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Glycolysis Dependency as a Hallmark of SF3B1-Mutated Cells

SIMPLE SUMMARY: Cancer-associated SF3B1 mutations result in aberrant transcripts whose fate remains unknown. We aimed to investigate the functional consequences of these splice aberrations. Our results show that SF3B1 mutation alters the translation of transcripts encoding proteins involved in metab...

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Autores principales: Vivet-Noguer, Raquel, Tarin, Malcy, Canbezdi, Christine, Dayot, Stephane, Silva, Lisseth, Houy, Alexandre, Martineau, Sylvain, Mieulet, Virginie, Gentric, Géraldine, Loew, Damarys, Lombard, Bérangère, Nemati, Fariba, Richon, Sophie, Guyonnet, Lea, Servois, Vincent, Vagner, Stephan, Stern, Marc-Henri, Roman-Roman, Sergio, Alsafadi, Samar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101609/
https://www.ncbi.nlm.nih.gov/pubmed/35565242
http://dx.doi.org/10.3390/cancers14092113
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author Vivet-Noguer, Raquel
Tarin, Malcy
Canbezdi, Christine
Dayot, Stephane
Silva, Lisseth
Houy, Alexandre
Martineau, Sylvain
Mieulet, Virginie
Gentric, Géraldine
Loew, Damarys
Lombard, Bérangère
Nemati, Fariba
Richon, Sophie
Guyonnet, Lea
Servois, Vincent
Vagner, Stephan
Stern, Marc-Henri
Roman-Roman, Sergio
Alsafadi, Samar
author_facet Vivet-Noguer, Raquel
Tarin, Malcy
Canbezdi, Christine
Dayot, Stephane
Silva, Lisseth
Houy, Alexandre
Martineau, Sylvain
Mieulet, Virginie
Gentric, Géraldine
Loew, Damarys
Lombard, Bérangère
Nemati, Fariba
Richon, Sophie
Guyonnet, Lea
Servois, Vincent
Vagner, Stephan
Stern, Marc-Henri
Roman-Roman, Sergio
Alsafadi, Samar
author_sort Vivet-Noguer, Raquel
collection PubMed
description SIMPLE SUMMARY: Cancer-associated SF3B1 mutations result in aberrant transcripts whose fate remains unknown. We aimed to investigate the functional consequences of these splice aberrations. Our results show that SF3B1 mutation alters the translation of transcripts encoding proteins involved in metabolism, which triggers a metabolic switch toward an increased glucose uptake. Consequently, SF3B1-mutated cells are more sensitive to glycolysis inhibition than SF3B1 wild-type cells. ABSTRACT: SF3B1 mutations are recurrent in cancer and result in aberrant splicing of a previously defined set of genes. Here, we investigated the fate of aberrant transcripts induced by mutant SF3B1 and the related functional consequences. We first demonstrate that mutant SF3B1 does not alter global nascent protein synthesis, suggesting target-dependent consequences. Polysome profiling revealed that 35% of aberrantly spliced transcripts are more translated than their corresponding canonically spliced transcripts. This mostly occurs in genes with enriched metabolic functions. Furthermore, LC-MS/MS analysis showed that mutant SF3B1 impacts the abundance of proteins involved in metabolism. Functional metabolic characterization revealed that mutant SF3B1 decreases mitochondrial respiration and promotes glycolysis to compensate for defective mitochondrial metabolism. Hence, mutant SF3B1 induces glycolysis dependency, which sensitizes cells to glycolysis inhibition. Overall, we provide evidence of the oncogenic involvement of mutant SF3B1 in uveal melanoma through a metabolic switch to glycolysis, revealing vulnerability to glycolysis inhibitors as a promising therapeutic strategy.
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spelling pubmed-91016092022-05-14 Glycolysis Dependency as a Hallmark of SF3B1-Mutated Cells Vivet-Noguer, Raquel Tarin, Malcy Canbezdi, Christine Dayot, Stephane Silva, Lisseth Houy, Alexandre Martineau, Sylvain Mieulet, Virginie Gentric, Géraldine Loew, Damarys Lombard, Bérangère Nemati, Fariba Richon, Sophie Guyonnet, Lea Servois, Vincent Vagner, Stephan Stern, Marc-Henri Roman-Roman, Sergio Alsafadi, Samar Cancers (Basel) Article SIMPLE SUMMARY: Cancer-associated SF3B1 mutations result in aberrant transcripts whose fate remains unknown. We aimed to investigate the functional consequences of these splice aberrations. Our results show that SF3B1 mutation alters the translation of transcripts encoding proteins involved in metabolism, which triggers a metabolic switch toward an increased glucose uptake. Consequently, SF3B1-mutated cells are more sensitive to glycolysis inhibition than SF3B1 wild-type cells. ABSTRACT: SF3B1 mutations are recurrent in cancer and result in aberrant splicing of a previously defined set of genes. Here, we investigated the fate of aberrant transcripts induced by mutant SF3B1 and the related functional consequences. We first demonstrate that mutant SF3B1 does not alter global nascent protein synthesis, suggesting target-dependent consequences. Polysome profiling revealed that 35% of aberrantly spliced transcripts are more translated than their corresponding canonically spliced transcripts. This mostly occurs in genes with enriched metabolic functions. Furthermore, LC-MS/MS analysis showed that mutant SF3B1 impacts the abundance of proteins involved in metabolism. Functional metabolic characterization revealed that mutant SF3B1 decreases mitochondrial respiration and promotes glycolysis to compensate for defective mitochondrial metabolism. Hence, mutant SF3B1 induces glycolysis dependency, which sensitizes cells to glycolysis inhibition. Overall, we provide evidence of the oncogenic involvement of mutant SF3B1 in uveal melanoma through a metabolic switch to glycolysis, revealing vulnerability to glycolysis inhibitors as a promising therapeutic strategy. MDPI 2022-04-24 /pmc/articles/PMC9101609/ /pubmed/35565242 http://dx.doi.org/10.3390/cancers14092113 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Vivet-Noguer, Raquel
Tarin, Malcy
Canbezdi, Christine
Dayot, Stephane
Silva, Lisseth
Houy, Alexandre
Martineau, Sylvain
Mieulet, Virginie
Gentric, Géraldine
Loew, Damarys
Lombard, Bérangère
Nemati, Fariba
Richon, Sophie
Guyonnet, Lea
Servois, Vincent
Vagner, Stephan
Stern, Marc-Henri
Roman-Roman, Sergio
Alsafadi, Samar
Glycolysis Dependency as a Hallmark of SF3B1-Mutated Cells
title Glycolysis Dependency as a Hallmark of SF3B1-Mutated Cells
title_full Glycolysis Dependency as a Hallmark of SF3B1-Mutated Cells
title_fullStr Glycolysis Dependency as a Hallmark of SF3B1-Mutated Cells
title_full_unstemmed Glycolysis Dependency as a Hallmark of SF3B1-Mutated Cells
title_short Glycolysis Dependency as a Hallmark of SF3B1-Mutated Cells
title_sort glycolysis dependency as a hallmark of sf3b1-mutated cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101609/
https://www.ncbi.nlm.nih.gov/pubmed/35565242
http://dx.doi.org/10.3390/cancers14092113
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