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Endoplasmic reticulum stress regulates the intestinal stem cell state through CtBP2

Enforcing differentiation of cancer stem cells is considered as a potential strategy to sensitize colorectal cancer cells to irradiation and chemotherapy. Activation of the unfolded protein response, due to endoplasmic reticulum (ER) stress, causes rapid stem cell differentiation in normal intestina...

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Autores principales: Meijer, Bartolomeus J., Smit, Wouter L., Koelink, Pim J., Westendorp, Barbara F., de Boer, Ruben J., van der Meer, Jonathan H. M., Vermeulen, Jacqueline L. M., Paton, James C., Paton, Adrienne W., Qin, Jun, Dekker, Evelien, Muncan, Vanesa, van den Brink, Gijs R., Heijmans, Jarom
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8111031/
https://www.ncbi.nlm.nih.gov/pubmed/33972635
http://dx.doi.org/10.1038/s41598-021-89326-w
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author Meijer, Bartolomeus J.
Smit, Wouter L.
Koelink, Pim J.
Westendorp, Barbara F.
de Boer, Ruben J.
van der Meer, Jonathan H. M.
Vermeulen, Jacqueline L. M.
Paton, James C.
Paton, Adrienne W.
Qin, Jun
Dekker, Evelien
Muncan, Vanesa
van den Brink, Gijs R.
Heijmans, Jarom
author_facet Meijer, Bartolomeus J.
Smit, Wouter L.
Koelink, Pim J.
Westendorp, Barbara F.
de Boer, Ruben J.
van der Meer, Jonathan H. M.
Vermeulen, Jacqueline L. M.
Paton, James C.
Paton, Adrienne W.
Qin, Jun
Dekker, Evelien
Muncan, Vanesa
van den Brink, Gijs R.
Heijmans, Jarom
author_sort Meijer, Bartolomeus J.
collection PubMed
description Enforcing differentiation of cancer stem cells is considered as a potential strategy to sensitize colorectal cancer cells to irradiation and chemotherapy. Activation of the unfolded protein response, due to endoplasmic reticulum (ER) stress, causes rapid stem cell differentiation in normal intestinal and colon cancer cells. We previously found that stem cell differentiation was mediated by a Protein kinase R-like ER kinase (PERK) dependent arrest of mRNA translation, resulting in rapid protein depletion of WNT-dependent transcription factor c-MYC. We hypothesize that ER stress dependent stem cell differentiation may rely on the depletion of additional transcriptional regulators with a short protein half-life that are rapidly depleted due to a PERK-dependent translational pause. Using a novel screening method, we identify novel transcription factors that regulate the intestinal stem cell fate upon ER stress. ER stress was induced in LS174T cells with thapsigargin or subtilase cytotoxin (SubAB) and immediate alterations in nuclear transcription factor activity were assessed by the CatTFRE assay in which transcription factors present in nuclear lysate are bound to plasmid DNA, co-extracted and quantified using mass-spectrometry. The role of altered activity of transcription factor CtBP2 was further examined by modification of its expression levels using CAG-rtTA3-CtBP2 overexpression in small intestinal organoids, shCtBP2 knockdown in LS174T cells, and familial adenomatous polyposis patient-derived organoids. CtBP2 overexpression organoids were challenged by ER stress and ionizing irradiation. We identified a unique set of transcription factors with altered activation upon ER stress. Gene ontology analysis showed that transcription factors with diminished binding were involved in cellular differentiation processes. ER stress decreased CtBP2 protein expression in mouse small intestine. ER stress induced loss of CtBP2 expression which was rescued by inhibition of PERK signaling. CtBP2 was overexpressed in mouse and human colorectal adenomas. Inducible CtBP2 overexpression in organoids conferred higher clonogenic potential, resilience to irradiation-induced damage and a partial rescue of ER stress-induced loss of stemness. Using an unbiased proteomics approach, we identified a unique set of transcription factors for which DNA-binding activity is lost directly upon ER stress. We continued investigating the function of co-regulator CtBP2, and show that CtBP2 mediates ER stress-induced loss of stemness which supports the intestinal stem cell state in homeostatic stem cells and colorectal cancer cells.
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spelling pubmed-81110312021-05-12 Endoplasmic reticulum stress regulates the intestinal stem cell state through CtBP2 Meijer, Bartolomeus J. Smit, Wouter L. Koelink, Pim J. Westendorp, Barbara F. de Boer, Ruben J. van der Meer, Jonathan H. M. Vermeulen, Jacqueline L. M. Paton, James C. Paton, Adrienne W. Qin, Jun Dekker, Evelien Muncan, Vanesa van den Brink, Gijs R. Heijmans, Jarom Sci Rep Article Enforcing differentiation of cancer stem cells is considered as a potential strategy to sensitize colorectal cancer cells to irradiation and chemotherapy. Activation of the unfolded protein response, due to endoplasmic reticulum (ER) stress, causes rapid stem cell differentiation in normal intestinal and colon cancer cells. We previously found that stem cell differentiation was mediated by a Protein kinase R-like ER kinase (PERK) dependent arrest of mRNA translation, resulting in rapid protein depletion of WNT-dependent transcription factor c-MYC. We hypothesize that ER stress dependent stem cell differentiation may rely on the depletion of additional transcriptional regulators with a short protein half-life that are rapidly depleted due to a PERK-dependent translational pause. Using a novel screening method, we identify novel transcription factors that regulate the intestinal stem cell fate upon ER stress. ER stress was induced in LS174T cells with thapsigargin or subtilase cytotoxin (SubAB) and immediate alterations in nuclear transcription factor activity were assessed by the CatTFRE assay in which transcription factors present in nuclear lysate are bound to plasmid DNA, co-extracted and quantified using mass-spectrometry. The role of altered activity of transcription factor CtBP2 was further examined by modification of its expression levels using CAG-rtTA3-CtBP2 overexpression in small intestinal organoids, shCtBP2 knockdown in LS174T cells, and familial adenomatous polyposis patient-derived organoids. CtBP2 overexpression organoids were challenged by ER stress and ionizing irradiation. We identified a unique set of transcription factors with altered activation upon ER stress. Gene ontology analysis showed that transcription factors with diminished binding were involved in cellular differentiation processes. ER stress decreased CtBP2 protein expression in mouse small intestine. ER stress induced loss of CtBP2 expression which was rescued by inhibition of PERK signaling. CtBP2 was overexpressed in mouse and human colorectal adenomas. Inducible CtBP2 overexpression in organoids conferred higher clonogenic potential, resilience to irradiation-induced damage and a partial rescue of ER stress-induced loss of stemness. Using an unbiased proteomics approach, we identified a unique set of transcription factors for which DNA-binding activity is lost directly upon ER stress. We continued investigating the function of co-regulator CtBP2, and show that CtBP2 mediates ER stress-induced loss of stemness which supports the intestinal stem cell state in homeostatic stem cells and colorectal cancer cells. Nature Publishing Group UK 2021-05-10 /pmc/articles/PMC8111031/ /pubmed/33972635 http://dx.doi.org/10.1038/s41598-021-89326-w Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Meijer, Bartolomeus J.
Smit, Wouter L.
Koelink, Pim J.
Westendorp, Barbara F.
de Boer, Ruben J.
van der Meer, Jonathan H. M.
Vermeulen, Jacqueline L. M.
Paton, James C.
Paton, Adrienne W.
Qin, Jun
Dekker, Evelien
Muncan, Vanesa
van den Brink, Gijs R.
Heijmans, Jarom
Endoplasmic reticulum stress regulates the intestinal stem cell state through CtBP2
title Endoplasmic reticulum stress regulates the intestinal stem cell state through CtBP2
title_full Endoplasmic reticulum stress regulates the intestinal stem cell state through CtBP2
title_fullStr Endoplasmic reticulum stress regulates the intestinal stem cell state through CtBP2
title_full_unstemmed Endoplasmic reticulum stress regulates the intestinal stem cell state through CtBP2
title_short Endoplasmic reticulum stress regulates the intestinal stem cell state through CtBP2
title_sort endoplasmic reticulum stress regulates the intestinal stem cell state through ctbp2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8111031/
https://www.ncbi.nlm.nih.gov/pubmed/33972635
http://dx.doi.org/10.1038/s41598-021-89326-w
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