell death was independent of apoptosis and involved accumulation of the autophagy marker LC3-II. Expression of PELP1-cyto and ERRγ reduced Tam-induced LC3-II accumulation, and knockdown of ERRγ increased LC3-II levels in response to Tam. Additionally, PELP1-cyto expression led to the upregulation of MMP-3 and MAOB, known PELP1 and ERRγ target genes, respectively. Our data indicate that cytoplasmic PELP1 induces signaling pathways that converge on ERRγ to promote cell survival in the presence of Tam. These data suggest that PELP1 localization and/or ERRγ activation could be developed as tissue biomarkers for Tam responsiveness.http://europepmc.org/articles/PMC4366195?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Brian J Girard
Tarah M Regan Anderson
Siya Lem Welch
Julie Nicely
Victoria L Seewaldt
Julie H Ostrander
spellingShingle Brian J Girard
Tarah M Regan Anderson
Siya Lem Welch
Julie Nicely
Victoria L Seewaldt
Julie H Ostrander
Cytoplasmic PELP1 and ERRgamma protect human mammary epithelial cells from Tam-induced cell death.
PLoS ONE
author_facet Brian J Girard
Tarah M Regan Anderson
Siya Lem Welch
Julie Nicely
Victoria L Seewaldt
Julie H Ostrander
author_sort Brian J Girard
title Cytoplasmic PELP1 and ERRgamma protect human mammary epithelial cells from Tam-induced cell death.
title_short Cytoplasmic PELP1 and ERRgamma protect human mammary epithelial cells from Tam-induced cell death.
title_full Cytoplasmic PELP1 and ERRgamma protect human mammary epithelial cells from Tam-induced cell death.
title_fullStr Cytoplasmic PELP1 and ERRgamma protect human mammary epithelial cells from Tam-induced cell death.
title_full_unstemmed Cytoplasmic PELP1 and ERRgamma protect human mammary epithelial cells from Tam-induced cell death.
title_sort cytoplasmic pelp1 and errgamma protect human mammary epithelial cells from tam-induced cell death.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Tamoxifen (Tam) is the only FDA-approved chemoprevention agent for pre-menopausal women at high risk for developing breast cancer. While Tam reduces a woman's risk of developing estrogen receptor positive (ER+) breast cancer, the molecular mechanisms associated with risk reduction are poorly understood. Prior studies have shown that cytoplasmic proline, glutamic acid and leucine rich protein 1 (PELP1) promotes Tam resistance in breast cancer cell lines. Herein, we tested for PELP1 localization in breast epithelial cells from women at high risk for developing breast cancer and found that PELP1 was localized to the cytoplasm in 36% of samples. In vitro, immortalized HMECs expressing a nuclear localization signal (NLS) mutant of PELP1 (PELP1-cyto) were resistant to Tam-induced death. Furthermore, PELP1-cyto signaling through estrogen-related receptor gamma (ERRγ) promoted cell survival in the presence of Tam. Overexpression of ERRγ in immortalized HMECs protected cells from Tam-induced death, while knockdown of ERRγ sensitized PELP1-cyto expressing HMECs to Tam. Moreover, Tam-induced HMEC cell death was independent of apoptosis and involved accumulation of the autophagy marker LC3-II. Expression of PELP1-cyto and ERRγ reduced Tam-induced LC3-II accumulation, and knockdown of ERRγ increased LC3-II levels in response to Tam. Additionally, PELP1-cyto expression led to the upregulation of MMP-3 and MAOB, known PELP1 and ERRγ target genes, respectively. Our data indicate that cytoplasmic PELP1 induces signaling pathways that converge on ERRγ to promote cell survival in the presence of Tam. These data suggest that PELP1 localization and/or ERRγ activation could be developed as tissue biomarkers for Tam responsiveness.
url http://europepmc.org/articles/PMC4366195?pdf=render
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