Cargando…

ER stress transcription factor Xbp1 suppresses intestinal tumorigenesis and directs intestinal stem cells

Unresolved endoplasmic reticulum (ER) stress in the epithelium can provoke intestinal inflammation. Hypomorphic variants of ER stress response mediators, such as X-box–binding protein 1 (XBP1), confer genetic risk for inflammatory bowel disease. We report here that hypomorphic Xbp1 function instruct...

Descripción completa

Detalles Bibliográficos
Autores principales: Niederreiter, Lukas, Fritz, Teresa M.J., Adolph, Timon E., Krismer, Anna-Maria, Offner, Felix A., Tschurtschenthaler, Markus, Flak, Magdalena B., Hosomi, Shuhei, Tomczak, Michal F., Kaneider, Nicole C., Sarcevic, Edina, Kempster, Sarah L., Raine, Tim, Esser, Daniela, Rosenstiel, Philip, Kohno, Kenji, Iwawaki, Takao, Tilg, Herbert, Blumberg, Richard S., Kaser, Arthur
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3782039/
https://www.ncbi.nlm.nih.gov/pubmed/24043762
http://dx.doi.org/10.1084/jem.20122341
_version_ 1782285508048584704
author Niederreiter, Lukas
Fritz, Teresa M.J.
Adolph, Timon E.
Krismer, Anna-Maria
Offner, Felix A.
Tschurtschenthaler, Markus
Flak, Magdalena B.
Hosomi, Shuhei
Tomczak, Michal F.
Kaneider, Nicole C.
Sarcevic, Edina
Kempster, Sarah L.
Raine, Tim
Esser, Daniela
Rosenstiel, Philip
Kohno, Kenji
Iwawaki, Takao
Tilg, Herbert
Blumberg, Richard S.
Kaser, Arthur
author_facet Niederreiter, Lukas
Fritz, Teresa M.J.
Adolph, Timon E.
Krismer, Anna-Maria
Offner, Felix A.
Tschurtschenthaler, Markus
Flak, Magdalena B.
Hosomi, Shuhei
Tomczak, Michal F.
Kaneider, Nicole C.
Sarcevic, Edina
Kempster, Sarah L.
Raine, Tim
Esser, Daniela
Rosenstiel, Philip
Kohno, Kenji
Iwawaki, Takao
Tilg, Herbert
Blumberg, Richard S.
Kaser, Arthur
author_sort Niederreiter, Lukas
collection PubMed
description Unresolved endoplasmic reticulum (ER) stress in the epithelium can provoke intestinal inflammation. Hypomorphic variants of ER stress response mediators, such as X-box–binding protein 1 (XBP1), confer genetic risk for inflammatory bowel disease. We report here that hypomorphic Xbp1 function instructs a multilayered regenerative response in the intestinal epithelium. This is characterized by intestinal stem cell (ISC) expansion as shown by an inositol-requiring enzyme 1α (Ire1α)–mediated increase in Lgr5(+) and Olfm4(+) ISCs and a Stat3-dependent increase in the proliferative output of transit-amplifying cells. These consequences of hypomorphic Xbp1 function are associated with an increased propensity to develop colitis-associated and spontaneous adenomatous polyposis coli (APC)–related tumors of the intestinal epithelium, which in the latter case is shown to be dependent on Ire1α. This study reveals an unexpected role for Xbp1 in suppressing tumor formation through restraint of a pathway that involves an Ire1α- and Stat3-mediated regenerative response of the epithelium as a consequence of ER stress. As such, Xbp1 in the intestinal epithelium not only regulates local inflammation but at the same time also determines the propensity of the epithelium to develop tumors.
format Online
Article
Text
id pubmed-3782039
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher The Rockefeller University Press
record_format MEDLINE/PubMed
spelling pubmed-37820392014-03-23 ER stress transcription factor Xbp1 suppresses intestinal tumorigenesis and directs intestinal stem cells Niederreiter, Lukas Fritz, Teresa M.J. Adolph, Timon E. Krismer, Anna-Maria Offner, Felix A. Tschurtschenthaler, Markus Flak, Magdalena B. Hosomi, Shuhei Tomczak, Michal F. Kaneider, Nicole C. Sarcevic, Edina Kempster, Sarah L. Raine, Tim Esser, Daniela Rosenstiel, Philip Kohno, Kenji Iwawaki, Takao Tilg, Herbert Blumberg, Richard S. Kaser, Arthur J Exp Med Article Unresolved endoplasmic reticulum (ER) stress in the epithelium can provoke intestinal inflammation. Hypomorphic variants of ER stress response mediators, such as X-box–binding protein 1 (XBP1), confer genetic risk for inflammatory bowel disease. We report here that hypomorphic Xbp1 function instructs a multilayered regenerative response in the intestinal epithelium. This is characterized by intestinal stem cell (ISC) expansion as shown by an inositol-requiring enzyme 1α (Ire1α)–mediated increase in Lgr5(+) and Olfm4(+) ISCs and a Stat3-dependent increase in the proliferative output of transit-amplifying cells. These consequences of hypomorphic Xbp1 function are associated with an increased propensity to develop colitis-associated and spontaneous adenomatous polyposis coli (APC)–related tumors of the intestinal epithelium, which in the latter case is shown to be dependent on Ire1α. This study reveals an unexpected role for Xbp1 in suppressing tumor formation through restraint of a pathway that involves an Ire1α- and Stat3-mediated regenerative response of the epithelium as a consequence of ER stress. As such, Xbp1 in the intestinal epithelium not only regulates local inflammation but at the same time also determines the propensity of the epithelium to develop tumors. The Rockefeller University Press 2013-09-23 /pmc/articles/PMC3782039/ /pubmed/24043762 http://dx.doi.org/10.1084/jem.20122341 Text en © 2013 Niederreiter et al. This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 3.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/3.0/).
spellingShingle Article
Niederreiter, Lukas
Fritz, Teresa M.J.
Adolph, Timon E.
Krismer, Anna-Maria
Offner, Felix A.
Tschurtschenthaler, Markus
Flak, Magdalena B.
Hosomi, Shuhei
Tomczak, Michal F.
Kaneider, Nicole C.
Sarcevic, Edina
Kempster, Sarah L.
Raine, Tim
Esser, Daniela
Rosenstiel, Philip
Kohno, Kenji
Iwawaki, Takao
Tilg, Herbert
Blumberg, Richard S.
Kaser, Arthur
ER stress transcription factor Xbp1 suppresses intestinal tumorigenesis and directs intestinal stem cells
title ER stress transcription factor Xbp1 suppresses intestinal tumorigenesis and directs intestinal stem cells
title_full ER stress transcription factor Xbp1 suppresses intestinal tumorigenesis and directs intestinal stem cells
title_fullStr ER stress transcription factor Xbp1 suppresses intestinal tumorigenesis and directs intestinal stem cells
title_full_unstemmed ER stress transcription factor Xbp1 suppresses intestinal tumorigenesis and directs intestinal stem cells
title_short ER stress transcription factor Xbp1 suppresses intestinal tumorigenesis and directs intestinal stem cells
title_sort er stress transcription factor xbp1 suppresses intestinal tumorigenesis and directs intestinal stem cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3782039/
https://www.ncbi.nlm.nih.gov/pubmed/24043762
http://dx.doi.org/10.1084/jem.20122341
work_keys_str_mv AT niederreiterlukas erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT fritzteresamj erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT adolphtimone erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT krismerannamaria erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT offnerfelixa erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT tschurtschenthalermarkus erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT flakmagdalenab erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT hosomishuhei erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT tomczakmichalf erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT kaneidernicolec erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT sarcevicedina erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT kempstersarahl erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT rainetim erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT esserdaniela erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT rosenstielphilip erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT kohnokenji erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT iwawakitakao erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT tilgherbert erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT blumbergrichards erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells
AT kaserarthur erstresstranscriptionfactorxbp1suppressesintestinaltumorigenesisanddirectsintestinalstemcells