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Hepatic G Protein-Coupled Receptor 180 Deficiency Ameliorates High Fat Diet-Induced Lipid Accumulation via the Gi-PKA-SREBP Pathway

Single-nucleotide polymorphisms in G protein-coupled receptor 180 (GPR180) are associated with hypertriglyceridemia. The aim of this study was to determine whether hepatic GPR180 impacts lipid metabolism. Hepatic GPR180 was knocked down using two approaches: Gpr180-specific short hairpin (sh)RNA car...

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Autores principales: Zhang, Yunhua, Zhu, Ziming, Sun, Lijun, Yin, Wenzhen, Liang, Yuan, Chen, Hong, Bi, Yanghui, Zhai, Wenbo, Yin, Yue, Zhang, Weizhen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10144310/
https://www.ncbi.nlm.nih.gov/pubmed/37111058
http://dx.doi.org/10.3390/nu15081838
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author Zhang, Yunhua
Zhu, Ziming
Sun, Lijun
Yin, Wenzhen
Liang, Yuan
Chen, Hong
Bi, Yanghui
Zhai, Wenbo
Yin, Yue
Zhang, Weizhen
author_facet Zhang, Yunhua
Zhu, Ziming
Sun, Lijun
Yin, Wenzhen
Liang, Yuan
Chen, Hong
Bi, Yanghui
Zhai, Wenbo
Yin, Yue
Zhang, Weizhen
author_sort Zhang, Yunhua
collection PubMed
description Single-nucleotide polymorphisms in G protein-coupled receptor 180 (GPR180) are associated with hypertriglyceridemia. The aim of this study was to determine whether hepatic GPR180 impacts lipid metabolism. Hepatic GPR180 was knocked down using two approaches: Gpr180-specific short hairpin (sh)RNA carried by adeno-associated virus 9 (AAV9) and alb-Gpr180(−/−) transgene established by crossbreeding albumin-Cre mice with Gpr180(flox/flox) animals, in which Gpr180 was specifically knocked down in hepatocytes. Adiposity, hepatic lipid contents, and proteins related to lipid metabolism were analyzed. The effects of GPR180 on triglyceride and cholesterol synthesis were further verified by knocking down or overexpressing Gpr180 in Hepa1-6 cells. Gpr180 mRNA was upregulated in the liver of HFD-induced obese mice. Deficiency of Gpr180 decreased triglyceride and cholesterol contents in the liver and plasma, ameliorated hepatic lipid deposition in HFD-induced obese mice, increased energy metabolism, and reduced adiposity. These alterations were associated with downregulation of transcription factors SREBP1 and SREBP2, and their target acetyl-CoA carboxylase. In Hepa1-6 cells, Gpr180 knockdown decreased intracellular triglyceride and cholesterol contents, whereas its overexpression increased their levels. Overexpression of Gpr180 significantly reduced the PKA-mediated phosphorylation of substrates and consequent CREB activity. Hence, GPR180 might represent a novel drug target for intervention of adiposity and liver steatosis.
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spelling pubmed-101443102023-04-29 Hepatic G Protein-Coupled Receptor 180 Deficiency Ameliorates High Fat Diet-Induced Lipid Accumulation via the Gi-PKA-SREBP Pathway Zhang, Yunhua Zhu, Ziming Sun, Lijun Yin, Wenzhen Liang, Yuan Chen, Hong Bi, Yanghui Zhai, Wenbo Yin, Yue Zhang, Weizhen Nutrients Article Single-nucleotide polymorphisms in G protein-coupled receptor 180 (GPR180) are associated with hypertriglyceridemia. The aim of this study was to determine whether hepatic GPR180 impacts lipid metabolism. Hepatic GPR180 was knocked down using two approaches: Gpr180-specific short hairpin (sh)RNA carried by adeno-associated virus 9 (AAV9) and alb-Gpr180(−/−) transgene established by crossbreeding albumin-Cre mice with Gpr180(flox/flox) animals, in which Gpr180 was specifically knocked down in hepatocytes. Adiposity, hepatic lipid contents, and proteins related to lipid metabolism were analyzed. The effects of GPR180 on triglyceride and cholesterol synthesis were further verified by knocking down or overexpressing Gpr180 in Hepa1-6 cells. Gpr180 mRNA was upregulated in the liver of HFD-induced obese mice. Deficiency of Gpr180 decreased triglyceride and cholesterol contents in the liver and plasma, ameliorated hepatic lipid deposition in HFD-induced obese mice, increased energy metabolism, and reduced adiposity. These alterations were associated with downregulation of transcription factors SREBP1 and SREBP2, and their target acetyl-CoA carboxylase. In Hepa1-6 cells, Gpr180 knockdown decreased intracellular triglyceride and cholesterol contents, whereas its overexpression increased their levels. Overexpression of Gpr180 significantly reduced the PKA-mediated phosphorylation of substrates and consequent CREB activity. Hence, GPR180 might represent a novel drug target for intervention of adiposity and liver steatosis. MDPI 2023-04-11 /pmc/articles/PMC10144310/ /pubmed/37111058 http://dx.doi.org/10.3390/nu15081838 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Yunhua
Zhu, Ziming
Sun, Lijun
Yin, Wenzhen
Liang, Yuan
Chen, Hong
Bi, Yanghui
Zhai, Wenbo
Yin, Yue
Zhang, Weizhen
Hepatic G Protein-Coupled Receptor 180 Deficiency Ameliorates High Fat Diet-Induced Lipid Accumulation via the Gi-PKA-SREBP Pathway
title Hepatic G Protein-Coupled Receptor 180 Deficiency Ameliorates High Fat Diet-Induced Lipid Accumulation via the Gi-PKA-SREBP Pathway
title_full Hepatic G Protein-Coupled Receptor 180 Deficiency Ameliorates High Fat Diet-Induced Lipid Accumulation via the Gi-PKA-SREBP Pathway
title_fullStr Hepatic G Protein-Coupled Receptor 180 Deficiency Ameliorates High Fat Diet-Induced Lipid Accumulation via the Gi-PKA-SREBP Pathway
title_full_unstemmed Hepatic G Protein-Coupled Receptor 180 Deficiency Ameliorates High Fat Diet-Induced Lipid Accumulation via the Gi-PKA-SREBP Pathway
title_short Hepatic G Protein-Coupled Receptor 180 Deficiency Ameliorates High Fat Diet-Induced Lipid Accumulation via the Gi-PKA-SREBP Pathway
title_sort hepatic g protein-coupled receptor 180 deficiency ameliorates high fat diet-induced lipid accumulation via the gi-pka-srebp pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10144310/
https://www.ncbi.nlm.nih.gov/pubmed/37111058
http://dx.doi.org/10.3390/nu15081838
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