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Tumour mutations in long noncoding RNAs enhance cell fitness

Long noncoding RNAs (lncRNAs) are linked to cancer via pathogenic changes in their expression levels. Yet, it remains unclear whether lncRNAs can also impact tumour cell fitness via function-altering somatic “driver” mutations. To search for such driver-lncRNAs, we here perform a genome-wide analysi...

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Autores principales: Esposito, Roberta, Lanzós, Andrés, Uroda, Tina, Ramnarayanan, Sunandini, Büchi, Isabel, Polidori, Taisia, Guillen-Ramirez, Hugo, Mihaljevic, Ante, Merlin, Bernard Mefi, Mela, Lia, Zoni, Eugenio, Hovhannisyan, Lusine, McCluggage, Finn, Medo, Matúš, Basile, Giulia, Meise, Dominik F., Zwyssig, Sandra, Wenger, Corina, Schwarz, Kyriakos, Vancura, Adrienne, Bosch-Guiteras, Núria, Andrades, Álvaro, Tham, Ai Ming, Roemmele, Michaela, Medina, Pedro P., Ochsenbein, Adrian F., Riether, Carsten, Kruithof-de Julio, Marianna, Zimmer, Yitzhak, Medová, Michaela, Stroka, Deborah, Fox, Archa, Johnson, Rory
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10250536/
https://www.ncbi.nlm.nih.gov/pubmed/37291246
http://dx.doi.org/10.1038/s41467-023-39160-7
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author Esposito, Roberta
Lanzós, Andrés
Uroda, Tina
Ramnarayanan, Sunandini
Büchi, Isabel
Polidori, Taisia
Guillen-Ramirez, Hugo
Mihaljevic, Ante
Merlin, Bernard Mefi
Mela, Lia
Zoni, Eugenio
Hovhannisyan, Lusine
McCluggage, Finn
Medo, Matúš
Basile, Giulia
Meise, Dominik F.
Zwyssig, Sandra
Wenger, Corina
Schwarz, Kyriakos
Vancura, Adrienne
Bosch-Guiteras, Núria
Andrades, Álvaro
Tham, Ai Ming
Roemmele, Michaela
Medina, Pedro P.
Ochsenbein, Adrian F.
Riether, Carsten
Kruithof-de Julio, Marianna
Zimmer, Yitzhak
Medová, Michaela
Stroka, Deborah
Fox, Archa
Johnson, Rory
author_facet Esposito, Roberta
Lanzós, Andrés
Uroda, Tina
Ramnarayanan, Sunandini
Büchi, Isabel
Polidori, Taisia
Guillen-Ramirez, Hugo
Mihaljevic, Ante
Merlin, Bernard Mefi
Mela, Lia
Zoni, Eugenio
Hovhannisyan, Lusine
McCluggage, Finn
Medo, Matúš
Basile, Giulia
Meise, Dominik F.
Zwyssig, Sandra
Wenger, Corina
Schwarz, Kyriakos
Vancura, Adrienne
Bosch-Guiteras, Núria
Andrades, Álvaro
Tham, Ai Ming
Roemmele, Michaela
Medina, Pedro P.
Ochsenbein, Adrian F.
Riether, Carsten
Kruithof-de Julio, Marianna
Zimmer, Yitzhak
Medová, Michaela
Stroka, Deborah
Fox, Archa
Johnson, Rory
author_sort Esposito, Roberta
collection PubMed
description Long noncoding RNAs (lncRNAs) are linked to cancer via pathogenic changes in their expression levels. Yet, it remains unclear whether lncRNAs can also impact tumour cell fitness via function-altering somatic “driver” mutations. To search for such driver-lncRNAs, we here perform a genome-wide analysis of fitness-altering single nucleotide variants (SNVs) across a cohort of 2583 primary and 3527 metastatic tumours. The resulting 54 mutated and positively-selected lncRNAs are significantly enriched for previously-reported cancer genes and a range of clinical and genomic features. A number of these lncRNAs promote tumour cell proliferation when overexpressed in in vitro models. Our results also highlight a dense SNV hotspot in the widely-studied NEAT1 oncogene. To directly evaluate the functional significance of NEAT1 SNVs, we use in cellulo mutagenesis to introduce tumour-like mutations in the gene and observe a significant and reproducible increase in cell fitness, both in vitro and in a mouse model. Mechanistic studies reveal that SNVs remodel the NEAT1 ribonucleoprotein and boost subnuclear paraspeckles. In summary, this work demonstrates the utility of driver analysis for mapping cancer-promoting lncRNAs, and provides experimental evidence that somatic mutations can act through lncRNAs to enhance pathological cancer cell fitness.
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spelling pubmed-102505362023-06-10 Tumour mutations in long noncoding RNAs enhance cell fitness Esposito, Roberta Lanzós, Andrés Uroda, Tina Ramnarayanan, Sunandini Büchi, Isabel Polidori, Taisia Guillen-Ramirez, Hugo Mihaljevic, Ante Merlin, Bernard Mefi Mela, Lia Zoni, Eugenio Hovhannisyan, Lusine McCluggage, Finn Medo, Matúš Basile, Giulia Meise, Dominik F. Zwyssig, Sandra Wenger, Corina Schwarz, Kyriakos Vancura, Adrienne Bosch-Guiteras, Núria Andrades, Álvaro Tham, Ai Ming Roemmele, Michaela Medina, Pedro P. Ochsenbein, Adrian F. Riether, Carsten Kruithof-de Julio, Marianna Zimmer, Yitzhak Medová, Michaela Stroka, Deborah Fox, Archa Johnson, Rory Nat Commun Article Long noncoding RNAs (lncRNAs) are linked to cancer via pathogenic changes in their expression levels. Yet, it remains unclear whether lncRNAs can also impact tumour cell fitness via function-altering somatic “driver” mutations. To search for such driver-lncRNAs, we here perform a genome-wide analysis of fitness-altering single nucleotide variants (SNVs) across a cohort of 2583 primary and 3527 metastatic tumours. The resulting 54 mutated and positively-selected lncRNAs are significantly enriched for previously-reported cancer genes and a range of clinical and genomic features. A number of these lncRNAs promote tumour cell proliferation when overexpressed in in vitro models. Our results also highlight a dense SNV hotspot in the widely-studied NEAT1 oncogene. To directly evaluate the functional significance of NEAT1 SNVs, we use in cellulo mutagenesis to introduce tumour-like mutations in the gene and observe a significant and reproducible increase in cell fitness, both in vitro and in a mouse model. Mechanistic studies reveal that SNVs remodel the NEAT1 ribonucleoprotein and boost subnuclear paraspeckles. In summary, this work demonstrates the utility of driver analysis for mapping cancer-promoting lncRNAs, and provides experimental evidence that somatic mutations can act through lncRNAs to enhance pathological cancer cell fitness. Nature Publishing Group UK 2023-06-08 /pmc/articles/PMC10250536/ /pubmed/37291246 http://dx.doi.org/10.1038/s41467-023-39160-7 Text en © The Author(s) 2023, corrected publication 2023 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 license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license 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 license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Esposito, Roberta
Lanzós, Andrés
Uroda, Tina
Ramnarayanan, Sunandini
Büchi, Isabel
Polidori, Taisia
Guillen-Ramirez, Hugo
Mihaljevic, Ante
Merlin, Bernard Mefi
Mela, Lia
Zoni, Eugenio
Hovhannisyan, Lusine
McCluggage, Finn
Medo, Matúš
Basile, Giulia
Meise, Dominik F.
Zwyssig, Sandra
Wenger, Corina
Schwarz, Kyriakos
Vancura, Adrienne
Bosch-Guiteras, Núria
Andrades, Álvaro
Tham, Ai Ming
Roemmele, Michaela
Medina, Pedro P.
Ochsenbein, Adrian F.
Riether, Carsten
Kruithof-de Julio, Marianna
Zimmer, Yitzhak
Medová, Michaela
Stroka, Deborah
Fox, Archa
Johnson, Rory
Tumour mutations in long noncoding RNAs enhance cell fitness
title Tumour mutations in long noncoding RNAs enhance cell fitness
title_full Tumour mutations in long noncoding RNAs enhance cell fitness
title_fullStr Tumour mutations in long noncoding RNAs enhance cell fitness
title_full_unstemmed Tumour mutations in long noncoding RNAs enhance cell fitness
title_short Tumour mutations in long noncoding RNAs enhance cell fitness
title_sort tumour mutations in long noncoding rnas enhance cell fitness
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10250536/
https://www.ncbi.nlm.nih.gov/pubmed/37291246
http://dx.doi.org/10.1038/s41467-023-39160-7
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