Cargando…

ApoB100-LDL Acts as a Metabolic Signal from Liver to Peripheral Fat Causing Inhibition of Lipolysis in Adipocytes

BACKGROUND: Free fatty acids released from adipose tissue affect the synthesis of apolipoprotein B-containing lipoproteins and glucose metabolism in the liver. Whether there also exists a reciprocal metabolic arm affecting energy metabolism in white adipose tissue is unknown. METHODS AND FINDINGS: W...

Descripción completa

Detalles Bibliográficos
Autores principales: Skogsberg, Josefin, Dicker, Andrea, Rydén, Mikael, Åström, Gaby, Nilsson, Roland, Bhuiyan, Hasanuzzaman, Vitols, Sigurd, Mairal, Aline, Langin, Dominique, Alberts, Peteris, Walum, Erik, Tegnér, Jesper, Hamsten, Anders, Arner, Peter, Björkegren, Johan
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2582480/
https://www.ncbi.nlm.nih.gov/pubmed/19020660
http://dx.doi.org/10.1371/journal.pone.0003771
_version_ 1782160671046107136
author Skogsberg, Josefin
Dicker, Andrea
Rydén, Mikael
Åström, Gaby
Nilsson, Roland
Bhuiyan, Hasanuzzaman
Vitols, Sigurd
Mairal, Aline
Langin, Dominique
Alberts, Peteris
Walum, Erik
Tegnér, Jesper
Hamsten, Anders
Arner, Peter
Björkegren, Johan
author_facet Skogsberg, Josefin
Dicker, Andrea
Rydén, Mikael
Åström, Gaby
Nilsson, Roland
Bhuiyan, Hasanuzzaman
Vitols, Sigurd
Mairal, Aline
Langin, Dominique
Alberts, Peteris
Walum, Erik
Tegnér, Jesper
Hamsten, Anders
Arner, Peter
Björkegren, Johan
author_sort Skogsberg, Josefin
collection PubMed
description BACKGROUND: Free fatty acids released from adipose tissue affect the synthesis of apolipoprotein B-containing lipoproteins and glucose metabolism in the liver. Whether there also exists a reciprocal metabolic arm affecting energy metabolism in white adipose tissue is unknown. METHODS AND FINDINGS: We investigated the effects of apoB-containing lipoproteins on catecholamine-induced lipolysis in adipocytes from subcutaneous fat cells of obese but otherwise healthy men, fat pads from mice with plasma lipoproteins containing high or intermediate levels of apoB100 or no apoB100, primary cultured adipocytes, and 3T3-L1 cells. In subcutaneous fat cells, the rate of lipolysis was inversely related to plasma apoB levels. In human primary adipocytes, LDL inhibited lipolysis in a concentration-dependent fashion. In contrast, VLDL had no effect. Lipolysis was increased in fat pads from mice lacking plasma apoB100, reduced in apoB100-only mice, and intermediate in wild-type mice. Mice lacking apoB100 also had higher oxygen consumption and lipid oxidation. In 3T3-L1 cells, apoB100-containing lipoproteins inhibited lipolysis in a dose-dependent fashion, but lipoproteins containing apoB48 had no effect. ApoB100-LDL mediated inhibition of lipolysis was abolished in fat pads of mice deficient in the LDL receptor (Ldlr(−/−)Apob (100/100)). CONCLUSIONS: Our results show that the binding of apoB100-LDL to adipocytes via the LDL receptor inhibits intracellular noradrenaline-induced lipolysis in adipocytes. Thus, apoB100-LDL is a novel signaling molecule from the liver to peripheral fat deposits that may be an important link between atherogenic dyslipidemias and facets of the metabolic syndrome.
format Text
id pubmed-2582480
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-25824802008-11-20 ApoB100-LDL Acts as a Metabolic Signal from Liver to Peripheral Fat Causing Inhibition of Lipolysis in Adipocytes Skogsberg, Josefin Dicker, Andrea Rydén, Mikael Åström, Gaby Nilsson, Roland Bhuiyan, Hasanuzzaman Vitols, Sigurd Mairal, Aline Langin, Dominique Alberts, Peteris Walum, Erik Tegnér, Jesper Hamsten, Anders Arner, Peter Björkegren, Johan PLoS One Research Article BACKGROUND: Free fatty acids released from adipose tissue affect the synthesis of apolipoprotein B-containing lipoproteins and glucose metabolism in the liver. Whether there also exists a reciprocal metabolic arm affecting energy metabolism in white adipose tissue is unknown. METHODS AND FINDINGS: We investigated the effects of apoB-containing lipoproteins on catecholamine-induced lipolysis in adipocytes from subcutaneous fat cells of obese but otherwise healthy men, fat pads from mice with plasma lipoproteins containing high or intermediate levels of apoB100 or no apoB100, primary cultured adipocytes, and 3T3-L1 cells. In subcutaneous fat cells, the rate of lipolysis was inversely related to plasma apoB levels. In human primary adipocytes, LDL inhibited lipolysis in a concentration-dependent fashion. In contrast, VLDL had no effect. Lipolysis was increased in fat pads from mice lacking plasma apoB100, reduced in apoB100-only mice, and intermediate in wild-type mice. Mice lacking apoB100 also had higher oxygen consumption and lipid oxidation. In 3T3-L1 cells, apoB100-containing lipoproteins inhibited lipolysis in a dose-dependent fashion, but lipoproteins containing apoB48 had no effect. ApoB100-LDL mediated inhibition of lipolysis was abolished in fat pads of mice deficient in the LDL receptor (Ldlr(−/−)Apob (100/100)). CONCLUSIONS: Our results show that the binding of apoB100-LDL to adipocytes via the LDL receptor inhibits intracellular noradrenaline-induced lipolysis in adipocytes. Thus, apoB100-LDL is a novel signaling molecule from the liver to peripheral fat deposits that may be an important link between atherogenic dyslipidemias and facets of the metabolic syndrome. Public Library of Science 2008-11-20 /pmc/articles/PMC2582480/ /pubmed/19020660 http://dx.doi.org/10.1371/journal.pone.0003771 Text en Skogsberg 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
Skogsberg, Josefin
Dicker, Andrea
Rydén, Mikael
Åström, Gaby
Nilsson, Roland
Bhuiyan, Hasanuzzaman
Vitols, Sigurd
Mairal, Aline
Langin, Dominique
Alberts, Peteris
Walum, Erik
Tegnér, Jesper
Hamsten, Anders
Arner, Peter
Björkegren, Johan
ApoB100-LDL Acts as a Metabolic Signal from Liver to Peripheral Fat Causing Inhibition of Lipolysis in Adipocytes
title ApoB100-LDL Acts as a Metabolic Signal from Liver to Peripheral Fat Causing Inhibition of Lipolysis in Adipocytes
title_full ApoB100-LDL Acts as a Metabolic Signal from Liver to Peripheral Fat Causing Inhibition of Lipolysis in Adipocytes
title_fullStr ApoB100-LDL Acts as a Metabolic Signal from Liver to Peripheral Fat Causing Inhibition of Lipolysis in Adipocytes
title_full_unstemmed ApoB100-LDL Acts as a Metabolic Signal from Liver to Peripheral Fat Causing Inhibition of Lipolysis in Adipocytes
title_short ApoB100-LDL Acts as a Metabolic Signal from Liver to Peripheral Fat Causing Inhibition of Lipolysis in Adipocytes
title_sort apob100-ldl acts as a metabolic signal from liver to peripheral fat causing inhibition of lipolysis in adipocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2582480/
https://www.ncbi.nlm.nih.gov/pubmed/19020660
http://dx.doi.org/10.1371/journal.pone.0003771
work_keys_str_mv AT skogsbergjosefin apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT dickerandrea apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT rydenmikael apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT astromgaby apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT nilssonroland apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT bhuiyanhasanuzzaman apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT vitolssigurd apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT mairalaline apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT langindominique apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT albertspeteris apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT walumerik apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT tegnerjesper apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT hamstenanders apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT arnerpeter apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes
AT bjorkegrenjohan apob100ldlactsasametabolicsignalfromlivertoperipheralfatcausinginhibitionoflipolysisinadipocytes