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Transgenic Adipose-specific Expression of the Nuclear Receptor RORα Drives a Striking Shift in Fat Distribution and Impairs Glycemic Control

RORα is a member of the nuclear receptor (NR) superfamily and analysis of the (global) RORα-deficient mouse model revealed this NR has a role in glycemic control and fat deposition. Therefore, we generated an adipose-specific RORα ‘gain of function’ mouse model under the control of the fatty acid bi...

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Autores principales: Tuong, Zewen Kelvin, Fitzsimmons, Rebecca, Wang, Shu-Ching Mary, Oh, Tae Gyu, Lau, Patrick, Steyn, Frederik, Thomas, Gethin, Muscat, George E.O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5049998/
https://www.ncbi.nlm.nih.gov/pubmed/27568222
http://dx.doi.org/10.1016/j.ebiom.2016.08.027
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author Tuong, Zewen Kelvin
Fitzsimmons, Rebecca
Wang, Shu-Ching Mary
Oh, Tae Gyu
Lau, Patrick
Steyn, Frederik
Thomas, Gethin
Muscat, George E.O.
author_facet Tuong, Zewen Kelvin
Fitzsimmons, Rebecca
Wang, Shu-Ching Mary
Oh, Tae Gyu
Lau, Patrick
Steyn, Frederik
Thomas, Gethin
Muscat, George E.O.
author_sort Tuong, Zewen Kelvin
collection PubMed
description RORα is a member of the nuclear receptor (NR) superfamily and analysis of the (global) RORα-deficient mouse model revealed this NR has a role in glycemic control and fat deposition. Therefore, we generated an adipose-specific RORα ‘gain of function’ mouse model under the control of the fatty acid binding protein 4 (FABP4) promoter to elucidate the function of RORα in adipose tissue. The Tg-FABP4-RORα4 mice demonstrated a shift in fat distribution to non-adipose tissues when challenged with a high fat diet (HFD). Specifically, we observed a subcutaneous lipodystrophy, accompanied by hepatomegaly (fatty liver/mild portal fibrosis) and splenomegaly; in a background of decreased weight gain and total body fat after HFD. Moreover, we observed significantly higher fasting blood glucose and impaired clearance of glucose in Tg-FABP4-RORα4 mice. Genome wide expression and qPCR profiling analysis identified: (i) subcutaneous adipose specific decreases in the expression of genes involved in fatty acid biosynthesis, lipid droplet expansion and glycemic control, and (ii) the fibrosis pathway as the most significant pathway [including dysregulation of the collagen/extracellular matrix (ECM) pathways] in subcutaneous adipose and liver. The pathology presented in the Tg-FABP4-RORα4 mice is reminiscent of human metabolic disease (associated with aberrant ECM expression) highlighting the therapeutic potential of this NR.
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spelling pubmed-50499982016-10-07 Transgenic Adipose-specific Expression of the Nuclear Receptor RORα Drives a Striking Shift in Fat Distribution and Impairs Glycemic Control Tuong, Zewen Kelvin Fitzsimmons, Rebecca Wang, Shu-Ching Mary Oh, Tae Gyu Lau, Patrick Steyn, Frederik Thomas, Gethin Muscat, George E.O. EBioMedicine Research Paper RORα is a member of the nuclear receptor (NR) superfamily and analysis of the (global) RORα-deficient mouse model revealed this NR has a role in glycemic control and fat deposition. Therefore, we generated an adipose-specific RORα ‘gain of function’ mouse model under the control of the fatty acid binding protein 4 (FABP4) promoter to elucidate the function of RORα in adipose tissue. The Tg-FABP4-RORα4 mice demonstrated a shift in fat distribution to non-adipose tissues when challenged with a high fat diet (HFD). Specifically, we observed a subcutaneous lipodystrophy, accompanied by hepatomegaly (fatty liver/mild portal fibrosis) and splenomegaly; in a background of decreased weight gain and total body fat after HFD. Moreover, we observed significantly higher fasting blood glucose and impaired clearance of glucose in Tg-FABP4-RORα4 mice. Genome wide expression and qPCR profiling analysis identified: (i) subcutaneous adipose specific decreases in the expression of genes involved in fatty acid biosynthesis, lipid droplet expansion and glycemic control, and (ii) the fibrosis pathway as the most significant pathway [including dysregulation of the collagen/extracellular matrix (ECM) pathways] in subcutaneous adipose and liver. The pathology presented in the Tg-FABP4-RORα4 mice is reminiscent of human metabolic disease (associated with aberrant ECM expression) highlighting the therapeutic potential of this NR. Elsevier 2016-08-20 /pmc/articles/PMC5049998/ /pubmed/27568222 http://dx.doi.org/10.1016/j.ebiom.2016.08.027 Text en © 2016 Forschungsgesellschaft für Arbeitsphysiologie und Arbeitschutz e.V. http://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 Research Paper
Tuong, Zewen Kelvin
Fitzsimmons, Rebecca
Wang, Shu-Ching Mary
Oh, Tae Gyu
Lau, Patrick
Steyn, Frederik
Thomas, Gethin
Muscat, George E.O.
Transgenic Adipose-specific Expression of the Nuclear Receptor RORα Drives a Striking Shift in Fat Distribution and Impairs Glycemic Control
title Transgenic Adipose-specific Expression of the Nuclear Receptor RORα Drives a Striking Shift in Fat Distribution and Impairs Glycemic Control
title_full Transgenic Adipose-specific Expression of the Nuclear Receptor RORα Drives a Striking Shift in Fat Distribution and Impairs Glycemic Control
title_fullStr Transgenic Adipose-specific Expression of the Nuclear Receptor RORα Drives a Striking Shift in Fat Distribution and Impairs Glycemic Control
title_full_unstemmed Transgenic Adipose-specific Expression of the Nuclear Receptor RORα Drives a Striking Shift in Fat Distribution and Impairs Glycemic Control
title_short Transgenic Adipose-specific Expression of the Nuclear Receptor RORα Drives a Striking Shift in Fat Distribution and Impairs Glycemic Control
title_sort transgenic adipose-specific expression of the nuclear receptor rorα drives a striking shift in fat distribution and impairs glycemic control
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5049998/
https://www.ncbi.nlm.nih.gov/pubmed/27568222
http://dx.doi.org/10.1016/j.ebiom.2016.08.027
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