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ETS factors reprogram the androgen receptor cistrome and prime prostate tumorigenesis in response to PTEN loss

Studies of ETS-mediated prostate oncogenesis have been hampered by the lack of suitable experimental systems. Here we describe a new conditional mouse model which gives robust, homogenous ERG expression throughout the prostate. When combined with homozygous Pten loss, mice developed accelerated, hig...

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Autores principales: Chen, Yu, Chi, Ping, Rockowitz, Shira, Iaquinta, Phillip J., Shamu, Tambudzai, Shukla, Shipra, Gao, Dong, Sirota, Inna, Carver, Brett S., Wongvipat, John, Scher, Howard I., Zheng, Deyou, Sawyers, Charles L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3737318/
https://www.ncbi.nlm.nih.gov/pubmed/23817021
http://dx.doi.org/10.1038/nm.3216
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author Chen, Yu
Chi, Ping
Rockowitz, Shira
Iaquinta, Phillip J.
Shamu, Tambudzai
Shukla, Shipra
Gao, Dong
Sirota, Inna
Carver, Brett S.
Wongvipat, John
Scher, Howard I.
Zheng, Deyou
Sawyers, Charles L.
author_facet Chen, Yu
Chi, Ping
Rockowitz, Shira
Iaquinta, Phillip J.
Shamu, Tambudzai
Shukla, Shipra
Gao, Dong
Sirota, Inna
Carver, Brett S.
Wongvipat, John
Scher, Howard I.
Zheng, Deyou
Sawyers, Charles L.
author_sort Chen, Yu
collection PubMed
description Studies of ETS-mediated prostate oncogenesis have been hampered by the lack of suitable experimental systems. Here we describe a new conditional mouse model which gives robust, homogenous ERG expression throughout the prostate. When combined with homozygous Pten loss, mice developed accelerated, highly penetrant invasive prostate cancer. In mouse prostate tissue, ERG significantly increased androgen receptor (AR) binding. Robust ERG-mediated transcriptional changes, observed only in the setting of Pten loss, included restoration of AR transcriptional outut and genes involved in cell death, migration, inflammation and angiogenesis. Similarly, ETV1 positively regulated AR cistrome and transcriptional output in ETV1-translocated, PTEN-deficient human prostate cancer cells. In two large clinical cohorts, ERG and ETV1 expression correlated with higher AR transcriptional output in PTEN-negative prostate cancer specimens. We propose that ETS factors cause prostate-specific transformation by altering the AR cistrome, priming the prostate epithelium to respond to aberrant upstream signals such as PTEN loss.
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spelling pubmed-37373182014-02-01 ETS factors reprogram the androgen receptor cistrome and prime prostate tumorigenesis in response to PTEN loss Chen, Yu Chi, Ping Rockowitz, Shira Iaquinta, Phillip J. Shamu, Tambudzai Shukla, Shipra Gao, Dong Sirota, Inna Carver, Brett S. Wongvipat, John Scher, Howard I. Zheng, Deyou Sawyers, Charles L. Nat Med Article Studies of ETS-mediated prostate oncogenesis have been hampered by the lack of suitable experimental systems. Here we describe a new conditional mouse model which gives robust, homogenous ERG expression throughout the prostate. When combined with homozygous Pten loss, mice developed accelerated, highly penetrant invasive prostate cancer. In mouse prostate tissue, ERG significantly increased androgen receptor (AR) binding. Robust ERG-mediated transcriptional changes, observed only in the setting of Pten loss, included restoration of AR transcriptional outut and genes involved in cell death, migration, inflammation and angiogenesis. Similarly, ETV1 positively regulated AR cistrome and transcriptional output in ETV1-translocated, PTEN-deficient human prostate cancer cells. In two large clinical cohorts, ERG and ETV1 expression correlated with higher AR transcriptional output in PTEN-negative prostate cancer specimens. We propose that ETS factors cause prostate-specific transformation by altering the AR cistrome, priming the prostate epithelium to respond to aberrant upstream signals such as PTEN loss. 2013-06-30 2013-08 /pmc/articles/PMC3737318/ /pubmed/23817021 http://dx.doi.org/10.1038/nm.3216 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Chen, Yu
Chi, Ping
Rockowitz, Shira
Iaquinta, Phillip J.
Shamu, Tambudzai
Shukla, Shipra
Gao, Dong
Sirota, Inna
Carver, Brett S.
Wongvipat, John
Scher, Howard I.
Zheng, Deyou
Sawyers, Charles L.
ETS factors reprogram the androgen receptor cistrome and prime prostate tumorigenesis in response to PTEN loss
title ETS factors reprogram the androgen receptor cistrome and prime prostate tumorigenesis in response to PTEN loss
title_full ETS factors reprogram the androgen receptor cistrome and prime prostate tumorigenesis in response to PTEN loss
title_fullStr ETS factors reprogram the androgen receptor cistrome and prime prostate tumorigenesis in response to PTEN loss
title_full_unstemmed ETS factors reprogram the androgen receptor cistrome and prime prostate tumorigenesis in response to PTEN loss
title_short ETS factors reprogram the androgen receptor cistrome and prime prostate tumorigenesis in response to PTEN loss
title_sort ets factors reprogram the androgen receptor cistrome and prime prostate tumorigenesis in response to pten loss
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3737318/
https://www.ncbi.nlm.nih.gov/pubmed/23817021
http://dx.doi.org/10.1038/nm.3216
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