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Inactivation of the E3 Ubiquitin Ligase IDOL Attenuates Diet-Induced Obesity and Metabolic Dysfunction in Mice

OBJECTIVE—: The E3 ubiquitin ligase IDOL (inducible degrader of the LDLR [LDL (low-density lipoprotein) receptor]) is a post-transcriptional regulator of LDLR abundance. Model systems and human genetics support a role for IDOL in regulating circulating LDL levels. Whether IDOL plays a broader metabo...

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Autores principales: van Loon, Nienke M., Ottenhoff, Roelof, Kooijman, Sander, Moeton, Martina, Scheij, Saskia, Roscam Abbing, Reinout L.P., Gijbels, Marion J.J., Levels, Johannes H.M., Sorrentino, Vincenzo, Berbée, Jimmy F.P., Rensen, Patrick C.N., Zelcer, Noam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6092113/
https://www.ncbi.nlm.nih.gov/pubmed/29903737
http://dx.doi.org/10.1161/ATVBAHA.118.311168
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author van Loon, Nienke M.
Ottenhoff, Roelof
Kooijman, Sander
Moeton, Martina
Scheij, Saskia
Roscam Abbing, Reinout L.P.
Gijbels, Marion J.J.
Levels, Johannes H.M.
Sorrentino, Vincenzo
Berbée, Jimmy F.P.
Rensen, Patrick C.N.
Zelcer, Noam
author_facet van Loon, Nienke M.
Ottenhoff, Roelof
Kooijman, Sander
Moeton, Martina
Scheij, Saskia
Roscam Abbing, Reinout L.P.
Gijbels, Marion J.J.
Levels, Johannes H.M.
Sorrentino, Vincenzo
Berbée, Jimmy F.P.
Rensen, Patrick C.N.
Zelcer, Noam
author_sort van Loon, Nienke M.
collection PubMed
description OBJECTIVE—: The E3 ubiquitin ligase IDOL (inducible degrader of the LDLR [LDL (low-density lipoprotein) receptor]) is a post-transcriptional regulator of LDLR abundance. Model systems and human genetics support a role for IDOL in regulating circulating LDL levels. Whether IDOL plays a broader metabolic role and affects development of metabolic syndrome-associated comorbidities is unknown. APPROACH AND RESULTS—: We studied WT (wild type) and Idol((−/−)) (Idol-KO) mice in 2 models: physiological aging and diet-induced obesity. In both models, deletion of Idol protected mice from metabolic dysfunction. On a Western-type diet, Idol loss resulted in decreased circulating levels of cholesterol, triglycerides, glucose, and insulin. This was accompanied by protection from weight gain in short- and long-term dietary challenges, which could be attributed to reduced hepatosteatosis and fat mass in Idol-KO mice. Although feeding and intestinal fat uptake were unchanged in Idol-KO mice, their brown adipose tissue was protected from lipid accumulation and had elevated expression of UCP1 (uncoupling protein 1) and TH (tyrosine hydroxylase). Indirect calorimetry indicated a marked increase in locomotion and suggested a trend toward increased cumulative energy expenditure and fat oxidation. An increase in in vivo clearance of reconstituted lipoprotein particles in Idol-KO mice may sustain this energetic demand. In the BXD mouse genetic reference population, hepatic Idol expression correlates with multiple metabolic parameters, thus providing support for findings in the Idol-KO mice. CONCLUSIONS—: Our study uncovers an unrecognized role for Idol in regulation of whole body metabolism in physiological aging and on a Western-type diet. These findings support Idol inhibition as a therapeutic strategy to target multiple metabolic syndrome-associated comorbidities.
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spelling pubmed-60921132018-08-24 Inactivation of the E3 Ubiquitin Ligase IDOL Attenuates Diet-Induced Obesity and Metabolic Dysfunction in Mice van Loon, Nienke M. Ottenhoff, Roelof Kooijman, Sander Moeton, Martina Scheij, Saskia Roscam Abbing, Reinout L.P. Gijbels, Marion J.J. Levels, Johannes H.M. Sorrentino, Vincenzo Berbée, Jimmy F.P. Rensen, Patrick C.N. Zelcer, Noam Arterioscler Thromb Vasc Biol Basic Sciences OBJECTIVE—: The E3 ubiquitin ligase IDOL (inducible degrader of the LDLR [LDL (low-density lipoprotein) receptor]) is a post-transcriptional regulator of LDLR abundance. Model systems and human genetics support a role for IDOL in regulating circulating LDL levels. Whether IDOL plays a broader metabolic role and affects development of metabolic syndrome-associated comorbidities is unknown. APPROACH AND RESULTS—: We studied WT (wild type) and Idol((−/−)) (Idol-KO) mice in 2 models: physiological aging and diet-induced obesity. In both models, deletion of Idol protected mice from metabolic dysfunction. On a Western-type diet, Idol loss resulted in decreased circulating levels of cholesterol, triglycerides, glucose, and insulin. This was accompanied by protection from weight gain in short- and long-term dietary challenges, which could be attributed to reduced hepatosteatosis and fat mass in Idol-KO mice. Although feeding and intestinal fat uptake were unchanged in Idol-KO mice, their brown adipose tissue was protected from lipid accumulation and had elevated expression of UCP1 (uncoupling protein 1) and TH (tyrosine hydroxylase). Indirect calorimetry indicated a marked increase in locomotion and suggested a trend toward increased cumulative energy expenditure and fat oxidation. An increase in in vivo clearance of reconstituted lipoprotein particles in Idol-KO mice may sustain this energetic demand. In the BXD mouse genetic reference population, hepatic Idol expression correlates with multiple metabolic parameters, thus providing support for findings in the Idol-KO mice. CONCLUSIONS—: Our study uncovers an unrecognized role for Idol in regulation of whole body metabolism in physiological aging and on a Western-type diet. These findings support Idol inhibition as a therapeutic strategy to target multiple metabolic syndrome-associated comorbidities. Lippincott Williams & Wilkins 2018-08 2018-06-14 /pmc/articles/PMC6092113/ /pubmed/29903737 http://dx.doi.org/10.1161/ATVBAHA.118.311168 Text en © 2018 The Authors. Arteriosclerosis, Thrombosis, and Vascular Biology is published on behalf of the American Heart Association, Inc., by Wolters Kluwer Health, Inc. This is an open access article under the terms of the Creative Commons Attribution Non-Commercial-NoDerivs (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use, distribution, and reproduction in any medium, provided that the original work is properly cited, the use is noncommercial, and no modifications or adaptations are made.
spellingShingle Basic Sciences
van Loon, Nienke M.
Ottenhoff, Roelof
Kooijman, Sander
Moeton, Martina
Scheij, Saskia
Roscam Abbing, Reinout L.P.
Gijbels, Marion J.J.
Levels, Johannes H.M.
Sorrentino, Vincenzo
Berbée, Jimmy F.P.
Rensen, Patrick C.N.
Zelcer, Noam
Inactivation of the E3 Ubiquitin Ligase IDOL Attenuates Diet-Induced Obesity and Metabolic Dysfunction in Mice
title Inactivation of the E3 Ubiquitin Ligase IDOL Attenuates Diet-Induced Obesity and Metabolic Dysfunction in Mice
title_full Inactivation of the E3 Ubiquitin Ligase IDOL Attenuates Diet-Induced Obesity and Metabolic Dysfunction in Mice
title_fullStr Inactivation of the E3 Ubiquitin Ligase IDOL Attenuates Diet-Induced Obesity and Metabolic Dysfunction in Mice
title_full_unstemmed Inactivation of the E3 Ubiquitin Ligase IDOL Attenuates Diet-Induced Obesity and Metabolic Dysfunction in Mice
title_short Inactivation of the E3 Ubiquitin Ligase IDOL Attenuates Diet-Induced Obesity and Metabolic Dysfunction in Mice
title_sort inactivation of the e3 ubiquitin ligase idol attenuates diet-induced obesity and metabolic dysfunction in mice
topic Basic Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6092113/
https://www.ncbi.nlm.nih.gov/pubmed/29903737
http://dx.doi.org/10.1161/ATVBAHA.118.311168
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