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Intestinal α1-2-Fucosylation Contributes to Obesity and Steatohepatitis in Mice

BACKGROUND & AIMS: Fucosyltransferase 2 (Fut2)-mediated intestinal α1- 2-fucosylation is important for host–microbe interactions and has been associated with several diseases, but its role in obesity and hepatic steatohepatitis is not known. The aim of this study was to investigate the role of F...

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Autores principales: Zhou, Rongrong, Llorente, Cristina, Cao, Jinling, Zaramela, Livia S., Zeng, Suling, Gao, Bei, Li, Shang-Zhen, Welch, Ryan D., Huang, Feng-Qing, Qi, Lian-Wen, Pan, Chuyue, Huang, Yan, Zhou, Pengchen, Beussen, Iris, Zhang, Ying, Bryam, Gregory, Fiehn, Oliver, Wang, Lirui, Liu, E-Hu, Yu, Ruth T., Downes, Michael, Evans, Ronald M., Goglin, Karrie, Fouts, Derrick E., Brenner, David A., Bode, Lars, Fan, Xuegong, Zengler, Karsten, Schnabl, Bernd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8166943/
https://www.ncbi.nlm.nih.gov/pubmed/33631374
http://dx.doi.org/10.1016/j.jcmgh.2021.02.009
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author Zhou, Rongrong
Llorente, Cristina
Cao, Jinling
Zaramela, Livia S.
Zeng, Suling
Gao, Bei
Li, Shang-Zhen
Welch, Ryan D.
Huang, Feng-Qing
Qi, Lian-Wen
Pan, Chuyue
Huang, Yan
Zhou, Pengchen
Beussen, Iris
Zhang, Ying
Bryam, Gregory
Fiehn, Oliver
Wang, Lirui
Liu, E-Hu
Yu, Ruth T.
Downes, Michael
Evans, Ronald M.
Goglin, Karrie
Fouts, Derrick E.
Brenner, David A.
Bode, Lars
Fan, Xuegong
Zengler, Karsten
Schnabl, Bernd
author_facet Zhou, Rongrong
Llorente, Cristina
Cao, Jinling
Zaramela, Livia S.
Zeng, Suling
Gao, Bei
Li, Shang-Zhen
Welch, Ryan D.
Huang, Feng-Qing
Qi, Lian-Wen
Pan, Chuyue
Huang, Yan
Zhou, Pengchen
Beussen, Iris
Zhang, Ying
Bryam, Gregory
Fiehn, Oliver
Wang, Lirui
Liu, E-Hu
Yu, Ruth T.
Downes, Michael
Evans, Ronald M.
Goglin, Karrie
Fouts, Derrick E.
Brenner, David A.
Bode, Lars
Fan, Xuegong
Zengler, Karsten
Schnabl, Bernd
author_sort Zhou, Rongrong
collection PubMed
description BACKGROUND & AIMS: Fucosyltransferase 2 (Fut2)-mediated intestinal α1- 2-fucosylation is important for host–microbe interactions and has been associated with several diseases, but its role in obesity and hepatic steatohepatitis is not known. The aim of this study was to investigate the role of Fut2 in a Western-style diet–induced mouse model of obesity and steatohepatitis. METHODS: Wild-type (WT) and Fut2-deficient littermate mice were used and features of the metabolic syndrome and steatohepatitis were assessed after 20 weeks of Western diet feeding. RESULTS: Intestinal α1-2-fucosylation was suppressed in WT mice after Western diet feeding, and supplementation of α1-2-fucosylated glycans exacerbated obesity and steatohepatitis in these mice. Fut2-deficient mice were protected from Western diet–induced features of obesity and steatohepatitis despite an increased caloric intake. These mice have increased energy expenditure and thermogenesis, as evidenced by a higher core body temperature. Protection from obesity and steatohepatitis associated with Fut2 deficiency is transmissible to WT mice via microbiota exchange; phenotypic differences between Western diet–fed WT and Fut2-deficient mice were reduced with antibiotic treatment. Fut2 deficiency attenuated diet-induced bile acid accumulation by altered relative abundance of bacterial enzyme 7-α-hydroxysteroid dehydrogenases metabolizing bile acids and by increased fecal excretion of secondary bile acids. This also was associated with increased intestinal farnesoid X receptor/fibroblast growth factor 15 signaling, which inhibits hepatic synthesis of bile acids. Dietary supplementation of α1-2-fucosylated glycans abrogates the protective effects of Fut2 deficiency. CONCLUSIONS: α1-2-fucosylation is an important host-derived regulator of intestinal microbiota and plays an important role for the pathogenesis of obesity and steatohepatitis in mice.
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spelling pubmed-81669432021-06-05 Intestinal α1-2-Fucosylation Contributes to Obesity and Steatohepatitis in Mice Zhou, Rongrong Llorente, Cristina Cao, Jinling Zaramela, Livia S. Zeng, Suling Gao, Bei Li, Shang-Zhen Welch, Ryan D. Huang, Feng-Qing Qi, Lian-Wen Pan, Chuyue Huang, Yan Zhou, Pengchen Beussen, Iris Zhang, Ying Bryam, Gregory Fiehn, Oliver Wang, Lirui Liu, E-Hu Yu, Ruth T. Downes, Michael Evans, Ronald M. Goglin, Karrie Fouts, Derrick E. Brenner, David A. Bode, Lars Fan, Xuegong Zengler, Karsten Schnabl, Bernd Cell Mol Gastroenterol Hepatol Original Research BACKGROUND & AIMS: Fucosyltransferase 2 (Fut2)-mediated intestinal α1- 2-fucosylation is important for host–microbe interactions and has been associated with several diseases, but its role in obesity and hepatic steatohepatitis is not known. The aim of this study was to investigate the role of Fut2 in a Western-style diet–induced mouse model of obesity and steatohepatitis. METHODS: Wild-type (WT) and Fut2-deficient littermate mice were used and features of the metabolic syndrome and steatohepatitis were assessed after 20 weeks of Western diet feeding. RESULTS: Intestinal α1-2-fucosylation was suppressed in WT mice after Western diet feeding, and supplementation of α1-2-fucosylated glycans exacerbated obesity and steatohepatitis in these mice. Fut2-deficient mice were protected from Western diet–induced features of obesity and steatohepatitis despite an increased caloric intake. These mice have increased energy expenditure and thermogenesis, as evidenced by a higher core body temperature. Protection from obesity and steatohepatitis associated with Fut2 deficiency is transmissible to WT mice via microbiota exchange; phenotypic differences between Western diet–fed WT and Fut2-deficient mice were reduced with antibiotic treatment. Fut2 deficiency attenuated diet-induced bile acid accumulation by altered relative abundance of bacterial enzyme 7-α-hydroxysteroid dehydrogenases metabolizing bile acids and by increased fecal excretion of secondary bile acids. This also was associated with increased intestinal farnesoid X receptor/fibroblast growth factor 15 signaling, which inhibits hepatic synthesis of bile acids. Dietary supplementation of α1-2-fucosylated glycans abrogates the protective effects of Fut2 deficiency. CONCLUSIONS: α1-2-fucosylation is an important host-derived regulator of intestinal microbiota and plays an important role for the pathogenesis of obesity and steatohepatitis in mice. Elsevier 2021-02-22 /pmc/articles/PMC8166943/ /pubmed/33631374 http://dx.doi.org/10.1016/j.jcmgh.2021.02.009 Text en © 2021 The Authors https://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 Original Research
Zhou, Rongrong
Llorente, Cristina
Cao, Jinling
Zaramela, Livia S.
Zeng, Suling
Gao, Bei
Li, Shang-Zhen
Welch, Ryan D.
Huang, Feng-Qing
Qi, Lian-Wen
Pan, Chuyue
Huang, Yan
Zhou, Pengchen
Beussen, Iris
Zhang, Ying
Bryam, Gregory
Fiehn, Oliver
Wang, Lirui
Liu, E-Hu
Yu, Ruth T.
Downes, Michael
Evans, Ronald M.
Goglin, Karrie
Fouts, Derrick E.
Brenner, David A.
Bode, Lars
Fan, Xuegong
Zengler, Karsten
Schnabl, Bernd
Intestinal α1-2-Fucosylation Contributes to Obesity and Steatohepatitis in Mice
title Intestinal α1-2-Fucosylation Contributes to Obesity and Steatohepatitis in Mice
title_full Intestinal α1-2-Fucosylation Contributes to Obesity and Steatohepatitis in Mice
title_fullStr Intestinal α1-2-Fucosylation Contributes to Obesity and Steatohepatitis in Mice
title_full_unstemmed Intestinal α1-2-Fucosylation Contributes to Obesity and Steatohepatitis in Mice
title_short Intestinal α1-2-Fucosylation Contributes to Obesity and Steatohepatitis in Mice
title_sort intestinal α1-2-fucosylation contributes to obesity and steatohepatitis in mice
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8166943/
https://www.ncbi.nlm.nih.gov/pubmed/33631374
http://dx.doi.org/10.1016/j.jcmgh.2021.02.009
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