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Telomerase and Pluripotency Factors Jointly Regulate Stemness in Pancreatic Cancer Stem Cells

SIMPLE SUMMARY: Pancreatic ductal adenocarcinoma (PDAC) is an extremely lethal cancer with very limited therapeutic options. Cancer stem cells (CSCs) are essential for propagation of PDAC, but also for its metastatic activity and chemoresistance. To date, it is still unclear how cancer stem cells (C...

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Autores principales: Walter, Karolin, Rodriguez-Aznar, Eva, Ferreira, Monica S. Ventura, Frappart, Pierre-Olivier, Dittrich, Tabea, Tiwary, Kanishka, Meessen, Sabine, Lerma, Laura, Daiss, Nora, Schulte, Lucas-Alexander, Najafova, Zeynab, Arnold, Frank, Usachov, Valentyn, Azoitei, Ninel, Erkan, Mert, Lechel, Andre, Brümmendorf, Tim H., Seufferlein, Thomas, Kleger, Alexander, Tabarés, Enrique, Günes, Cagatay, Johnsen, Steven A., Beier, Fabian, Sainz, Bruno, Hermann, Patrick C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8268125/
https://www.ncbi.nlm.nih.gov/pubmed/34201898
http://dx.doi.org/10.3390/cancers13133145
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author Walter, Karolin
Rodriguez-Aznar, Eva
Ferreira, Monica S. Ventura
Frappart, Pierre-Olivier
Dittrich, Tabea
Tiwary, Kanishka
Meessen, Sabine
Lerma, Laura
Daiss, Nora
Schulte, Lucas-Alexander
Najafova, Zeynab
Arnold, Frank
Usachov, Valentyn
Azoitei, Ninel
Erkan, Mert
Lechel, Andre
Brümmendorf, Tim H.
Seufferlein, Thomas
Kleger, Alexander
Tabarés, Enrique
Günes, Cagatay
Johnsen, Steven A.
Beier, Fabian
Sainz, Bruno
Hermann, Patrick C.
author_facet Walter, Karolin
Rodriguez-Aznar, Eva
Ferreira, Monica S. Ventura
Frappart, Pierre-Olivier
Dittrich, Tabea
Tiwary, Kanishka
Meessen, Sabine
Lerma, Laura
Daiss, Nora
Schulte, Lucas-Alexander
Najafova, Zeynab
Arnold, Frank
Usachov, Valentyn
Azoitei, Ninel
Erkan, Mert
Lechel, Andre
Brümmendorf, Tim H.
Seufferlein, Thomas
Kleger, Alexander
Tabarés, Enrique
Günes, Cagatay
Johnsen, Steven A.
Beier, Fabian
Sainz, Bruno
Hermann, Patrick C.
author_sort Walter, Karolin
collection PubMed
description SIMPLE SUMMARY: Pancreatic ductal adenocarcinoma (PDAC) is an extremely lethal cancer with very limited therapeutic options. Cancer stem cells (CSCs) are essential for propagation of PDAC, but also for its metastatic activity and chemoresistance. To date, it is still unclear how cancer stem cells (CSCs) regulate their ‘stemness’ and self-renewal properties, and to what extent they share common features with normal stem cells. Telomerase regulation is a key factor in stem cell maintenance. Here, we investigate how telomerase regulation affects CSC biology in PDAC, and delineate the mechanisms by which telomerase activity and CSC properties are linked. ABSTRACT: To assess the role of telomerase activity and telomere length in pancreatic CSCs we used different CSC enrichment methods (CD133, ALDH, sphere formation) in primary patient-derived pancreatic cancer cells. We show that CSCs have higher telomerase activity and longer telomeres than bulk tumor cells. Inhibition of telomerase activity, using genetic knockdown or pharmacological inhibitor (BIBR1532), resulted in CSC marker depletion, abrogation of sphere formation in vitro and reduced tumorigenicity in vivo. Furthermore, we identify a positive feedback loop between stemness factors (NANOG, OCT3/4, SOX2, KLF4) and telomerase, which is essential for the self-renewal of CSCs. Disruption of the balance between telomerase activity and stemness factors eliminates CSCs via induction of DNA damage and apoptosis in primary patient-derived pancreatic cancer samples, opening future perspectives to avoid CSC-driven tumor relapse. In the present study, we demonstrate that telomerase regulation is critical for the “stemness” maintenance in pancreatic CSCs and examine the effects of telomerase inhibition as a potential treatment option of pancreatic cancer. This may significantly promote our understanding of PDAC tumor biology and may result in improved treatment for pancreatic cancer patients.
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spelling pubmed-82681252021-07-10 Telomerase and Pluripotency Factors Jointly Regulate Stemness in Pancreatic Cancer Stem Cells Walter, Karolin Rodriguez-Aznar, Eva Ferreira, Monica S. Ventura Frappart, Pierre-Olivier Dittrich, Tabea Tiwary, Kanishka Meessen, Sabine Lerma, Laura Daiss, Nora Schulte, Lucas-Alexander Najafova, Zeynab Arnold, Frank Usachov, Valentyn Azoitei, Ninel Erkan, Mert Lechel, Andre Brümmendorf, Tim H. Seufferlein, Thomas Kleger, Alexander Tabarés, Enrique Günes, Cagatay Johnsen, Steven A. Beier, Fabian Sainz, Bruno Hermann, Patrick C. Cancers (Basel) Article SIMPLE SUMMARY: Pancreatic ductal adenocarcinoma (PDAC) is an extremely lethal cancer with very limited therapeutic options. Cancer stem cells (CSCs) are essential for propagation of PDAC, but also for its metastatic activity and chemoresistance. To date, it is still unclear how cancer stem cells (CSCs) regulate their ‘stemness’ and self-renewal properties, and to what extent they share common features with normal stem cells. Telomerase regulation is a key factor in stem cell maintenance. Here, we investigate how telomerase regulation affects CSC biology in PDAC, and delineate the mechanisms by which telomerase activity and CSC properties are linked. ABSTRACT: To assess the role of telomerase activity and telomere length in pancreatic CSCs we used different CSC enrichment methods (CD133, ALDH, sphere formation) in primary patient-derived pancreatic cancer cells. We show that CSCs have higher telomerase activity and longer telomeres than bulk tumor cells. Inhibition of telomerase activity, using genetic knockdown or pharmacological inhibitor (BIBR1532), resulted in CSC marker depletion, abrogation of sphere formation in vitro and reduced tumorigenicity in vivo. Furthermore, we identify a positive feedback loop between stemness factors (NANOG, OCT3/4, SOX2, KLF4) and telomerase, which is essential for the self-renewal of CSCs. Disruption of the balance between telomerase activity and stemness factors eliminates CSCs via induction of DNA damage and apoptosis in primary patient-derived pancreatic cancer samples, opening future perspectives to avoid CSC-driven tumor relapse. In the present study, we demonstrate that telomerase regulation is critical for the “stemness” maintenance in pancreatic CSCs and examine the effects of telomerase inhibition as a potential treatment option of pancreatic cancer. This may significantly promote our understanding of PDAC tumor biology and may result in improved treatment for pancreatic cancer patients. MDPI 2021-06-23 /pmc/articles/PMC8268125/ /pubmed/34201898 http://dx.doi.org/10.3390/cancers13133145 Text en © 2021 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
Walter, Karolin
Rodriguez-Aznar, Eva
Ferreira, Monica S. Ventura
Frappart, Pierre-Olivier
Dittrich, Tabea
Tiwary, Kanishka
Meessen, Sabine
Lerma, Laura
Daiss, Nora
Schulte, Lucas-Alexander
Najafova, Zeynab
Arnold, Frank
Usachov, Valentyn
Azoitei, Ninel
Erkan, Mert
Lechel, Andre
Brümmendorf, Tim H.
Seufferlein, Thomas
Kleger, Alexander
Tabarés, Enrique
Günes, Cagatay
Johnsen, Steven A.
Beier, Fabian
Sainz, Bruno
Hermann, Patrick C.
Telomerase and Pluripotency Factors Jointly Regulate Stemness in Pancreatic Cancer Stem Cells
title Telomerase and Pluripotency Factors Jointly Regulate Stemness in Pancreatic Cancer Stem Cells
title_full Telomerase and Pluripotency Factors Jointly Regulate Stemness in Pancreatic Cancer Stem Cells
title_fullStr Telomerase and Pluripotency Factors Jointly Regulate Stemness in Pancreatic Cancer Stem Cells
title_full_unstemmed Telomerase and Pluripotency Factors Jointly Regulate Stemness in Pancreatic Cancer Stem Cells
title_short Telomerase and Pluripotency Factors Jointly Regulate Stemness in Pancreatic Cancer Stem Cells
title_sort telomerase and pluripotency factors jointly regulate stemness in pancreatic cancer stem cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8268125/
https://www.ncbi.nlm.nih.gov/pubmed/34201898
http://dx.doi.org/10.3390/cancers13133145
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