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Glioblastoma invasion and cooption depend on IRE1α endoribonuclease activity

IRE1α is an endoplasmic reticulum (ER)-resident transmembrane signaling protein and a cellular stress sensor. The protein harbors a cytosolic dual kinase/endoribonuclease activity required for adaptive responses to micro-environmental changes. In an orthotopic xenograft model of human glioma, invali...

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Autores principales: Jabouille, Arnaud, Delugin, Maylis, Pineau, Raphaël, Dubrac, Alexandre, Soulet, Fabienne, Lhomond, Stéphanie, Pallares-Lupon, Nestor, Prats, Hervé, Bikfalvi, Andreas, Chevet, Eric, Touriol, Christian, Moenner, Michel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694804/
https://www.ncbi.nlm.nih.gov/pubmed/26325176
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author Jabouille, Arnaud
Delugin, Maylis
Pineau, Raphaël
Dubrac, Alexandre
Soulet, Fabienne
Lhomond, Stéphanie
Pallares-Lupon, Nestor
Prats, Hervé
Bikfalvi, Andreas
Chevet, Eric
Touriol, Christian
Moenner, Michel
author_facet Jabouille, Arnaud
Delugin, Maylis
Pineau, Raphaël
Dubrac, Alexandre
Soulet, Fabienne
Lhomond, Stéphanie
Pallares-Lupon, Nestor
Prats, Hervé
Bikfalvi, Andreas
Chevet, Eric
Touriol, Christian
Moenner, Michel
author_sort Jabouille, Arnaud
collection PubMed
description IRE1α is an endoplasmic reticulum (ER)-resident transmembrane signaling protein and a cellular stress sensor. The protein harbors a cytosolic dual kinase/endoribonuclease activity required for adaptive responses to micro-environmental changes. In an orthotopic xenograft model of human glioma, invalidation of IRE1α RNase or/and kinase activities generated tumors with remarkably distinct phenotypes. Contrasting with the extensive angiogenesis observed in tumors derived from control cells, the double kinase/RNase invalidation reprogrammed mesenchymal differentiation of cancer cells and produced avascular and infiltrative glioblastomas with blood vessel co-option. In comparison, selective invalidation of IRE1α RNase did not compromise tumor angiogenesis but still elicited invasive features and vessel co-option. In vitro, IRE1α RNase deficient cells were also endowed with a higher ability to migrate. Constitutive activation of both enzymes led to wild-type-like lesions. The presence of IRE1α, but not its RNase activity, is therefore required for glioblastoma neovascularization, whereas invasion results only from RNase inhibition. In this model, two key mechanisms of tumor progression and cancer cell survival are functionally linked to IRE1α.
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spelling pubmed-46948042016-01-20 Glioblastoma invasion and cooption depend on IRE1α endoribonuclease activity Jabouille, Arnaud Delugin, Maylis Pineau, Raphaël Dubrac, Alexandre Soulet, Fabienne Lhomond, Stéphanie Pallares-Lupon, Nestor Prats, Hervé Bikfalvi, Andreas Chevet, Eric Touriol, Christian Moenner, Michel Oncotarget Research Paper IRE1α is an endoplasmic reticulum (ER)-resident transmembrane signaling protein and a cellular stress sensor. The protein harbors a cytosolic dual kinase/endoribonuclease activity required for adaptive responses to micro-environmental changes. In an orthotopic xenograft model of human glioma, invalidation of IRE1α RNase or/and kinase activities generated tumors with remarkably distinct phenotypes. Contrasting with the extensive angiogenesis observed in tumors derived from control cells, the double kinase/RNase invalidation reprogrammed mesenchymal differentiation of cancer cells and produced avascular and infiltrative glioblastomas with blood vessel co-option. In comparison, selective invalidation of IRE1α RNase did not compromise tumor angiogenesis but still elicited invasive features and vessel co-option. In vitro, IRE1α RNase deficient cells were also endowed with a higher ability to migrate. Constitutive activation of both enzymes led to wild-type-like lesions. The presence of IRE1α, but not its RNase activity, is therefore required for glioblastoma neovascularization, whereas invasion results only from RNase inhibition. In this model, two key mechanisms of tumor progression and cancer cell survival are functionally linked to IRE1α. Impact Journals LLC 2015-07-23 /pmc/articles/PMC4694804/ /pubmed/26325176 Text en Copyright: © 2015 Jabouille 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
Jabouille, Arnaud
Delugin, Maylis
Pineau, Raphaël
Dubrac, Alexandre
Soulet, Fabienne
Lhomond, Stéphanie
Pallares-Lupon, Nestor
Prats, Hervé
Bikfalvi, Andreas
Chevet, Eric
Touriol, Christian
Moenner, Michel
Glioblastoma invasion and cooption depend on IRE1α endoribonuclease activity
title Glioblastoma invasion and cooption depend on IRE1α endoribonuclease activity
title_full Glioblastoma invasion and cooption depend on IRE1α endoribonuclease activity
title_fullStr Glioblastoma invasion and cooption depend on IRE1α endoribonuclease activity
title_full_unstemmed Glioblastoma invasion and cooption depend on IRE1α endoribonuclease activity
title_short Glioblastoma invasion and cooption depend on IRE1α endoribonuclease activity
title_sort glioblastoma invasion and cooption depend on ire1α endoribonuclease activity
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694804/
https://www.ncbi.nlm.nih.gov/pubmed/26325176
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