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Paracrine orchestration of intestinal tumorigenesis by a mesenchymal niche

The initiation of an intestinal tumour is a probabilistic process that depends on the competition between mutant and normal epithelial stem cells in crypts(1). Intestinal stem cells are closely associated with a diverse but poorly characterized network of mesenchymal cell types(2,3). However, whethe...

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Autores principales: Roulis, Manolis, Kaklamanos, Aimilios, Schernthanner, Marina, Bielecki, Piotr, Zhao, Jun, Kaffe, Eleanna, Frommelt, Laura-Sophie, Qu, Rihao, Knapp, Marlene S., Henriques, Ana, Chalkidi, Niki, Koliaraki, Vasiliki, Jiao, Jing, Brewer, J. Richard, Bacher, Maren, Blackburn, Holly N., Zhao, Xiaoyun, Breyer, Richard M., Aidinis, Vassilis, Jain, Dhanpat, Su, Bing, Herschman, Harvey R., Kluger, Yuval, Kollias, George, Flavell, Richard A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7490650/
https://www.ncbi.nlm.nih.gov/pubmed/32322056
http://dx.doi.org/10.1038/s41586-020-2166-3
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author Roulis, Manolis
Kaklamanos, Aimilios
Schernthanner, Marina
Bielecki, Piotr
Zhao, Jun
Kaffe, Eleanna
Frommelt, Laura-Sophie
Qu, Rihao
Knapp, Marlene S.
Henriques, Ana
Chalkidi, Niki
Koliaraki, Vasiliki
Jiao, Jing
Brewer, J. Richard
Bacher, Maren
Blackburn, Holly N.
Zhao, Xiaoyun
Breyer, Richard M.
Aidinis, Vassilis
Jain, Dhanpat
Su, Bing
Herschman, Harvey R.
Kluger, Yuval
Kollias, George
Flavell, Richard A.
author_facet Roulis, Manolis
Kaklamanos, Aimilios
Schernthanner, Marina
Bielecki, Piotr
Zhao, Jun
Kaffe, Eleanna
Frommelt, Laura-Sophie
Qu, Rihao
Knapp, Marlene S.
Henriques, Ana
Chalkidi, Niki
Koliaraki, Vasiliki
Jiao, Jing
Brewer, J. Richard
Bacher, Maren
Blackburn, Holly N.
Zhao, Xiaoyun
Breyer, Richard M.
Aidinis, Vassilis
Jain, Dhanpat
Su, Bing
Herschman, Harvey R.
Kluger, Yuval
Kollias, George
Flavell, Richard A.
author_sort Roulis, Manolis
collection PubMed
description The initiation of an intestinal tumour is a probabilistic process that depends on the competition between mutant and normal epithelial stem cells in crypts(1). Intestinal stem cells are closely associated with a diverse but poorly characterized network of mesenchymal cell types(2,3). However, whether the physiological mesenchymal microenvironment of mutant stem cells affects tumour initiation remains unknown. Here we provide in vivo evidence that the mesenchymal niche controls tumour initiation in trans. By characterizing the heterogeneity of the intestinal mesenchyme using single-cell RNA-sequencing analysis, we identified a population of rare pericryptal Ptgs2-expressing fibroblasts that constitutively process arachidonic acid into highly labile prostaglandin E(2) (PGE(2)). Specific ablation of Ptgs2 in fibroblasts was sufficient to prevent tumour initiation in two different models of sporadic, autochthonous tumorigenesis. Mechanistically, single-cell RNA-sequencing analyses of a mesenchymal niche model showed that fibroblast-derived PGE(2) drives the expansion οf a population of Sca-1(+) reserve-like stem cells. These express a strong regenerative/tumorigenic program, driven by the Hippo pathway effector Yap. In vivo, Yap is indispensable for Sca-1(+) cell expansion and early tumour initiation and displays a nuclear localization in both mouse and human adenomas. Using organoid experiments, we identified a molecular mechanism whereby PGE(2) promotes Yap dephosphorylation, nuclear translocation and transcriptional activity by signalling through the receptor Ptger4. Epithelial-specific ablation of Ptger4 misdirected the regenerative reprogramming of stem cells and prevented Sca-1(+) cell expansion and sporadic tumour initiation in mutant mice, thereby demonstrating the robust paracrine control of tumour-initiating stem cells by PGE(2)–Ptger4. Analyses of patient-derived organoids established that PGE(2)–PTGER4 also regulates stem cell function in humans. Our study demonstrates that initiation of colorectal cancer is orchestrated by the mesenchymal niche and reveals a mechanism by which rare pericryptal Ptgs2-expressing fibroblasts exert paracrine control over tumour-initiating stem cells via the druggable PGE(2)–Ptger4–Yap signalling axis.
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spelling pubmed-74906502020-10-01 Paracrine orchestration of intestinal tumorigenesis by a mesenchymal niche Roulis, Manolis Kaklamanos, Aimilios Schernthanner, Marina Bielecki, Piotr Zhao, Jun Kaffe, Eleanna Frommelt, Laura-Sophie Qu, Rihao Knapp, Marlene S. Henriques, Ana Chalkidi, Niki Koliaraki, Vasiliki Jiao, Jing Brewer, J. Richard Bacher, Maren Blackburn, Holly N. Zhao, Xiaoyun Breyer, Richard M. Aidinis, Vassilis Jain, Dhanpat Su, Bing Herschman, Harvey R. Kluger, Yuval Kollias, George Flavell, Richard A. Nature Article The initiation of an intestinal tumour is a probabilistic process that depends on the competition between mutant and normal epithelial stem cells in crypts(1). Intestinal stem cells are closely associated with a diverse but poorly characterized network of mesenchymal cell types(2,3). However, whether the physiological mesenchymal microenvironment of mutant stem cells affects tumour initiation remains unknown. Here we provide in vivo evidence that the mesenchymal niche controls tumour initiation in trans. By characterizing the heterogeneity of the intestinal mesenchyme using single-cell RNA-sequencing analysis, we identified a population of rare pericryptal Ptgs2-expressing fibroblasts that constitutively process arachidonic acid into highly labile prostaglandin E(2) (PGE(2)). Specific ablation of Ptgs2 in fibroblasts was sufficient to prevent tumour initiation in two different models of sporadic, autochthonous tumorigenesis. Mechanistically, single-cell RNA-sequencing analyses of a mesenchymal niche model showed that fibroblast-derived PGE(2) drives the expansion οf a population of Sca-1(+) reserve-like stem cells. These express a strong regenerative/tumorigenic program, driven by the Hippo pathway effector Yap. In vivo, Yap is indispensable for Sca-1(+) cell expansion and early tumour initiation and displays a nuclear localization in both mouse and human adenomas. Using organoid experiments, we identified a molecular mechanism whereby PGE(2) promotes Yap dephosphorylation, nuclear translocation and transcriptional activity by signalling through the receptor Ptger4. Epithelial-specific ablation of Ptger4 misdirected the regenerative reprogramming of stem cells and prevented Sca-1(+) cell expansion and sporadic tumour initiation in mutant mice, thereby demonstrating the robust paracrine control of tumour-initiating stem cells by PGE(2)–Ptger4. Analyses of patient-derived organoids established that PGE(2)–PTGER4 also regulates stem cell function in humans. Our study demonstrates that initiation of colorectal cancer is orchestrated by the mesenchymal niche and reveals a mechanism by which rare pericryptal Ptgs2-expressing fibroblasts exert paracrine control over tumour-initiating stem cells via the druggable PGE(2)–Ptger4–Yap signalling axis. 2020-04-01 2020-04 /pmc/articles/PMC7490650/ /pubmed/32322056 http://dx.doi.org/10.1038/s41586-020-2166-3 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Roulis, Manolis
Kaklamanos, Aimilios
Schernthanner, Marina
Bielecki, Piotr
Zhao, Jun
Kaffe, Eleanna
Frommelt, Laura-Sophie
Qu, Rihao
Knapp, Marlene S.
Henriques, Ana
Chalkidi, Niki
Koliaraki, Vasiliki
Jiao, Jing
Brewer, J. Richard
Bacher, Maren
Blackburn, Holly N.
Zhao, Xiaoyun
Breyer, Richard M.
Aidinis, Vassilis
Jain, Dhanpat
Su, Bing
Herschman, Harvey R.
Kluger, Yuval
Kollias, George
Flavell, Richard A.
Paracrine orchestration of intestinal tumorigenesis by a mesenchymal niche
title Paracrine orchestration of intestinal tumorigenesis by a mesenchymal niche
title_full Paracrine orchestration of intestinal tumorigenesis by a mesenchymal niche
title_fullStr Paracrine orchestration of intestinal tumorigenesis by a mesenchymal niche
title_full_unstemmed Paracrine orchestration of intestinal tumorigenesis by a mesenchymal niche
title_short Paracrine orchestration of intestinal tumorigenesis by a mesenchymal niche
title_sort paracrine orchestration of intestinal tumorigenesis by a mesenchymal niche
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7490650/
https://www.ncbi.nlm.nih.gov/pubmed/32322056
http://dx.doi.org/10.1038/s41586-020-2166-3
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