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Activated Drp1-mediated mitochondrial ROS influence the gut microbiome and intestinal barrier after hemorrhagic shock

A role of the mitochondrial dynamin-related protein (Drp1) on gut microbiome composition and intestinal barrier function after hemorrhagic shock has not been identified previously and thus addressed in this study. Here, we used a combination of 16S rRNA gene sequencing and mass spectrometry-based me...

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Autores principales: Duan, Chenyang, Kuang, Lei, Xiang, Xinming, Zhang, Jie, Zhu, Yu, Wu, Yue, Yan, Qingguang, Liu, Liangming, Li, Tao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7053642/
https://www.ncbi.nlm.nih.gov/pubmed/31954373
http://dx.doi.org/10.18632/aging.102690
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author Duan, Chenyang
Kuang, Lei
Xiang, Xinming
Zhang, Jie
Zhu, Yu
Wu, Yue
Yan, Qingguang
Liu, Liangming
Li, Tao
author_facet Duan, Chenyang
Kuang, Lei
Xiang, Xinming
Zhang, Jie
Zhu, Yu
Wu, Yue
Yan, Qingguang
Liu, Liangming
Li, Tao
author_sort Duan, Chenyang
collection PubMed
description A role of the mitochondrial dynamin-related protein (Drp1) on gut microbiome composition and intestinal barrier function after hemorrhagic shock has not been identified previously and thus addressed in this study. Here, we used a combination of 16S rRNA gene sequencing and mass spectrometry-based metabolomics profiling in WT and Drp1 KO mouse models to examine the functional impact of activated Drp1 on the gut microbiome as well as mitochondrial metabolic regulation after hemorrhagic shock. Our data showed that changes in mitochondrial Drp1 activity participated in the regulation of intestinal barrier function after hemorrhagic shock. Activated Drp1 significantly perturbed gut microbiome composition in the Bacteroidetes phylum. The abundance of short-chain fatty acid (SCFA) producing microbes, such as Bacteroides, Butyricimonas and Odoribacter, was markedly decreased in mice after shock, and was inversely correlated with both the distribution of the tight junction protein ZO1 and intestinal permeability. Together, these data suggest that Drp1 activation perturbs the gut microbiome community and SCFA production in a ROS-specific manner and thereby substantially disturbs tight junctions and intestinal barrier function after hemorrhagic shock. Our findings provide novel insights for targeting Drp1-mediated mitochondrial function as well as the microbiome in the treatment of intestinal barrier dysfunction after shock.
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spelling pubmed-70536422020-03-12 Activated Drp1-mediated mitochondrial ROS influence the gut microbiome and intestinal barrier after hemorrhagic shock Duan, Chenyang Kuang, Lei Xiang, Xinming Zhang, Jie Zhu, Yu Wu, Yue Yan, Qingguang Liu, Liangming Li, Tao Aging (Albany NY) Research Paper A role of the mitochondrial dynamin-related protein (Drp1) on gut microbiome composition and intestinal barrier function after hemorrhagic shock has not been identified previously and thus addressed in this study. Here, we used a combination of 16S rRNA gene sequencing and mass spectrometry-based metabolomics profiling in WT and Drp1 KO mouse models to examine the functional impact of activated Drp1 on the gut microbiome as well as mitochondrial metabolic regulation after hemorrhagic shock. Our data showed that changes in mitochondrial Drp1 activity participated in the regulation of intestinal barrier function after hemorrhagic shock. Activated Drp1 significantly perturbed gut microbiome composition in the Bacteroidetes phylum. The abundance of short-chain fatty acid (SCFA) producing microbes, such as Bacteroides, Butyricimonas and Odoribacter, was markedly decreased in mice after shock, and was inversely correlated with both the distribution of the tight junction protein ZO1 and intestinal permeability. Together, these data suggest that Drp1 activation perturbs the gut microbiome community and SCFA production in a ROS-specific manner and thereby substantially disturbs tight junctions and intestinal barrier function after hemorrhagic shock. Our findings provide novel insights for targeting Drp1-mediated mitochondrial function as well as the microbiome in the treatment of intestinal barrier dysfunction after shock. Impact Journals 2020-01-18 /pmc/articles/PMC7053642/ /pubmed/31954373 http://dx.doi.org/10.18632/aging.102690 Text en Copyright © 2020 Duan et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Duan, Chenyang
Kuang, Lei
Xiang, Xinming
Zhang, Jie
Zhu, Yu
Wu, Yue
Yan, Qingguang
Liu, Liangming
Li, Tao
Activated Drp1-mediated mitochondrial ROS influence the gut microbiome and intestinal barrier after hemorrhagic shock
title Activated Drp1-mediated mitochondrial ROS influence the gut microbiome and intestinal barrier after hemorrhagic shock
title_full Activated Drp1-mediated mitochondrial ROS influence the gut microbiome and intestinal barrier after hemorrhagic shock
title_fullStr Activated Drp1-mediated mitochondrial ROS influence the gut microbiome and intestinal barrier after hemorrhagic shock
title_full_unstemmed Activated Drp1-mediated mitochondrial ROS influence the gut microbiome and intestinal barrier after hemorrhagic shock
title_short Activated Drp1-mediated mitochondrial ROS influence the gut microbiome and intestinal barrier after hemorrhagic shock
title_sort activated drp1-mediated mitochondrial ros influence the gut microbiome and intestinal barrier after hemorrhagic shock
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7053642/
https://www.ncbi.nlm.nih.gov/pubmed/31954373
http://dx.doi.org/10.18632/aging.102690
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