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LOSS OF THE TUMOR SUPPRESSOR, TP53, ENHANCES THE ANDROGEN RECEPTOR MEDIATED ONCOGENIC TRANSFORMATION AND TUMOR DEVELOPMENT IN THE MOUSE PROSTATE

Recent genome analysis of human prostate cancers demonstrated that both AR gene amplification and TP53 mutation are among the most frequently observed alterations in advanced prostate cancer. However, the biological role of these dual genetic alterations in prostate tumorigenesis is largely unknown....

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Autores principales: He, Yongfeng, Johnson, Daniel T., Yang, Julie S., Wu, Huiqing, You, Sungyong, Yoon, Junhee, Lee, Dong-Hong, Kim, Won Kyung, Aldahl, Joseph, Le, Vien, Hooker, Erika, Yu, Eun-Jeong, Geardts, Joseph, Cardiff, Robert D., Sun, Zijie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6752978/
https://www.ncbi.nlm.nih.gov/pubmed/31358900
http://dx.doi.org/10.1038/s41388-019-0901-8
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author He, Yongfeng
Johnson, Daniel T.
Yang, Julie S.
Wu, Huiqing
You, Sungyong
Yoon, Junhee
Lee, Dong-Hong
Kim, Won Kyung
Aldahl, Joseph
Le, Vien
Hooker, Erika
Yu, Eun-Jeong
Geardts, Joseph
Cardiff, Robert D.
Sun, Zijie
author_facet He, Yongfeng
Johnson, Daniel T.
Yang, Julie S.
Wu, Huiqing
You, Sungyong
Yoon, Junhee
Lee, Dong-Hong
Kim, Won Kyung
Aldahl, Joseph
Le, Vien
Hooker, Erika
Yu, Eun-Jeong
Geardts, Joseph
Cardiff, Robert D.
Sun, Zijie
author_sort He, Yongfeng
collection PubMed
description Recent genome analysis of human prostate cancers demonstrated that both AR gene amplification and TP53 mutation are among the most frequently observed alterations in advanced prostate cancer. However, the biological role of these dual genetic alterations in prostate tumorigenesis is largely unknown. In addition, there are no biologically relevant models that can be used to assess the molecular mechanisms for these genetic abnormalities. Here, we report a novel mouse model, in which elevated transgenic AR expression and Trp53 deletion occur simultaneously in mouse prostatic epithelium to mimic human prostate cancer cells. These compound mice developed an earlier onset of high-grade prostatic intraepithelial neoplasia and accelerated prostate tumors in comparison to mice harboring only the AR transgene. Histological analysis showed prostatic sarcomatoid and basaloid carcinomas with massive squamous differentiation in the above compound mice. RNA-sequencing analyses identified a robust enrichment of the signature genes for human prostatic basal cell carcinomas in the above prostate tumors. Master Regulator Analysis revealed SOX2 as a transcriptional regulator in prostatic basal cell tumors. Elevated expression of SOX2 and its downstream target genes were detected in prostatic tumors of the compound mice. Chromatin immunoprecipitation analyses implicate a co-regulatory role of AR and SOX2 in the expression of prostatic basal cell signature genes. Our data demonstrate a critical role of SOX2 in prostate tumorigenesis and provide mechanistic insight into prostate tumor aggressiveness and progression mediated by aberrant AR and p53 signaling pathways.
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spelling pubmed-67529782020-01-29 LOSS OF THE TUMOR SUPPRESSOR, TP53, ENHANCES THE ANDROGEN RECEPTOR MEDIATED ONCOGENIC TRANSFORMATION AND TUMOR DEVELOPMENT IN THE MOUSE PROSTATE He, Yongfeng Johnson, Daniel T. Yang, Julie S. Wu, Huiqing You, Sungyong Yoon, Junhee Lee, Dong-Hong Kim, Won Kyung Aldahl, Joseph Le, Vien Hooker, Erika Yu, Eun-Jeong Geardts, Joseph Cardiff, Robert D. Sun, Zijie Oncogene Article Recent genome analysis of human prostate cancers demonstrated that both AR gene amplification and TP53 mutation are among the most frequently observed alterations in advanced prostate cancer. However, the biological role of these dual genetic alterations in prostate tumorigenesis is largely unknown. In addition, there are no biologically relevant models that can be used to assess the molecular mechanisms for these genetic abnormalities. Here, we report a novel mouse model, in which elevated transgenic AR expression and Trp53 deletion occur simultaneously in mouse prostatic epithelium to mimic human prostate cancer cells. These compound mice developed an earlier onset of high-grade prostatic intraepithelial neoplasia and accelerated prostate tumors in comparison to mice harboring only the AR transgene. Histological analysis showed prostatic sarcomatoid and basaloid carcinomas with massive squamous differentiation in the above compound mice. RNA-sequencing analyses identified a robust enrichment of the signature genes for human prostatic basal cell carcinomas in the above prostate tumors. Master Regulator Analysis revealed SOX2 as a transcriptional regulator in prostatic basal cell tumors. Elevated expression of SOX2 and its downstream target genes were detected in prostatic tumors of the compound mice. Chromatin immunoprecipitation analyses implicate a co-regulatory role of AR and SOX2 in the expression of prostatic basal cell signature genes. Our data demonstrate a critical role of SOX2 in prostate tumorigenesis and provide mechanistic insight into prostate tumor aggressiveness and progression mediated by aberrant AR and p53 signaling pathways. 2019-07-29 2019-09 /pmc/articles/PMC6752978/ /pubmed/31358900 http://dx.doi.org/10.1038/s41388-019-0901-8 Text en Users may view, print, copy, and download 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
He, Yongfeng
Johnson, Daniel T.
Yang, Julie S.
Wu, Huiqing
You, Sungyong
Yoon, Junhee
Lee, Dong-Hong
Kim, Won Kyung
Aldahl, Joseph
Le, Vien
Hooker, Erika
Yu, Eun-Jeong
Geardts, Joseph
Cardiff, Robert D.
Sun, Zijie
LOSS OF THE TUMOR SUPPRESSOR, TP53, ENHANCES THE ANDROGEN RECEPTOR MEDIATED ONCOGENIC TRANSFORMATION AND TUMOR DEVELOPMENT IN THE MOUSE PROSTATE
title LOSS OF THE TUMOR SUPPRESSOR, TP53, ENHANCES THE ANDROGEN RECEPTOR MEDIATED ONCOGENIC TRANSFORMATION AND TUMOR DEVELOPMENT IN THE MOUSE PROSTATE
title_full LOSS OF THE TUMOR SUPPRESSOR, TP53, ENHANCES THE ANDROGEN RECEPTOR MEDIATED ONCOGENIC TRANSFORMATION AND TUMOR DEVELOPMENT IN THE MOUSE PROSTATE
title_fullStr LOSS OF THE TUMOR SUPPRESSOR, TP53, ENHANCES THE ANDROGEN RECEPTOR MEDIATED ONCOGENIC TRANSFORMATION AND TUMOR DEVELOPMENT IN THE MOUSE PROSTATE
title_full_unstemmed LOSS OF THE TUMOR SUPPRESSOR, TP53, ENHANCES THE ANDROGEN RECEPTOR MEDIATED ONCOGENIC TRANSFORMATION AND TUMOR DEVELOPMENT IN THE MOUSE PROSTATE
title_short LOSS OF THE TUMOR SUPPRESSOR, TP53, ENHANCES THE ANDROGEN RECEPTOR MEDIATED ONCOGENIC TRANSFORMATION AND TUMOR DEVELOPMENT IN THE MOUSE PROSTATE
title_sort loss of the tumor suppressor, tp53, enhances the androgen receptor mediated oncogenic transformation and tumor development in the mouse prostate
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6752978/
https://www.ncbi.nlm.nih.gov/pubmed/31358900
http://dx.doi.org/10.1038/s41388-019-0901-8
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