Cargando…

Triple negative tumors accumulate significantly less methylglyoxal specific adducts than other human breast cancer subtypes

Metabolic syndrome and type 2 diabetes are associated with increased risk of breast cancer development and progression. Methylglyoxal (MG), a glycolysis by-product, is generated through a non-enzymatic reaction from triose-phosphate intermediates. This dicarbonyl compound is highly reactive and cont...

Descripción completa

Detalles Bibliográficos
Autores principales: Chiavarina, Barbara, Nokin, Marie-Julie, Durieux, Florence, Bianchi, Elettra, Turtoi, Andrei, Peulen, Olivier, Peixoto, Paul, Irigaray, Philippe, Uchida, Koji, Belpomme, Dominique, Delvenne, Philippe, Castronovo, Vincent, Bellahcène, Akeila
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4170620/
https://www.ncbi.nlm.nih.gov/pubmed/24978626
_version_ 1782335836178612224
author Chiavarina, Barbara
Nokin, Marie-Julie
Durieux, Florence
Bianchi, Elettra
Turtoi, Andrei
Peulen, Olivier
Peixoto, Paul
Irigaray, Philippe
Uchida, Koji
Belpomme, Dominique
Delvenne, Philippe
Castronovo, Vincent
Bellahcène, Akeila
author_facet Chiavarina, Barbara
Nokin, Marie-Julie
Durieux, Florence
Bianchi, Elettra
Turtoi, Andrei
Peulen, Olivier
Peixoto, Paul
Irigaray, Philippe
Uchida, Koji
Belpomme, Dominique
Delvenne, Philippe
Castronovo, Vincent
Bellahcène, Akeila
author_sort Chiavarina, Barbara
collection PubMed
description Metabolic syndrome and type 2 diabetes are associated with increased risk of breast cancer development and progression. Methylglyoxal (MG), a glycolysis by-product, is generated through a non-enzymatic reaction from triose-phosphate intermediates. This dicarbonyl compound is highly reactive and contributes to the accumulation of advanced glycation end products. In this study, we analyzed the accumulation of Arg-pyrimidine, a MG-arginine adduct, in human breast adenocarcinoma and we observed a consistent increase of Arg-pyrimidine in cancer cells when compared with the non-tumoral counterpart. Further immunohistochemical comparative analysis of breast cancer subtypes revealed that triple negative lesions exhibited low accumulation of Arg-pyrimidine compared with other subtypes. Interestingly, the activity of glyoxalase 1 (Glo-1), an enzyme that detoxifies MG, was significantly higher in triple negative than in other subtype lesions, suggesting that these aggressive tumors are able to develop an efficient response against dicarbonyl stress. Using breast cancer cell lines, we substantiated these clinical observations by showing that, in contrast to triple positive, triple negative cells induced Glo-1 expression and activity in response to MG treatment. This is the first report that Arg-pyrimidine adduct accumulation is a consistent event in human breast cancer with a differential detection between triple negative and other breast cancer subtypes.
format Online
Article
Text
id pubmed-4170620
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-41706202014-09-22 Triple negative tumors accumulate significantly less methylglyoxal specific adducts than other human breast cancer subtypes Chiavarina, Barbara Nokin, Marie-Julie Durieux, Florence Bianchi, Elettra Turtoi, Andrei Peulen, Olivier Peixoto, Paul Irigaray, Philippe Uchida, Koji Belpomme, Dominique Delvenne, Philippe Castronovo, Vincent Bellahcène, Akeila Oncotarget Research Paper Metabolic syndrome and type 2 diabetes are associated with increased risk of breast cancer development and progression. Methylglyoxal (MG), a glycolysis by-product, is generated through a non-enzymatic reaction from triose-phosphate intermediates. This dicarbonyl compound is highly reactive and contributes to the accumulation of advanced glycation end products. In this study, we analyzed the accumulation of Arg-pyrimidine, a MG-arginine adduct, in human breast adenocarcinoma and we observed a consistent increase of Arg-pyrimidine in cancer cells when compared with the non-tumoral counterpart. Further immunohistochemical comparative analysis of breast cancer subtypes revealed that triple negative lesions exhibited low accumulation of Arg-pyrimidine compared with other subtypes. Interestingly, the activity of glyoxalase 1 (Glo-1), an enzyme that detoxifies MG, was significantly higher in triple negative than in other subtype lesions, suggesting that these aggressive tumors are able to develop an efficient response against dicarbonyl stress. Using breast cancer cell lines, we substantiated these clinical observations by showing that, in contrast to triple positive, triple negative cells induced Glo-1 expression and activity in response to MG treatment. This is the first report that Arg-pyrimidine adduct accumulation is a consistent event in human breast cancer with a differential detection between triple negative and other breast cancer subtypes. Impact Journals LLC 2014-06-20 /pmc/articles/PMC4170620/ /pubmed/24978626 Text en Copyright: © 2014 Chiavarina 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
Chiavarina, Barbara
Nokin, Marie-Julie
Durieux, Florence
Bianchi, Elettra
Turtoi, Andrei
Peulen, Olivier
Peixoto, Paul
Irigaray, Philippe
Uchida, Koji
Belpomme, Dominique
Delvenne, Philippe
Castronovo, Vincent
Bellahcène, Akeila
Triple negative tumors accumulate significantly less methylglyoxal specific adducts than other human breast cancer subtypes
title Triple negative tumors accumulate significantly less methylglyoxal specific adducts than other human breast cancer subtypes
title_full Triple negative tumors accumulate significantly less methylglyoxal specific adducts than other human breast cancer subtypes
title_fullStr Triple negative tumors accumulate significantly less methylglyoxal specific adducts than other human breast cancer subtypes
title_full_unstemmed Triple negative tumors accumulate significantly less methylglyoxal specific adducts than other human breast cancer subtypes
title_short Triple negative tumors accumulate significantly less methylglyoxal specific adducts than other human breast cancer subtypes
title_sort triple negative tumors accumulate significantly less methylglyoxal specific adducts than other human breast cancer subtypes
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4170620/
https://www.ncbi.nlm.nih.gov/pubmed/24978626
work_keys_str_mv AT chiavarinabarbara triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT nokinmariejulie triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT durieuxflorence triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT bianchielettra triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT turtoiandrei triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT peulenolivier triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT peixotopaul triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT irigarayphilippe triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT uchidakoji triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT belpommedominique triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT delvennephilippe triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT castronovovincent triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes
AT bellahceneakeila triplenegativetumorsaccumulatesignificantlylessmethylglyoxalspecificadductsthanotherhumanbreastcancersubtypes