Cargando…

The Administration of Chitosan-Tripolyphosphate-DNA Nanoparticles to Express Exogenous SREBP1a Enhances Conversion of Dietary Carbohydrates into Lipids in the Liver of Sparus aurata

In addition to being essential for the transcription of genes involved in cellular lipogenesis, increasing evidence associates sterol regulatory element binding proteins (SREBPs) with the transcriptional control of carbohydrate metabolism. The aim of this study was to assess the effect of overexpres...

Descripción completa

Detalles Bibliográficos
Autores principales: Silva-Marrero, Jonás I., Villasante, Juliana, Rashidpour, Ania, Palma, Mariana, Fàbregas, Anna, Almajano, María Pilar, Viegas, Ivan, Jones, John G., Miñarro, Montserrat, Ticó, Josep R., Baanante, Isabel V., Metón, Isidoro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6724022/
https://www.ncbi.nlm.nih.gov/pubmed/31344838
http://dx.doi.org/10.3390/biom9080297
_version_ 1783448906941595648
author Silva-Marrero, Jonás I.
Villasante, Juliana
Rashidpour, Ania
Palma, Mariana
Fàbregas, Anna
Almajano, María Pilar
Viegas, Ivan
Jones, John G.
Miñarro, Montserrat
Ticó, Josep R.
Baanante, Isabel V.
Metón, Isidoro
author_facet Silva-Marrero, Jonás I.
Villasante, Juliana
Rashidpour, Ania
Palma, Mariana
Fàbregas, Anna
Almajano, María Pilar
Viegas, Ivan
Jones, John G.
Miñarro, Montserrat
Ticó, Josep R.
Baanante, Isabel V.
Metón, Isidoro
author_sort Silva-Marrero, Jonás I.
collection PubMed
description In addition to being essential for the transcription of genes involved in cellular lipogenesis, increasing evidence associates sterol regulatory element binding proteins (SREBPs) with the transcriptional control of carbohydrate metabolism. The aim of this study was to assess the effect of overexpression SREBP1a, a potent activator of all SREBP-responsive genes, on the intermediary metabolism of Sparus aurata, a glucose-intolerant carnivorous fish. Administration of chitosan-tripolyphosphate nanoparticles complexed with a plasmid driving expression of the N-terminal transactivation domain of SREBP1a significantly increased SREBP1a mRNA and protein in the liver of S. aurata. Overexpression of SREBP1a enhanced the hepatic expression of key genes in glycolysis-gluconeogenesis (glucokinase and 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase), fatty acid synthesis (acetyl-CoA carboxylase 1 and acetyl-CoA carboxylase 2), elongation (elongation of very long chain fatty acids protein 5) and desaturation (fatty acid desaturase 2) as well as reduced nicotinamide adenine dinucleotide phosphate production (glucose-6-phosphate 1-dehydrogenase) and cholesterol synthesis (3-hydroxy-3-methylglutaryl-coenzyme A reductase), leading to increased blood triglycerides and cholesterol levels. Beyond reporting the first study addressing in vivo effects of exogenous SREBP1a in a glucose-intolerant model, our findings support that SREBP1a overexpression caused multigenic effects that favoured hepatic glycolysis and lipogenesis and thus enabled protein sparing by improving dietary carbohydrate conversion into fatty acids and cholesterol.
format Online
Article
Text
id pubmed-6724022
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-67240222019-09-10 The Administration of Chitosan-Tripolyphosphate-DNA Nanoparticles to Express Exogenous SREBP1a Enhances Conversion of Dietary Carbohydrates into Lipids in the Liver of Sparus aurata Silva-Marrero, Jonás I. Villasante, Juliana Rashidpour, Ania Palma, Mariana Fàbregas, Anna Almajano, María Pilar Viegas, Ivan Jones, John G. Miñarro, Montserrat Ticó, Josep R. Baanante, Isabel V. Metón, Isidoro Biomolecules Article In addition to being essential for the transcription of genes involved in cellular lipogenesis, increasing evidence associates sterol regulatory element binding proteins (SREBPs) with the transcriptional control of carbohydrate metabolism. The aim of this study was to assess the effect of overexpression SREBP1a, a potent activator of all SREBP-responsive genes, on the intermediary metabolism of Sparus aurata, a glucose-intolerant carnivorous fish. Administration of chitosan-tripolyphosphate nanoparticles complexed with a plasmid driving expression of the N-terminal transactivation domain of SREBP1a significantly increased SREBP1a mRNA and protein in the liver of S. aurata. Overexpression of SREBP1a enhanced the hepatic expression of key genes in glycolysis-gluconeogenesis (glucokinase and 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase), fatty acid synthesis (acetyl-CoA carboxylase 1 and acetyl-CoA carboxylase 2), elongation (elongation of very long chain fatty acids protein 5) and desaturation (fatty acid desaturase 2) as well as reduced nicotinamide adenine dinucleotide phosphate production (glucose-6-phosphate 1-dehydrogenase) and cholesterol synthesis (3-hydroxy-3-methylglutaryl-coenzyme A reductase), leading to increased blood triglycerides and cholesterol levels. Beyond reporting the first study addressing in vivo effects of exogenous SREBP1a in a glucose-intolerant model, our findings support that SREBP1a overexpression caused multigenic effects that favoured hepatic glycolysis and lipogenesis and thus enabled protein sparing by improving dietary carbohydrate conversion into fatty acids and cholesterol. MDPI 2019-07-24 /pmc/articles/PMC6724022/ /pubmed/31344838 http://dx.doi.org/10.3390/biom9080297 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Silva-Marrero, Jonás I.
Villasante, Juliana
Rashidpour, Ania
Palma, Mariana
Fàbregas, Anna
Almajano, María Pilar
Viegas, Ivan
Jones, John G.
Miñarro, Montserrat
Ticó, Josep R.
Baanante, Isabel V.
Metón, Isidoro
The Administration of Chitosan-Tripolyphosphate-DNA Nanoparticles to Express Exogenous SREBP1a Enhances Conversion of Dietary Carbohydrates into Lipids in the Liver of Sparus aurata
title The Administration of Chitosan-Tripolyphosphate-DNA Nanoparticles to Express Exogenous SREBP1a Enhances Conversion of Dietary Carbohydrates into Lipids in the Liver of Sparus aurata
title_full The Administration of Chitosan-Tripolyphosphate-DNA Nanoparticles to Express Exogenous SREBP1a Enhances Conversion of Dietary Carbohydrates into Lipids in the Liver of Sparus aurata
title_fullStr The Administration of Chitosan-Tripolyphosphate-DNA Nanoparticles to Express Exogenous SREBP1a Enhances Conversion of Dietary Carbohydrates into Lipids in the Liver of Sparus aurata
title_full_unstemmed The Administration of Chitosan-Tripolyphosphate-DNA Nanoparticles to Express Exogenous SREBP1a Enhances Conversion of Dietary Carbohydrates into Lipids in the Liver of Sparus aurata
title_short The Administration of Chitosan-Tripolyphosphate-DNA Nanoparticles to Express Exogenous SREBP1a Enhances Conversion of Dietary Carbohydrates into Lipids in the Liver of Sparus aurata
title_sort administration of chitosan-tripolyphosphate-dna nanoparticles to express exogenous srebp1a enhances conversion of dietary carbohydrates into lipids in the liver of sparus aurata
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6724022/
https://www.ncbi.nlm.nih.gov/pubmed/31344838
http://dx.doi.org/10.3390/biom9080297
work_keys_str_mv AT silvamarrerojonasi theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT villasantejuliana theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT rashidpourania theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT palmamariana theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT fabregasanna theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT almajanomariapilar theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT viegasivan theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT jonesjohng theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT minarromontserrat theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT ticojosepr theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT baananteisabelv theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT metonisidoro theadministrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT silvamarrerojonasi administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT villasantejuliana administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT rashidpourania administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT palmamariana administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT fabregasanna administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT almajanomariapilar administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT viegasivan administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT jonesjohng administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT minarromontserrat administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT ticojosepr administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT baananteisabelv administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata
AT metonisidoro administrationofchitosantripolyphosphatednananoparticlestoexpressexogenoussrebp1aenhancesconversionofdietarycarbohydratesintolipidsintheliverofsparusaurata