Cargando…

SNHG5 promotes colorectal cancer cell survival by counteracting STAU1-mediated mRNA destabilization

We currently have limited knowledge of the involvement of long non-coding RNAs (lncRNAs) in normal cellular processes and pathologies. Here, we identify and characterize SNHG5 as a stable cytoplasmic lncRNA with up-regulated expression in colorectal cancer. Depletion of SNHG5 induces cell cycle arre...

Descripción completa

Detalles Bibliográficos
Autores principales: Damas, Nkerorema Djodji, Marcatti, Michela, Côme, Christophe, Christensen, Lise Lotte, Nielsen, Morten Muhlig, Baumgartner, Roland, Gylling, Helene Maria, Maglieri, Giulia, Rundsten, Carsten Friis, Seemann, Stefan E., Rapin, Nicolas, Thézenas, Simon, Vang, Søren, Ørntoft, Torben, Andersen, Claus Lindbjerg, Pedersen, Jakob Skou, Lund, Anders H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5192221/
https://www.ncbi.nlm.nih.gov/pubmed/28004750
http://dx.doi.org/10.1038/ncomms13875
_version_ 1782487730886803456
author Damas, Nkerorema Djodji
Marcatti, Michela
Côme, Christophe
Christensen, Lise Lotte
Nielsen, Morten Muhlig
Baumgartner, Roland
Gylling, Helene Maria
Maglieri, Giulia
Rundsten, Carsten Friis
Seemann, Stefan E.
Rapin, Nicolas
Thézenas, Simon
Vang, Søren
Ørntoft, Torben
Andersen, Claus Lindbjerg
Pedersen, Jakob Skou
Lund, Anders H.
author_facet Damas, Nkerorema Djodji
Marcatti, Michela
Côme, Christophe
Christensen, Lise Lotte
Nielsen, Morten Muhlig
Baumgartner, Roland
Gylling, Helene Maria
Maglieri, Giulia
Rundsten, Carsten Friis
Seemann, Stefan E.
Rapin, Nicolas
Thézenas, Simon
Vang, Søren
Ørntoft, Torben
Andersen, Claus Lindbjerg
Pedersen, Jakob Skou
Lund, Anders H.
author_sort Damas, Nkerorema Djodji
collection PubMed
description We currently have limited knowledge of the involvement of long non-coding RNAs (lncRNAs) in normal cellular processes and pathologies. Here, we identify and characterize SNHG5 as a stable cytoplasmic lncRNA with up-regulated expression in colorectal cancer. Depletion of SNHG5 induces cell cycle arrest and apoptosis in vitro and limits tumour outgrowth in vivo, whereas SNHG5 overexpression counteracts oxaliplatin-induced apoptosis. Using an unbiased approach, we identify 121 transcript sites interacting with SNHG5 in the cytoplasm. Importantly, knockdown of key SNHG5 target transcripts, including SPATS2, induces apoptosis and thus mimics the effect seen following SNHG5 depletion. Mechanistically, we suggest that SNHG5 stabilizes the target transcripts by blocking their degradation by STAU1. Accordingly, depletion of STAU1 rescues the apoptosis induced after SNHG5 knockdown. Hence, we characterize SNHG5 as a lncRNA promoting tumour cell survival in colorectal cancer and delineate a novel mechanism in which a cytoplasmic lncRNA functions through blocking the action of STAU1.
format Online
Article
Text
id pubmed-5192221
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-51922212017-01-03 SNHG5 promotes colorectal cancer cell survival by counteracting STAU1-mediated mRNA destabilization Damas, Nkerorema Djodji Marcatti, Michela Côme, Christophe Christensen, Lise Lotte Nielsen, Morten Muhlig Baumgartner, Roland Gylling, Helene Maria Maglieri, Giulia Rundsten, Carsten Friis Seemann, Stefan E. Rapin, Nicolas Thézenas, Simon Vang, Søren Ørntoft, Torben Andersen, Claus Lindbjerg Pedersen, Jakob Skou Lund, Anders H. Nat Commun Article We currently have limited knowledge of the involvement of long non-coding RNAs (lncRNAs) in normal cellular processes and pathologies. Here, we identify and characterize SNHG5 as a stable cytoplasmic lncRNA with up-regulated expression in colorectal cancer. Depletion of SNHG5 induces cell cycle arrest and apoptosis in vitro and limits tumour outgrowth in vivo, whereas SNHG5 overexpression counteracts oxaliplatin-induced apoptosis. Using an unbiased approach, we identify 121 transcript sites interacting with SNHG5 in the cytoplasm. Importantly, knockdown of key SNHG5 target transcripts, including SPATS2, induces apoptosis and thus mimics the effect seen following SNHG5 depletion. Mechanistically, we suggest that SNHG5 stabilizes the target transcripts by blocking their degradation by STAU1. Accordingly, depletion of STAU1 rescues the apoptosis induced after SNHG5 knockdown. Hence, we characterize SNHG5 as a lncRNA promoting tumour cell survival in colorectal cancer and delineate a novel mechanism in which a cytoplasmic lncRNA functions through blocking the action of STAU1. Nature Publishing Group 2016-12-22 /pmc/articles/PMC5192221/ /pubmed/28004750 http://dx.doi.org/10.1038/ncomms13875 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Damas, Nkerorema Djodji
Marcatti, Michela
Côme, Christophe
Christensen, Lise Lotte
Nielsen, Morten Muhlig
Baumgartner, Roland
Gylling, Helene Maria
Maglieri, Giulia
Rundsten, Carsten Friis
Seemann, Stefan E.
Rapin, Nicolas
Thézenas, Simon
Vang, Søren
Ørntoft, Torben
Andersen, Claus Lindbjerg
Pedersen, Jakob Skou
Lund, Anders H.
SNHG5 promotes colorectal cancer cell survival by counteracting STAU1-mediated mRNA destabilization
title SNHG5 promotes colorectal cancer cell survival by counteracting STAU1-mediated mRNA destabilization
title_full SNHG5 promotes colorectal cancer cell survival by counteracting STAU1-mediated mRNA destabilization
title_fullStr SNHG5 promotes colorectal cancer cell survival by counteracting STAU1-mediated mRNA destabilization
title_full_unstemmed SNHG5 promotes colorectal cancer cell survival by counteracting STAU1-mediated mRNA destabilization
title_short SNHG5 promotes colorectal cancer cell survival by counteracting STAU1-mediated mRNA destabilization
title_sort snhg5 promotes colorectal cancer cell survival by counteracting stau1-mediated mrna destabilization
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5192221/
https://www.ncbi.nlm.nih.gov/pubmed/28004750
http://dx.doi.org/10.1038/ncomms13875
work_keys_str_mv AT damasnkeroremadjodji snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT marcattimichela snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT comechristophe snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT christensenliselotte snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT nielsenmortenmuhlig snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT baumgartnerroland snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT gyllinghelenemaria snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT maglierigiulia snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT rundstencarstenfriis snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT seemannstefane snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT rapinnicolas snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT thezenassimon snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT vangsøren snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT ørntofttorben snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT andersenclauslindbjerg snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT pedersenjakobskou snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization
AT lundandersh snhg5promotescolorectalcancercellsurvivalbycounteractingstau1mediatedmrnadestabilization