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Hyperactive mTOR and MNK1 phosphorylation of eIF4E confer tamoxifen resistance and estrogen independence through selective mRNA translation reprogramming

The majority of breast cancers expresses the estrogen receptor (ER(+)) and is treated with anti-estrogen therapies, particularly tamoxifen in premenopausal women. However, tamoxifen resistance is responsible for a large proportion of breast cancer deaths. Using small molecule inhibitors, phospho-mim...

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Autores principales: Geter, Phillip A., Ernlund, Amanda W., Bakogianni, Sofia, Alard, Amandine, Arju, Rezina, Giashuddin, Shah, Gadi, Abhilash, Bromberg, Jacqueline, Schneider, Robert J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5769768/
https://www.ncbi.nlm.nih.gov/pubmed/29269484
http://dx.doi.org/10.1101/gad.305631.117
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author Geter, Phillip A.
Ernlund, Amanda W.
Bakogianni, Sofia
Alard, Amandine
Arju, Rezina
Giashuddin, Shah
Gadi, Abhilash
Bromberg, Jacqueline
Schneider, Robert J.
author_facet Geter, Phillip A.
Ernlund, Amanda W.
Bakogianni, Sofia
Alard, Amandine
Arju, Rezina
Giashuddin, Shah
Gadi, Abhilash
Bromberg, Jacqueline
Schneider, Robert J.
author_sort Geter, Phillip A.
collection PubMed
description The majority of breast cancers expresses the estrogen receptor (ER(+)) and is treated with anti-estrogen therapies, particularly tamoxifen in premenopausal women. However, tamoxifen resistance is responsible for a large proportion of breast cancer deaths. Using small molecule inhibitors, phospho-mimetic proteins, tamoxifen-sensitive and tamoxifen-resistant breast cancer cells, a tamoxifen-resistant patient-derived xenograft model, patient tumor tissues, and genome-wide transcription and translation studies, we show that tamoxifen resistance involves selective mRNA translational reprogramming to an anti-estrogen state by Runx2 and other mRNAs. Tamoxifen-resistant translational reprogramming is shown to be mediated by increased expression of eIF4E and its increased availability by hyperactive mTOR and to require phosphorylation of eIF4E at Ser209 by increased MNK activity. Resensitization to tamoxifen is restored only by reducing eIF4E expression or mTOR activity and also blocking MNK1 phosphorylation of eIF4E. mRNAs specifically translationally up-regulated with tamoxifen resistance include Runx2, which inhibits ER signaling and estrogen responses and promotes breast cancer metastasis. Silencing Runx2 significantly restores tamoxifen sensitivity. Tamoxifen-resistant but not tamoxifen-sensitive patient ER(+) breast cancer specimens also demonstrate strongly increased MNK phosphorylation of eIF4E. eIF4E levels, availability, and phosphorylation therefore promote tamoxifen resistance in ER(+) breast cancer through selective mRNA translational reprogramming
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spelling pubmed-57697682018-05-15 Hyperactive mTOR and MNK1 phosphorylation of eIF4E confer tamoxifen resistance and estrogen independence through selective mRNA translation reprogramming Geter, Phillip A. Ernlund, Amanda W. Bakogianni, Sofia Alard, Amandine Arju, Rezina Giashuddin, Shah Gadi, Abhilash Bromberg, Jacqueline Schneider, Robert J. Genes Dev Research Paper The majority of breast cancers expresses the estrogen receptor (ER(+)) and is treated with anti-estrogen therapies, particularly tamoxifen in premenopausal women. However, tamoxifen resistance is responsible for a large proportion of breast cancer deaths. Using small molecule inhibitors, phospho-mimetic proteins, tamoxifen-sensitive and tamoxifen-resistant breast cancer cells, a tamoxifen-resistant patient-derived xenograft model, patient tumor tissues, and genome-wide transcription and translation studies, we show that tamoxifen resistance involves selective mRNA translational reprogramming to an anti-estrogen state by Runx2 and other mRNAs. Tamoxifen-resistant translational reprogramming is shown to be mediated by increased expression of eIF4E and its increased availability by hyperactive mTOR and to require phosphorylation of eIF4E at Ser209 by increased MNK activity. Resensitization to tamoxifen is restored only by reducing eIF4E expression or mTOR activity and also blocking MNK1 phosphorylation of eIF4E. mRNAs specifically translationally up-regulated with tamoxifen resistance include Runx2, which inhibits ER signaling and estrogen responses and promotes breast cancer metastasis. Silencing Runx2 significantly restores tamoxifen sensitivity. Tamoxifen-resistant but not tamoxifen-sensitive patient ER(+) breast cancer specimens also demonstrate strongly increased MNK phosphorylation of eIF4E. eIF4E levels, availability, and phosphorylation therefore promote tamoxifen resistance in ER(+) breast cancer through selective mRNA translational reprogramming Cold Spring Harbor Laboratory Press 2017-11-15 /pmc/articles/PMC5769768/ /pubmed/29269484 http://dx.doi.org/10.1101/gad.305631.117 Text en © 2017 Geter et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genesdev.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research Paper
Geter, Phillip A.
Ernlund, Amanda W.
Bakogianni, Sofia
Alard, Amandine
Arju, Rezina
Giashuddin, Shah
Gadi, Abhilash
Bromberg, Jacqueline
Schneider, Robert J.
Hyperactive mTOR and MNK1 phosphorylation of eIF4E confer tamoxifen resistance and estrogen independence through selective mRNA translation reprogramming
title Hyperactive mTOR and MNK1 phosphorylation of eIF4E confer tamoxifen resistance and estrogen independence through selective mRNA translation reprogramming
title_full Hyperactive mTOR and MNK1 phosphorylation of eIF4E confer tamoxifen resistance and estrogen independence through selective mRNA translation reprogramming
title_fullStr Hyperactive mTOR and MNK1 phosphorylation of eIF4E confer tamoxifen resistance and estrogen independence through selective mRNA translation reprogramming
title_full_unstemmed Hyperactive mTOR and MNK1 phosphorylation of eIF4E confer tamoxifen resistance and estrogen independence through selective mRNA translation reprogramming
title_short Hyperactive mTOR and MNK1 phosphorylation of eIF4E confer tamoxifen resistance and estrogen independence through selective mRNA translation reprogramming
title_sort hyperactive mtor and mnk1 phosphorylation of eif4e confer tamoxifen resistance and estrogen independence through selective mrna translation reprogramming
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5769768/
https://www.ncbi.nlm.nih.gov/pubmed/29269484
http://dx.doi.org/10.1101/gad.305631.117
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