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Hepatic FoxO1 Integrates Glucose Utilization and Lipid Synthesis through Regulation of Chrebp O-Glycosylation

In liver, glucose utilization and lipid synthesis are inextricably intertwined. When glucose availability exceeds its utilization, lipogenesis increases, leading to increased intrahepatic lipid content and lipoprotein secretion. Although the fate of three-carbon metabolites is largely determined by...

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Autores principales: Ido-Kitamura, Yukari, Sasaki, Tsutomu, Kobayashi, Masaki, Kim, Hye-Jin, Lee, Yong-Soo, Kikuchi, Osamu, Yokota-Hashimoto, Hiromi, Iizuka, Katsumi, Accili, Domenico, Kitamura, Tadahiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3466224/
https://www.ncbi.nlm.nih.gov/pubmed/23056614
http://dx.doi.org/10.1371/journal.pone.0047231
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author Ido-Kitamura, Yukari
Sasaki, Tsutomu
Kobayashi, Masaki
Kim, Hye-Jin
Lee, Yong-Soo
Kikuchi, Osamu
Yokota-Hashimoto, Hiromi
Iizuka, Katsumi
Accili, Domenico
Kitamura, Tadahiro
author_facet Ido-Kitamura, Yukari
Sasaki, Tsutomu
Kobayashi, Masaki
Kim, Hye-Jin
Lee, Yong-Soo
Kikuchi, Osamu
Yokota-Hashimoto, Hiromi
Iizuka, Katsumi
Accili, Domenico
Kitamura, Tadahiro
author_sort Ido-Kitamura, Yukari
collection PubMed
description In liver, glucose utilization and lipid synthesis are inextricably intertwined. When glucose availability exceeds its utilization, lipogenesis increases, leading to increased intrahepatic lipid content and lipoprotein secretion. Although the fate of three-carbon metabolites is largely determined by flux rate through the relevant enzymes, insulin plays a permissive role in this process. But the mechanism integrating insulin receptor signaling to glucose utilization with lipogenesis is unknown. Forkhead box O1 (FoxO1), a downstream effector of insulin signaling, plays a central role in hepatic glucose metabolism through the regulation of hepatic glucose production. In this study, we investigated the mechanism by which FoxO1 integrates hepatic glucose utilization with lipid synthesis. We show that FoxO1 overexpression in hepatocytes reduces activity of carbohydrate response element binding protein (Chrebp), a key regulator of lipogenesis, by suppressing O-linked glycosylation and reducing the protein stability. FoxO1 inhibits high glucose- or O-GlcNAc transferase (OGT)-induced liver-pyruvate kinase (L-PK) promoter activity by decreasing Chrebp recruitment to the L-PK promoter. Conversely, FoxO1 ablation in liver leads to the enhanced O-glycosylation and increased protein level of Chrebp owing to decreased its ubiquitination. We propose that FoxO1 regulation of Chrebp O-glycosylation is a mechanism linking hepatic glucose utilization with lipid synthesis.
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spelling pubmed-34662242012-10-10 Hepatic FoxO1 Integrates Glucose Utilization and Lipid Synthesis through Regulation of Chrebp O-Glycosylation Ido-Kitamura, Yukari Sasaki, Tsutomu Kobayashi, Masaki Kim, Hye-Jin Lee, Yong-Soo Kikuchi, Osamu Yokota-Hashimoto, Hiromi Iizuka, Katsumi Accili, Domenico Kitamura, Tadahiro PLoS One Research Article In liver, glucose utilization and lipid synthesis are inextricably intertwined. When glucose availability exceeds its utilization, lipogenesis increases, leading to increased intrahepatic lipid content and lipoprotein secretion. Although the fate of three-carbon metabolites is largely determined by flux rate through the relevant enzymes, insulin plays a permissive role in this process. But the mechanism integrating insulin receptor signaling to glucose utilization with lipogenesis is unknown. Forkhead box O1 (FoxO1), a downstream effector of insulin signaling, plays a central role in hepatic glucose metabolism through the regulation of hepatic glucose production. In this study, we investigated the mechanism by which FoxO1 integrates hepatic glucose utilization with lipid synthesis. We show that FoxO1 overexpression in hepatocytes reduces activity of carbohydrate response element binding protein (Chrebp), a key regulator of lipogenesis, by suppressing O-linked glycosylation and reducing the protein stability. FoxO1 inhibits high glucose- or O-GlcNAc transferase (OGT)-induced liver-pyruvate kinase (L-PK) promoter activity by decreasing Chrebp recruitment to the L-PK promoter. Conversely, FoxO1 ablation in liver leads to the enhanced O-glycosylation and increased protein level of Chrebp owing to decreased its ubiquitination. We propose that FoxO1 regulation of Chrebp O-glycosylation is a mechanism linking hepatic glucose utilization with lipid synthesis. Public Library of Science 2012-10-08 /pmc/articles/PMC3466224/ /pubmed/23056614 http://dx.doi.org/10.1371/journal.pone.0047231 Text en © 2012 Ido-Kitamura 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
Ido-Kitamura, Yukari
Sasaki, Tsutomu
Kobayashi, Masaki
Kim, Hye-Jin
Lee, Yong-Soo
Kikuchi, Osamu
Yokota-Hashimoto, Hiromi
Iizuka, Katsumi
Accili, Domenico
Kitamura, Tadahiro
Hepatic FoxO1 Integrates Glucose Utilization and Lipid Synthesis through Regulation of Chrebp O-Glycosylation
title Hepatic FoxO1 Integrates Glucose Utilization and Lipid Synthesis through Regulation of Chrebp O-Glycosylation
title_full Hepatic FoxO1 Integrates Glucose Utilization and Lipid Synthesis through Regulation of Chrebp O-Glycosylation
title_fullStr Hepatic FoxO1 Integrates Glucose Utilization and Lipid Synthesis through Regulation of Chrebp O-Glycosylation
title_full_unstemmed Hepatic FoxO1 Integrates Glucose Utilization and Lipid Synthesis through Regulation of Chrebp O-Glycosylation
title_short Hepatic FoxO1 Integrates Glucose Utilization and Lipid Synthesis through Regulation of Chrebp O-Glycosylation
title_sort hepatic foxo1 integrates glucose utilization and lipid synthesis through regulation of chrebp o-glycosylation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3466224/
https://www.ncbi.nlm.nih.gov/pubmed/23056614
http://dx.doi.org/10.1371/journal.pone.0047231
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