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Lack of Gα(i2) proteins in adipocytes attenuates diet-induced obesity

OBJECTIVES: Typically, obesity results from an inappropriate balance between energy uptake from nutrient consumption and burning of calories, which leads to a pathological increase in fat mass. Obesity is a major cause of insulin resistance and diabetes. Inhibitory G proteins (Gα(i)) form a subfamil...

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Autores principales: Leiss, Veronika, Schönsiegel, Annika, Gnad, Thorsten, Kerner, Johannes, Kaur, Jyotsna, Sartorius, Tina, Machann, Jürgen, Schick, Fritz, Birnbaumer, Lutz, Häring, Hans-Ulrich, Pfeifer, Alexander, Nürnberg, Bernd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7306590/
https://www.ncbi.nlm.nih.gov/pubmed/32480042
http://dx.doi.org/10.1016/j.molmet.2020.101029
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author Leiss, Veronika
Schönsiegel, Annika
Gnad, Thorsten
Kerner, Johannes
Kaur, Jyotsna
Sartorius, Tina
Machann, Jürgen
Schick, Fritz
Birnbaumer, Lutz
Häring, Hans-Ulrich
Pfeifer, Alexander
Nürnberg, Bernd
author_facet Leiss, Veronika
Schönsiegel, Annika
Gnad, Thorsten
Kerner, Johannes
Kaur, Jyotsna
Sartorius, Tina
Machann, Jürgen
Schick, Fritz
Birnbaumer, Lutz
Häring, Hans-Ulrich
Pfeifer, Alexander
Nürnberg, Bernd
author_sort Leiss, Veronika
collection PubMed
description OBJECTIVES: Typically, obesity results from an inappropriate balance between energy uptake from nutrient consumption and burning of calories, which leads to a pathological increase in fat mass. Obesity is a major cause of insulin resistance and diabetes. Inhibitory G proteins (Gα(i)) form a subfamily that is involved in the regulation of adipose tissue function. Among the three Gα(i) members, i.e. Gα(i1), Gα(i2), Gα(i3), the Gα(i2), protein is predominantly expressed in adipose tissue. However, the functions of the Gα(i2) isoform in adipose tissue and its impact on the development of obesity are poorly understood. METHODS: By using AdipoqCreER(T2) mice, we generated adipocyte-specific Gnai2-deficient mice to study Gα(i2) function, specifically in white and brown adipocytes. These mice were fed either a control diet (CD) or a high fat diet (HFD). Mice were examined for obesity development, insulin resistance and glucose intolerance. We examined adipocyte morphology and the development of inflammation in the white adipose tissue. Finally, intracellular cAMP levels as an indicator of Gα(i) signaling and glycerol release as an indicator of lipolysis rates were measured to verify the impact of Gα(i2) on the signaling pathway in brown and white adipocytes. RESULTS: An adipocyte-specific deficiency of Gα(i2) significantly reduced diet-induced obesity, leading to decreased fat masses, smaller adipocytes and decreased inflammation in the white adipose tissue relative to littermate controls. Concurrently, oxygen consumption of brown adipocytes and in vivo measured energy expenditure were significantly enhanced. In addition, glucose tolerance and insulin sensitivity of HFD-fed adipocyte-specific Gnai2-deficient mice were improved compared to the respective controls. In the absence of Gα(i2), adrenergic stimulation of intracellular adipocyte cAMP levels was increased, which correlated with increased lipolysis and energy expenditure. CONCLUSION: We conclude that adipocyte Gα(i2) is a major regulator of adipocyte lipid content in diet-induced obesity by inhibiting adipocyte lipolysis in a cAMP-dependent manner resulting in increased energy expenditure.
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spelling pubmed-73065902020-06-25 Lack of Gα(i2) proteins in adipocytes attenuates diet-induced obesity Leiss, Veronika Schönsiegel, Annika Gnad, Thorsten Kerner, Johannes Kaur, Jyotsna Sartorius, Tina Machann, Jürgen Schick, Fritz Birnbaumer, Lutz Häring, Hans-Ulrich Pfeifer, Alexander Nürnberg, Bernd Mol Metab Article OBJECTIVES: Typically, obesity results from an inappropriate balance between energy uptake from nutrient consumption and burning of calories, which leads to a pathological increase in fat mass. Obesity is a major cause of insulin resistance and diabetes. Inhibitory G proteins (Gα(i)) form a subfamily that is involved in the regulation of adipose tissue function. Among the three Gα(i) members, i.e. Gα(i1), Gα(i2), Gα(i3), the Gα(i2), protein is predominantly expressed in adipose tissue. However, the functions of the Gα(i2) isoform in adipose tissue and its impact on the development of obesity are poorly understood. METHODS: By using AdipoqCreER(T2) mice, we generated adipocyte-specific Gnai2-deficient mice to study Gα(i2) function, specifically in white and brown adipocytes. These mice were fed either a control diet (CD) or a high fat diet (HFD). Mice were examined for obesity development, insulin resistance and glucose intolerance. We examined adipocyte morphology and the development of inflammation in the white adipose tissue. Finally, intracellular cAMP levels as an indicator of Gα(i) signaling and glycerol release as an indicator of lipolysis rates were measured to verify the impact of Gα(i2) on the signaling pathway in brown and white adipocytes. RESULTS: An adipocyte-specific deficiency of Gα(i2) significantly reduced diet-induced obesity, leading to decreased fat masses, smaller adipocytes and decreased inflammation in the white adipose tissue relative to littermate controls. Concurrently, oxygen consumption of brown adipocytes and in vivo measured energy expenditure were significantly enhanced. In addition, glucose tolerance and insulin sensitivity of HFD-fed adipocyte-specific Gnai2-deficient mice were improved compared to the respective controls. In the absence of Gα(i2), adrenergic stimulation of intracellular adipocyte cAMP levels was increased, which correlated with increased lipolysis and energy expenditure. CONCLUSION: We conclude that adipocyte Gα(i2) is a major regulator of adipocyte lipid content in diet-induced obesity by inhibiting adipocyte lipolysis in a cAMP-dependent manner resulting in increased energy expenditure. Elsevier 2020-05-30 /pmc/articles/PMC7306590/ /pubmed/32480042 http://dx.doi.org/10.1016/j.molmet.2020.101029 Text en © 2020 The Authors 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 Article
Leiss, Veronika
Schönsiegel, Annika
Gnad, Thorsten
Kerner, Johannes
Kaur, Jyotsna
Sartorius, Tina
Machann, Jürgen
Schick, Fritz
Birnbaumer, Lutz
Häring, Hans-Ulrich
Pfeifer, Alexander
Nürnberg, Bernd
Lack of Gα(i2) proteins in adipocytes attenuates diet-induced obesity
title Lack of Gα(i2) proteins in adipocytes attenuates diet-induced obesity
title_full Lack of Gα(i2) proteins in adipocytes attenuates diet-induced obesity
title_fullStr Lack of Gα(i2) proteins in adipocytes attenuates diet-induced obesity
title_full_unstemmed Lack of Gα(i2) proteins in adipocytes attenuates diet-induced obesity
title_short Lack of Gα(i2) proteins in adipocytes attenuates diet-induced obesity
title_sort lack of gα(i2) proteins in adipocytes attenuates diet-induced obesity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7306590/
https://www.ncbi.nlm.nih.gov/pubmed/32480042
http://dx.doi.org/10.1016/j.molmet.2020.101029
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