Cargando…

Hepatic ACAT2 Knock Down Increases ABCA1 and Modifies HDL Metabolism in Mice

OBJECTIVES: ACAT2 is the exclusive cholesterol-esterifying enzyme in hepatocytes and enterocytes. Hepatic ABCA1 transfers unesterified cholesterol (UC) to apoAI, thus generating HDL. By changing the hepatic UC pool available for ABCA1, ACAT2 may affect HDL metabolism. The aim of this study was to re...

Descripción completa

Detalles Bibliográficos
Autores principales: Pedrelli, Matteo, Davoodpour, Padideh, Degirolamo, Chiara, Gomaraschi, Monica, Graham, Mark, Ossoli, Alice, Larsson, Lilian, Calabresi, Laura, Gustafsson, Jan-Åke, Steffensen, Knut R., Eriksson, Mats, Parini, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3973598/
https://www.ncbi.nlm.nih.gov/pubmed/24695360
http://dx.doi.org/10.1371/journal.pone.0093552
_version_ 1782479343303262208
author Pedrelli, Matteo
Davoodpour, Padideh
Degirolamo, Chiara
Gomaraschi, Monica
Graham, Mark
Ossoli, Alice
Larsson, Lilian
Calabresi, Laura
Gustafsson, Jan-Åke
Steffensen, Knut R.
Eriksson, Mats
Parini, Paolo
author_facet Pedrelli, Matteo
Davoodpour, Padideh
Degirolamo, Chiara
Gomaraschi, Monica
Graham, Mark
Ossoli, Alice
Larsson, Lilian
Calabresi, Laura
Gustafsson, Jan-Åke
Steffensen, Knut R.
Eriksson, Mats
Parini, Paolo
author_sort Pedrelli, Matteo
collection PubMed
description OBJECTIVES: ACAT2 is the exclusive cholesterol-esterifying enzyme in hepatocytes and enterocytes. Hepatic ABCA1 transfers unesterified cholesterol (UC) to apoAI, thus generating HDL. By changing the hepatic UC pool available for ABCA1, ACAT2 may affect HDL metabolism. The aim of this study was to reveal whether hepatic ACAT2 influences HDL metabolism. DESIGN: WT and LXRα/β double knockout (DOKO) mice were fed a western-type diet for 8 weeks. Animals were i.p. injected with an antisense oligonucleotide targeted to hepatic ACAT2 (ASO6), or with an ASO control. Injections started 4 weeks after, or concomitantly with, the beginning of the diet. RESULTS: ASO6 reduced liver cholesteryl esters, while not inducing UC accumulation. ASO6 increased hepatic ABCA1 protein independently of the diet conditions. ASO6 affected HDL lipids (increased UC) only in DOKO, while it increased apoE-containing HDL in both genotypes. In WT mice ASO6 led to the appearance of large HDL enriched in apoAI and apoE. CONCLUSIONS: The use of ASO6 revealed a new pathway by which the liver may contribute to HDL metabolism in mice. ACAT2 seems to be a hepatic player affecting the cholesterol fluxes fated to VLDL or to HDL, the latter via up-regulation of ABCA1.
format Online
Article
Text
id pubmed-3973598
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-39735982014-04-04 Hepatic ACAT2 Knock Down Increases ABCA1 and Modifies HDL Metabolism in Mice Pedrelli, Matteo Davoodpour, Padideh Degirolamo, Chiara Gomaraschi, Monica Graham, Mark Ossoli, Alice Larsson, Lilian Calabresi, Laura Gustafsson, Jan-Åke Steffensen, Knut R. Eriksson, Mats Parini, Paolo PLoS One Research Article OBJECTIVES: ACAT2 is the exclusive cholesterol-esterifying enzyme in hepatocytes and enterocytes. Hepatic ABCA1 transfers unesterified cholesterol (UC) to apoAI, thus generating HDL. By changing the hepatic UC pool available for ABCA1, ACAT2 may affect HDL metabolism. The aim of this study was to reveal whether hepatic ACAT2 influences HDL metabolism. DESIGN: WT and LXRα/β double knockout (DOKO) mice were fed a western-type diet for 8 weeks. Animals were i.p. injected with an antisense oligonucleotide targeted to hepatic ACAT2 (ASO6), or with an ASO control. Injections started 4 weeks after, or concomitantly with, the beginning of the diet. RESULTS: ASO6 reduced liver cholesteryl esters, while not inducing UC accumulation. ASO6 increased hepatic ABCA1 protein independently of the diet conditions. ASO6 affected HDL lipids (increased UC) only in DOKO, while it increased apoE-containing HDL in both genotypes. In WT mice ASO6 led to the appearance of large HDL enriched in apoAI and apoE. CONCLUSIONS: The use of ASO6 revealed a new pathway by which the liver may contribute to HDL metabolism in mice. ACAT2 seems to be a hepatic player affecting the cholesterol fluxes fated to VLDL or to HDL, the latter via up-regulation of ABCA1. Public Library of Science 2014-04-02 /pmc/articles/PMC3973598/ /pubmed/24695360 http://dx.doi.org/10.1371/journal.pone.0093552 Text en © 2014 Pedrelli et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Pedrelli, Matteo
Davoodpour, Padideh
Degirolamo, Chiara
Gomaraschi, Monica
Graham, Mark
Ossoli, Alice
Larsson, Lilian
Calabresi, Laura
Gustafsson, Jan-Åke
Steffensen, Knut R.
Eriksson, Mats
Parini, Paolo
Hepatic ACAT2 Knock Down Increases ABCA1 and Modifies HDL Metabolism in Mice
title Hepatic ACAT2 Knock Down Increases ABCA1 and Modifies HDL Metabolism in Mice
title_full Hepatic ACAT2 Knock Down Increases ABCA1 and Modifies HDL Metabolism in Mice
title_fullStr Hepatic ACAT2 Knock Down Increases ABCA1 and Modifies HDL Metabolism in Mice
title_full_unstemmed Hepatic ACAT2 Knock Down Increases ABCA1 and Modifies HDL Metabolism in Mice
title_short Hepatic ACAT2 Knock Down Increases ABCA1 and Modifies HDL Metabolism in Mice
title_sort hepatic acat2 knock down increases abca1 and modifies hdl metabolism in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3973598/
https://www.ncbi.nlm.nih.gov/pubmed/24695360
http://dx.doi.org/10.1371/journal.pone.0093552
work_keys_str_mv AT pedrellimatteo hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice
AT davoodpourpadideh hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice
AT degirolamochiara hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice
AT gomaraschimonica hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice
AT grahammark hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice
AT ossolialice hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice
AT larssonlilian hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice
AT calabresilaura hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice
AT gustafssonjanake hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice
AT steffensenknutr hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice
AT erikssonmats hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice
AT parinipaolo hepaticacat2knockdownincreasesabca1andmodifieshdlmetabolisminmice