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Osteopontin Exacerbates High-Fat Diet-Induced Metabolic Disorders in a Microbiome-Dependent Manner

The gut microbiome is involved in metabolic disorders. Osteopontin (OPN), as a key cytokine, contributes to various inflammation-related diseases. The underlying role of OPN in the microbiome remains poorly understood. Here, we investigated whether OPN could modulate metabolic disorders by affecting...

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Autores principales: Chen, Jianing, Zeng, Ping, Gong, Lan, Zhang, Xujun, Ling, Zongxin, Bi, Kefan, Shi, Fan, Wang, Kaihang, Zhang, Qiong, Jiang, Jingjing, Zhang, Yanhui, Uede, Toshimitsu, El-Omar, Emad M., Diao, Hongyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9765578/
https://www.ncbi.nlm.nih.gov/pubmed/36300928
http://dx.doi.org/10.1128/mbio.02531-22
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author Chen, Jianing
Zeng, Ping
Gong, Lan
Zhang, Xujun
Ling, Zongxin
Bi, Kefan
Shi, Fan
Wang, Kaihang
Zhang, Qiong
Jiang, Jingjing
Zhang, Yanhui
Uede, Toshimitsu
El-Omar, Emad M.
Diao, Hongyan
author_facet Chen, Jianing
Zeng, Ping
Gong, Lan
Zhang, Xujun
Ling, Zongxin
Bi, Kefan
Shi, Fan
Wang, Kaihang
Zhang, Qiong
Jiang, Jingjing
Zhang, Yanhui
Uede, Toshimitsu
El-Omar, Emad M.
Diao, Hongyan
author_sort Chen, Jianing
collection PubMed
description The gut microbiome is involved in metabolic disorders. Osteopontin (OPN), as a key cytokine, contributes to various inflammation-related diseases. The underlying role of OPN in the microbiome remains poorly understood. Here, we investigated whether OPN could modulate metabolic disorders by affecting gut microbiota. In our present study, we found that the expression of OPN was elevated in individuals with obesity compared to that observed in healthy controls. There was a positive correlation between plasma OPN levels and body mass index (BMI) in humans. Moreover, OPN significantly exacerbated lipid accumulation and metabolic disorders in high-fat diet (HFD)-fed mice. Importantly, OPN significantly aggravated HFD-induced gut dysbiosis with a key signature profile. Fecal microbiota transplantation also supported the role of OPN in HFD-induced metabolic disorders in a microbiota-dependent manner. Moreover, the microbiome shift of OPN-deficient mice would be compensated to resemble those of wild-type mice by feeding with either OPN-containing milk or recombinant OPN protein in vivo. Furthermore, metagenomic analysis showed that OPN induced a higher abundance of Dorea and a lower abundance of Lactobacillus, which were positively and negatively correlated with body weight, respectively. Indeed, the abundance of Dorea was significantly decreased after Lactobacillus administration, suggesting that OPN may regulate the intestinal abundance of Dorea by reducing the colonization of Lactobacillus. We further confirmed that OPN decreased the adhesion of Lactobacillus to intestinal epithelial cells through the Notch signaling pathway. This study suggested that OPN could exacerbate HFD-induced metabolic dysfunctions through the OPN-induced alteration of the gut microbiome. Therefore, OPN could be a potential therapeutic target for metabolic syndrome.
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spelling pubmed-97655782022-12-21 Osteopontin Exacerbates High-Fat Diet-Induced Metabolic Disorders in a Microbiome-Dependent Manner Chen, Jianing Zeng, Ping Gong, Lan Zhang, Xujun Ling, Zongxin Bi, Kefan Shi, Fan Wang, Kaihang Zhang, Qiong Jiang, Jingjing Zhang, Yanhui Uede, Toshimitsu El-Omar, Emad M. Diao, Hongyan mBio Research Article The gut microbiome is involved in metabolic disorders. Osteopontin (OPN), as a key cytokine, contributes to various inflammation-related diseases. The underlying role of OPN in the microbiome remains poorly understood. Here, we investigated whether OPN could modulate metabolic disorders by affecting gut microbiota. In our present study, we found that the expression of OPN was elevated in individuals with obesity compared to that observed in healthy controls. There was a positive correlation between plasma OPN levels and body mass index (BMI) in humans. Moreover, OPN significantly exacerbated lipid accumulation and metabolic disorders in high-fat diet (HFD)-fed mice. Importantly, OPN significantly aggravated HFD-induced gut dysbiosis with a key signature profile. Fecal microbiota transplantation also supported the role of OPN in HFD-induced metabolic disorders in a microbiota-dependent manner. Moreover, the microbiome shift of OPN-deficient mice would be compensated to resemble those of wild-type mice by feeding with either OPN-containing milk or recombinant OPN protein in vivo. Furthermore, metagenomic analysis showed that OPN induced a higher abundance of Dorea and a lower abundance of Lactobacillus, which were positively and negatively correlated with body weight, respectively. Indeed, the abundance of Dorea was significantly decreased after Lactobacillus administration, suggesting that OPN may regulate the intestinal abundance of Dorea by reducing the colonization of Lactobacillus. We further confirmed that OPN decreased the adhesion of Lactobacillus to intestinal epithelial cells through the Notch signaling pathway. This study suggested that OPN could exacerbate HFD-induced metabolic dysfunctions through the OPN-induced alteration of the gut microbiome. Therefore, OPN could be a potential therapeutic target for metabolic syndrome. American Society for Microbiology 2022-10-27 /pmc/articles/PMC9765578/ /pubmed/36300928 http://dx.doi.org/10.1128/mbio.02531-22 Text en Copyright © 2022 Chen et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Chen, Jianing
Zeng, Ping
Gong, Lan
Zhang, Xujun
Ling, Zongxin
Bi, Kefan
Shi, Fan
Wang, Kaihang
Zhang, Qiong
Jiang, Jingjing
Zhang, Yanhui
Uede, Toshimitsu
El-Omar, Emad M.
Diao, Hongyan
Osteopontin Exacerbates High-Fat Diet-Induced Metabolic Disorders in a Microbiome-Dependent Manner
title Osteopontin Exacerbates High-Fat Diet-Induced Metabolic Disorders in a Microbiome-Dependent Manner
title_full Osteopontin Exacerbates High-Fat Diet-Induced Metabolic Disorders in a Microbiome-Dependent Manner
title_fullStr Osteopontin Exacerbates High-Fat Diet-Induced Metabolic Disorders in a Microbiome-Dependent Manner
title_full_unstemmed Osteopontin Exacerbates High-Fat Diet-Induced Metabolic Disorders in a Microbiome-Dependent Manner
title_short Osteopontin Exacerbates High-Fat Diet-Induced Metabolic Disorders in a Microbiome-Dependent Manner
title_sort osteopontin exacerbates high-fat diet-induced metabolic disorders in a microbiome-dependent manner
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9765578/
https://www.ncbi.nlm.nih.gov/pubmed/36300928
http://dx.doi.org/10.1128/mbio.02531-22
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