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Deletion of Lactate Dehydrogenase-A Impairs Oncogene-Induced Mouse Hepatocellular Carcinoma Development

BACKGROUND AND AIMS: Hepatocellular carcinoma (HCC) is a multistep process whereby abnormally proliferating cancer cells undergo extensive metabolic reprogramming. Metabolic alterations in hepatocarcinogenesis depend on the activation of specific oncogenes, thus partially explaining HCC heterogeneit...

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Autores principales: Serra, Marina, Di Matteo, Mario, Serneels, Jens, Pal, Rajesh, Cafarello, Sarah Trusso, Lanza, Martina, Sanchez-Martin, Carlos, Evert, Matthias, Castegna, Alessandra, Calvisi, Diego Francesco, Mazzone, Massimiliano, Columbano, Amedeo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9307943/
https://www.ncbi.nlm.nih.gov/pubmed/35714859
http://dx.doi.org/10.1016/j.jcmgh.2022.06.003
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author Serra, Marina
Di Matteo, Mario
Serneels, Jens
Pal, Rajesh
Cafarello, Sarah Trusso
Lanza, Martina
Sanchez-Martin, Carlos
Evert, Matthias
Castegna, Alessandra
Calvisi, Diego Francesco
Mazzone, Massimiliano
Columbano, Amedeo
author_facet Serra, Marina
Di Matteo, Mario
Serneels, Jens
Pal, Rajesh
Cafarello, Sarah Trusso
Lanza, Martina
Sanchez-Martin, Carlos
Evert, Matthias
Castegna, Alessandra
Calvisi, Diego Francesco
Mazzone, Massimiliano
Columbano, Amedeo
author_sort Serra, Marina
collection PubMed
description BACKGROUND AND AIMS: Hepatocellular carcinoma (HCC) is a multistep process whereby abnormally proliferating cancer cells undergo extensive metabolic reprogramming. Metabolic alterations in hepatocarcinogenesis depend on the activation of specific oncogenes, thus partially explaining HCC heterogeneity. c-Myc oncogene overexpression, frequently observed in human HCCs, leads to a metabolic rewiring toward a Warburg phenotype and production of lactate, resulting in the acidification of the extracellular space, favoring the emergence of an immune-permissive tumor microenvironment. Here, we investigated whether Ldha genetic ablation interferes with metabolic reprogramming and HCC development in the mouse. METHODS: We characterized the metabolic reprogramming in tumors induced in C57BL/6J mice hydrodynamically cotransfected with c-Myc and h-Ras. Using the same experimental model, we investigated the effect of Ldha inhibition—gained through the inducible and hepatocyte-specific Ldha knockout—on cancer cell metabolic reprogramming, number and size of HCC lesions, and tumor microenvironment alterations. RESULTS: c-Myc/h-Ras–driven tumors display a striking glycolytic metabolism, suggesting a switch to a Warburg phenotype. The tumors also exhibited enhanced pentose phosphate pathway activity, the switch of glutamine to sustain glutathione synthesis instead of the tricarboxylic acid cycle, and the impairment of oxidative phosphorylation. In addition, Ldha abrogation significantly hampered tumor number and size together with an evident inhibition of the Warburg-like metabolic feature and a remarkable increase of CD4(+) lymphocytes compared with Ldha wild-type livers. CONCLUSIONS: These results demonstrate that Ldha deletion significantly impairs mouse HCC development and suggest lactate dehydrogenase as a potential target to enhance the efficacy of the current therapeutic options.
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spelling pubmed-93079432022-07-24 Deletion of Lactate Dehydrogenase-A Impairs Oncogene-Induced Mouse Hepatocellular Carcinoma Development Serra, Marina Di Matteo, Mario Serneels, Jens Pal, Rajesh Cafarello, Sarah Trusso Lanza, Martina Sanchez-Martin, Carlos Evert, Matthias Castegna, Alessandra Calvisi, Diego Francesco Mazzone, Massimiliano Columbano, Amedeo Cell Mol Gastroenterol Hepatol Original Research BACKGROUND AND AIMS: Hepatocellular carcinoma (HCC) is a multistep process whereby abnormally proliferating cancer cells undergo extensive metabolic reprogramming. Metabolic alterations in hepatocarcinogenesis depend on the activation of specific oncogenes, thus partially explaining HCC heterogeneity. c-Myc oncogene overexpression, frequently observed in human HCCs, leads to a metabolic rewiring toward a Warburg phenotype and production of lactate, resulting in the acidification of the extracellular space, favoring the emergence of an immune-permissive tumor microenvironment. Here, we investigated whether Ldha genetic ablation interferes with metabolic reprogramming and HCC development in the mouse. METHODS: We characterized the metabolic reprogramming in tumors induced in C57BL/6J mice hydrodynamically cotransfected with c-Myc and h-Ras. Using the same experimental model, we investigated the effect of Ldha inhibition—gained through the inducible and hepatocyte-specific Ldha knockout—on cancer cell metabolic reprogramming, number and size of HCC lesions, and tumor microenvironment alterations. RESULTS: c-Myc/h-Ras–driven tumors display a striking glycolytic metabolism, suggesting a switch to a Warburg phenotype. The tumors also exhibited enhanced pentose phosphate pathway activity, the switch of glutamine to sustain glutathione synthesis instead of the tricarboxylic acid cycle, and the impairment of oxidative phosphorylation. In addition, Ldha abrogation significantly hampered tumor number and size together with an evident inhibition of the Warburg-like metabolic feature and a remarkable increase of CD4(+) lymphocytes compared with Ldha wild-type livers. CONCLUSIONS: These results demonstrate that Ldha deletion significantly impairs mouse HCC development and suggest lactate dehydrogenase as a potential target to enhance the efficacy of the current therapeutic options. Elsevier 2022-06-15 /pmc/articles/PMC9307943/ /pubmed/35714859 http://dx.doi.org/10.1016/j.jcmgh.2022.06.003 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research
Serra, Marina
Di Matteo, Mario
Serneels, Jens
Pal, Rajesh
Cafarello, Sarah Trusso
Lanza, Martina
Sanchez-Martin, Carlos
Evert, Matthias
Castegna, Alessandra
Calvisi, Diego Francesco
Mazzone, Massimiliano
Columbano, Amedeo
Deletion of Lactate Dehydrogenase-A Impairs Oncogene-Induced Mouse Hepatocellular Carcinoma Development
title Deletion of Lactate Dehydrogenase-A Impairs Oncogene-Induced Mouse Hepatocellular Carcinoma Development
title_full Deletion of Lactate Dehydrogenase-A Impairs Oncogene-Induced Mouse Hepatocellular Carcinoma Development
title_fullStr Deletion of Lactate Dehydrogenase-A Impairs Oncogene-Induced Mouse Hepatocellular Carcinoma Development
title_full_unstemmed Deletion of Lactate Dehydrogenase-A Impairs Oncogene-Induced Mouse Hepatocellular Carcinoma Development
title_short Deletion of Lactate Dehydrogenase-A Impairs Oncogene-Induced Mouse Hepatocellular Carcinoma Development
title_sort deletion of lactate dehydrogenase-a impairs oncogene-induced mouse hepatocellular carcinoma development
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9307943/
https://www.ncbi.nlm.nih.gov/pubmed/35714859
http://dx.doi.org/10.1016/j.jcmgh.2022.06.003
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