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Cytoplasmic, full length and novel cleaved variant, TBLR1 reduces apoptosis in prostate cancer under androgen deprivation

TBLR1/TBL1XR1, a core component of the nuclear receptor corepressor (NCoR) complex critical for the regulation of multiple nuclear receptors, is a transcriptional coactivator of androgen receptor (AR) and functions as a tumor suppressor when expressed in the nucleus in prostate. Subcellular localiza...

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Autores principales: Daniels, Garrett, Zhang, Xinmin, Zhong, Xuelin, Santiago, Larion, Wang, Ling Hang, Wu, Xinyu, Zhang, Jack Y., Liang, Fengxia, Li, Xin, Neubert, Thomas A., Steinke, Laurey, Shen, Ying, Basch, Ross, Schneider, Robert, Levy, David E., Lee, Peng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5129953/
https://www.ncbi.nlm.nih.gov/pubmed/27127173
http://dx.doi.org/10.18632/oncotarget.9005
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author Daniels, Garrett
Zhang, Xinmin
Zhong, Xuelin
Santiago, Larion
Wang, Ling Hang
Wu, Xinyu
Zhang, Jack Y.
Liang, Fengxia
Li, Xin
Neubert, Thomas A.
Steinke, Laurey
Shen, Ying
Basch, Ross
Schneider, Robert
Levy, David E.
Lee, Peng
author_facet Daniels, Garrett
Zhang, Xinmin
Zhong, Xuelin
Santiago, Larion
Wang, Ling Hang
Wu, Xinyu
Zhang, Jack Y.
Liang, Fengxia
Li, Xin
Neubert, Thomas A.
Steinke, Laurey
Shen, Ying
Basch, Ross
Schneider, Robert
Levy, David E.
Lee, Peng
author_sort Daniels, Garrett
collection PubMed
description TBLR1/TBL1XR1, a core component of the nuclear receptor corepressor (NCoR) complex critical for the regulation of multiple nuclear receptors, is a transcriptional coactivator of androgen receptor (AR) and functions as a tumor suppressor when expressed in the nucleus in prostate. Subcellular localization of a protein is critical for its function, and although TBLR1, as a transcriptional cofactor, has been primarily viewed as a nuclear protein, many cells also express variable levels of cytoplasmic TBLR1 and its cytoplasmic specific functions have not been studied. Prostate cancer (PCa) cells express moderately higher level of cytoplasmic TBLR1 compared to benign prostate cells. When comparing androgen-dependent (AD) to androgen-independent (AI) PCa, AI cells contain very high levels of TBLR1 cytoplasmic expression and low levels of nuclear expression. Overexpression of cytoplasmic TBLR1 in AD cells inhibits apoptosis induced by androgen deprivation therapy, either in an androgen free condition or in the presence of bicalutamide. Additionally, we identified a cytoplasmic specific isoform of TBLR1 (cvTBLR1) approximately 5 kDa lower in molecular weight, that is expressed at higher levels in AI PCa cells. By immunoprecipitation, we purified cvTBLR1 and using mass spectrometry analysis combined with N-terminal TMPP labeling and Edman degradation, we identified the cleavage site of cvTBLR1 at amino acid 89, truncating the first 88 amino acids of the N-terminus of the full length protein. Functionally, cvTBLR1 expressed in the cytoplasm reduced apoptosis in PCa cells and promoted growth, migration, and invasion. Finally, we identified a nuclear export signal sequence for TBLR1 cellular localization by deletion and site-directed mutagenesis. The roles of TBLR1 and cvTBLR1 provide novel insights into the mechanism of castration resistance and new strategies for PCa therapy.
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spelling pubmed-51299532016-12-11 Cytoplasmic, full length and novel cleaved variant, TBLR1 reduces apoptosis in prostate cancer under androgen deprivation Daniels, Garrett Zhang, Xinmin Zhong, Xuelin Santiago, Larion Wang, Ling Hang Wu, Xinyu Zhang, Jack Y. Liang, Fengxia Li, Xin Neubert, Thomas A. Steinke, Laurey Shen, Ying Basch, Ross Schneider, Robert Levy, David E. Lee, Peng Oncotarget Research Paper TBLR1/TBL1XR1, a core component of the nuclear receptor corepressor (NCoR) complex critical for the regulation of multiple nuclear receptors, is a transcriptional coactivator of androgen receptor (AR) and functions as a tumor suppressor when expressed in the nucleus in prostate. Subcellular localization of a protein is critical for its function, and although TBLR1, as a transcriptional cofactor, has been primarily viewed as a nuclear protein, many cells also express variable levels of cytoplasmic TBLR1 and its cytoplasmic specific functions have not been studied. Prostate cancer (PCa) cells express moderately higher level of cytoplasmic TBLR1 compared to benign prostate cells. When comparing androgen-dependent (AD) to androgen-independent (AI) PCa, AI cells contain very high levels of TBLR1 cytoplasmic expression and low levels of nuclear expression. Overexpression of cytoplasmic TBLR1 in AD cells inhibits apoptosis induced by androgen deprivation therapy, either in an androgen free condition or in the presence of bicalutamide. Additionally, we identified a cytoplasmic specific isoform of TBLR1 (cvTBLR1) approximately 5 kDa lower in molecular weight, that is expressed at higher levels in AI PCa cells. By immunoprecipitation, we purified cvTBLR1 and using mass spectrometry analysis combined with N-terminal TMPP labeling and Edman degradation, we identified the cleavage site of cvTBLR1 at amino acid 89, truncating the first 88 amino acids of the N-terminus of the full length protein. Functionally, cvTBLR1 expressed in the cytoplasm reduced apoptosis in PCa cells and promoted growth, migration, and invasion. Finally, we identified a nuclear export signal sequence for TBLR1 cellular localization by deletion and site-directed mutagenesis. The roles of TBLR1 and cvTBLR1 provide novel insights into the mechanism of castration resistance and new strategies for PCa therapy. Impact Journals LLC 2016-04-26 /pmc/articles/PMC5129953/ /pubmed/27127173 http://dx.doi.org/10.18632/oncotarget.9005 Text en Copyright: © 2016 Daniels 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 Research Paper
Daniels, Garrett
Zhang, Xinmin
Zhong, Xuelin
Santiago, Larion
Wang, Ling Hang
Wu, Xinyu
Zhang, Jack Y.
Liang, Fengxia
Li, Xin
Neubert, Thomas A.
Steinke, Laurey
Shen, Ying
Basch, Ross
Schneider, Robert
Levy, David E.
Lee, Peng
Cytoplasmic, full length and novel cleaved variant, TBLR1 reduces apoptosis in prostate cancer under androgen deprivation
title Cytoplasmic, full length and novel cleaved variant, TBLR1 reduces apoptosis in prostate cancer under androgen deprivation
title_full Cytoplasmic, full length and novel cleaved variant, TBLR1 reduces apoptosis in prostate cancer under androgen deprivation
title_fullStr Cytoplasmic, full length and novel cleaved variant, TBLR1 reduces apoptosis in prostate cancer under androgen deprivation
title_full_unstemmed Cytoplasmic, full length and novel cleaved variant, TBLR1 reduces apoptosis in prostate cancer under androgen deprivation
title_short Cytoplasmic, full length and novel cleaved variant, TBLR1 reduces apoptosis in prostate cancer under androgen deprivation
title_sort cytoplasmic, full length and novel cleaved variant, tblr1 reduces apoptosis in prostate cancer under androgen deprivation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5129953/
https://www.ncbi.nlm.nih.gov/pubmed/27127173
http://dx.doi.org/10.18632/oncotarget.9005
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