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PITX1 Is a Regulator of TERT Expression in Prostate Cancer with Prognostic Power

SIMPLE SUMMARY: Most prostate cancer is of an indolent form and is curable. However, some prostate cancer belongs to rather aggressive subtypes leading to metastasis and death, and immediate therapy is mandatory. However, for these, the therapeutic options are highly invasive, such as radical prosta...

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Autores principales: Poos, Alexandra M., Schroeder, Cornelia, Jaishankar, Neeraja, Röll, Daniela, Oswald, Marcus, Meiners, Jan, Braun, Delia M., Knotz, Caroline, Frank, Lukas, Gunkel, Manuel, Spilger, Roman, Wollmann, Thomas, Polonski, Adam, Makrypidi-Fraune, Georgia, Fraune, Christoph, Graefen, Markus, Chung, Inn, Stenzel, Alexander, Erfle, Holger, Rohr, Karl, Baniahmad, Aria, Sauter, Guido, Rippe, Karsten, Simon, Ronald, Koenig, Rainer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8909694/
https://www.ncbi.nlm.nih.gov/pubmed/35267575
http://dx.doi.org/10.3390/cancers14051267
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author Poos, Alexandra M.
Schroeder, Cornelia
Jaishankar, Neeraja
Röll, Daniela
Oswald, Marcus
Meiners, Jan
Braun, Delia M.
Knotz, Caroline
Frank, Lukas
Gunkel, Manuel
Spilger, Roman
Wollmann, Thomas
Polonski, Adam
Makrypidi-Fraune, Georgia
Fraune, Christoph
Graefen, Markus
Chung, Inn
Stenzel, Alexander
Erfle, Holger
Rohr, Karl
Baniahmad, Aria
Sauter, Guido
Rippe, Karsten
Simon, Ronald
Koenig, Rainer
author_facet Poos, Alexandra M.
Schroeder, Cornelia
Jaishankar, Neeraja
Röll, Daniela
Oswald, Marcus
Meiners, Jan
Braun, Delia M.
Knotz, Caroline
Frank, Lukas
Gunkel, Manuel
Spilger, Roman
Wollmann, Thomas
Polonski, Adam
Makrypidi-Fraune, Georgia
Fraune, Christoph
Graefen, Markus
Chung, Inn
Stenzel, Alexander
Erfle, Holger
Rohr, Karl
Baniahmad, Aria
Sauter, Guido
Rippe, Karsten
Simon, Ronald
Koenig, Rainer
author_sort Poos, Alexandra M.
collection PubMed
description SIMPLE SUMMARY: Most prostate cancer is of an indolent form and is curable. However, some prostate cancer belongs to rather aggressive subtypes leading to metastasis and death, and immediate therapy is mandatory. However, for these, the therapeutic options are highly invasive, such as radical prostatectomy, radiation or brachytherapy. Hence, a precise diagnosis of these tumor subtypes is needed, and the thus far applied diagnostic means are insufficient for this. Besides this, for their endless cell divisions, prostate cancer cells need the enzyme telomerase to elongate their telomeres (chromatin endings). In this study, we developed a gene regulatory model based on large data from transcription profiles from prostate cancer and chromatin-immuno-precipitation studies. We identified the developmental regulator PITX1 regulating telomerase. Besides observing experimental evidence of PITX1′s functional role in telomerase regulation, we also found PITX1 serving as a prognostic marker, as concluded from an analysis of more than 15,000 prostate cancer samples. ABSTRACT: The current risk stratification in prostate cancer (PCa) is frequently insufficient to adequately predict disease development and outcome. One hallmark of cancer is telomere maintenance. For telomere maintenance, PCa cells exclusively employ telomerase, making it essential for this cancer entity. However, TERT, the catalytic protein component of the reverse transcriptase telomerase, itself does not suit as a prognostic marker for prostate cancer as it is rather low expressed. We investigated if, instead of TERT, transcription factors regulating TERT may suit as prognostic markers. To identify transcription factors regulating TERT, we developed and applied a new gene regulatory modeling strategy to a comprehensive transcriptome dataset of 445 primary PCa. Six transcription factors were predicted as TERT regulators, and most prominently, the developmental morphogenic factor PITX1. PITX1 expression positively correlated with telomere staining intensity in PCa tumor samples. Functional assays and chromatin immune-precipitation showed that PITX1 activates TERT expression in PCa cells. Clinically, we observed that PITX1 is an excellent prognostic marker, as concluded from an analysis of more than 15,000 PCa samples. PITX1 expression in tumor samples associated with (i) increased Ki67 expression indicating increased tumor growth, (ii) a worse prognosis, and (iii) correlated with telomere length.
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spelling pubmed-89096942022-03-11 PITX1 Is a Regulator of TERT Expression in Prostate Cancer with Prognostic Power Poos, Alexandra M. Schroeder, Cornelia Jaishankar, Neeraja Röll, Daniela Oswald, Marcus Meiners, Jan Braun, Delia M. Knotz, Caroline Frank, Lukas Gunkel, Manuel Spilger, Roman Wollmann, Thomas Polonski, Adam Makrypidi-Fraune, Georgia Fraune, Christoph Graefen, Markus Chung, Inn Stenzel, Alexander Erfle, Holger Rohr, Karl Baniahmad, Aria Sauter, Guido Rippe, Karsten Simon, Ronald Koenig, Rainer Cancers (Basel) Article SIMPLE SUMMARY: Most prostate cancer is of an indolent form and is curable. However, some prostate cancer belongs to rather aggressive subtypes leading to metastasis and death, and immediate therapy is mandatory. However, for these, the therapeutic options are highly invasive, such as radical prostatectomy, radiation or brachytherapy. Hence, a precise diagnosis of these tumor subtypes is needed, and the thus far applied diagnostic means are insufficient for this. Besides this, for their endless cell divisions, prostate cancer cells need the enzyme telomerase to elongate their telomeres (chromatin endings). In this study, we developed a gene regulatory model based on large data from transcription profiles from prostate cancer and chromatin-immuno-precipitation studies. We identified the developmental regulator PITX1 regulating telomerase. Besides observing experimental evidence of PITX1′s functional role in telomerase regulation, we also found PITX1 serving as a prognostic marker, as concluded from an analysis of more than 15,000 prostate cancer samples. ABSTRACT: The current risk stratification in prostate cancer (PCa) is frequently insufficient to adequately predict disease development and outcome. One hallmark of cancer is telomere maintenance. For telomere maintenance, PCa cells exclusively employ telomerase, making it essential for this cancer entity. However, TERT, the catalytic protein component of the reverse transcriptase telomerase, itself does not suit as a prognostic marker for prostate cancer as it is rather low expressed. We investigated if, instead of TERT, transcription factors regulating TERT may suit as prognostic markers. To identify transcription factors regulating TERT, we developed and applied a new gene regulatory modeling strategy to a comprehensive transcriptome dataset of 445 primary PCa. Six transcription factors were predicted as TERT regulators, and most prominently, the developmental morphogenic factor PITX1. PITX1 expression positively correlated with telomere staining intensity in PCa tumor samples. Functional assays and chromatin immune-precipitation showed that PITX1 activates TERT expression in PCa cells. Clinically, we observed that PITX1 is an excellent prognostic marker, as concluded from an analysis of more than 15,000 PCa samples. PITX1 expression in tumor samples associated with (i) increased Ki67 expression indicating increased tumor growth, (ii) a worse prognosis, and (iii) correlated with telomere length. MDPI 2022-03-01 /pmc/articles/PMC8909694/ /pubmed/35267575 http://dx.doi.org/10.3390/cancers14051267 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Poos, Alexandra M.
Schroeder, Cornelia
Jaishankar, Neeraja
Röll, Daniela
Oswald, Marcus
Meiners, Jan
Braun, Delia M.
Knotz, Caroline
Frank, Lukas
Gunkel, Manuel
Spilger, Roman
Wollmann, Thomas
Polonski, Adam
Makrypidi-Fraune, Georgia
Fraune, Christoph
Graefen, Markus
Chung, Inn
Stenzel, Alexander
Erfle, Holger
Rohr, Karl
Baniahmad, Aria
Sauter, Guido
Rippe, Karsten
Simon, Ronald
Koenig, Rainer
PITX1 Is a Regulator of TERT Expression in Prostate Cancer with Prognostic Power
title PITX1 Is a Regulator of TERT Expression in Prostate Cancer with Prognostic Power
title_full PITX1 Is a Regulator of TERT Expression in Prostate Cancer with Prognostic Power
title_fullStr PITX1 Is a Regulator of TERT Expression in Prostate Cancer with Prognostic Power
title_full_unstemmed PITX1 Is a Regulator of TERT Expression in Prostate Cancer with Prognostic Power
title_short PITX1 Is a Regulator of TERT Expression in Prostate Cancer with Prognostic Power
title_sort pitx1 is a regulator of tert expression in prostate cancer with prognostic power
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8909694/
https://www.ncbi.nlm.nih.gov/pubmed/35267575
http://dx.doi.org/10.3390/cancers14051267
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