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Hypoxia-responsive miR-210 promotes self-renewal capacity of colon tumor-initiating cells by repressing ISCU and by inducing lactate production

Low oxygen concentrations (hypoxia) are known to affect the cellular metabolism and have been suggested to regulate a subpopulation of cancer cells with tumorigenic properties, the so-called tumor-initiating cells (TICs). To better understand the mechanism of hypoxia-induced TIC activation, we set o...

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Autores principales: Ullmann, Pit, Qureshi-Baig, Komal, Rodriguez, Fabien, Ginolhac, Aurélien, Nonnenmacher, Yannic, Ternes, Dominik, Weiler, Jil, Gäbler, Karoline, Bahlawane, Christelle, Hiller, Karsten, Haan, Serge, Letellier, Elisabeth
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5323168/
https://www.ncbi.nlm.nih.gov/pubmed/27589845
http://dx.doi.org/10.18632/oncotarget.11772
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author Ullmann, Pit
Qureshi-Baig, Komal
Rodriguez, Fabien
Ginolhac, Aurélien
Nonnenmacher, Yannic
Ternes, Dominik
Weiler, Jil
Gäbler, Karoline
Bahlawane, Christelle
Hiller, Karsten
Haan, Serge
Letellier, Elisabeth
author_facet Ullmann, Pit
Qureshi-Baig, Komal
Rodriguez, Fabien
Ginolhac, Aurélien
Nonnenmacher, Yannic
Ternes, Dominik
Weiler, Jil
Gäbler, Karoline
Bahlawane, Christelle
Hiller, Karsten
Haan, Serge
Letellier, Elisabeth
author_sort Ullmann, Pit
collection PubMed
description Low oxygen concentrations (hypoxia) are known to affect the cellular metabolism and have been suggested to regulate a subpopulation of cancer cells with tumorigenic properties, the so-called tumor-initiating cells (TICs). To better understand the mechanism of hypoxia-induced TIC activation, we set out to study the role of hypoxia-responsive miRNAs in recently established colon cancer patient-derived TICs. We were able to show that low oxygen concentrations consistently lead to the upregulation of miR-210 in different primary TIC-enriched cultures. Both stable overexpression of miR-210 and knockdown of its target gene ISCU resulted in enhanced TIC self-renewal. We could validate the tumorigenic properties of miR- 210 in in vivo experiments by showing that ectopic expression of miR-210 results in increased tumor incidence. Furthermore, enhanced miR-210 expression correlated with reduced TCA cycle activity and increased lactate levels. Importantly, by blocking lactate production via inhibition of LDHA, we could reverse the promoting effect of miR-210 on self-renewal capacity, thereby emphasizing the regulatory impact of the glycolytic phenotype on colon TIC properties. Finally, by assessing expression levels in patient tissue, we could demonstrate the clinical relevance of the miR-210/ISCU signaling axis for colorectal carcinoma. Taken together, our study highlights the importance of hypoxia-induced miR-210 in the regulation of colon cancer initiation.
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spelling pubmed-53231682017-03-23 Hypoxia-responsive miR-210 promotes self-renewal capacity of colon tumor-initiating cells by repressing ISCU and by inducing lactate production Ullmann, Pit Qureshi-Baig, Komal Rodriguez, Fabien Ginolhac, Aurélien Nonnenmacher, Yannic Ternes, Dominik Weiler, Jil Gäbler, Karoline Bahlawane, Christelle Hiller, Karsten Haan, Serge Letellier, Elisabeth Oncotarget Research Paper Low oxygen concentrations (hypoxia) are known to affect the cellular metabolism and have been suggested to regulate a subpopulation of cancer cells with tumorigenic properties, the so-called tumor-initiating cells (TICs). To better understand the mechanism of hypoxia-induced TIC activation, we set out to study the role of hypoxia-responsive miRNAs in recently established colon cancer patient-derived TICs. We were able to show that low oxygen concentrations consistently lead to the upregulation of miR-210 in different primary TIC-enriched cultures. Both stable overexpression of miR-210 and knockdown of its target gene ISCU resulted in enhanced TIC self-renewal. We could validate the tumorigenic properties of miR- 210 in in vivo experiments by showing that ectopic expression of miR-210 results in increased tumor incidence. Furthermore, enhanced miR-210 expression correlated with reduced TCA cycle activity and increased lactate levels. Importantly, by blocking lactate production via inhibition of LDHA, we could reverse the promoting effect of miR-210 on self-renewal capacity, thereby emphasizing the regulatory impact of the glycolytic phenotype on colon TIC properties. Finally, by assessing expression levels in patient tissue, we could demonstrate the clinical relevance of the miR-210/ISCU signaling axis for colorectal carcinoma. Taken together, our study highlights the importance of hypoxia-induced miR-210 in the regulation of colon cancer initiation. Impact Journals LLC 2016-08-31 /pmc/articles/PMC5323168/ /pubmed/27589845 http://dx.doi.org/10.18632/oncotarget.11772 Text en Copyright: © 2016 Ullmann 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
Ullmann, Pit
Qureshi-Baig, Komal
Rodriguez, Fabien
Ginolhac, Aurélien
Nonnenmacher, Yannic
Ternes, Dominik
Weiler, Jil
Gäbler, Karoline
Bahlawane, Christelle
Hiller, Karsten
Haan, Serge
Letellier, Elisabeth
Hypoxia-responsive miR-210 promotes self-renewal capacity of colon tumor-initiating cells by repressing ISCU and by inducing lactate production
title Hypoxia-responsive miR-210 promotes self-renewal capacity of colon tumor-initiating cells by repressing ISCU and by inducing lactate production
title_full Hypoxia-responsive miR-210 promotes self-renewal capacity of colon tumor-initiating cells by repressing ISCU and by inducing lactate production
title_fullStr Hypoxia-responsive miR-210 promotes self-renewal capacity of colon tumor-initiating cells by repressing ISCU and by inducing lactate production
title_full_unstemmed Hypoxia-responsive miR-210 promotes self-renewal capacity of colon tumor-initiating cells by repressing ISCU and by inducing lactate production
title_short Hypoxia-responsive miR-210 promotes self-renewal capacity of colon tumor-initiating cells by repressing ISCU and by inducing lactate production
title_sort hypoxia-responsive mir-210 promotes self-renewal capacity of colon tumor-initiating cells by repressing iscu and by inducing lactate production
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5323168/
https://www.ncbi.nlm.nih.gov/pubmed/27589845
http://dx.doi.org/10.18632/oncotarget.11772
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