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Induction of Peroxisomes by Butyrate-Producing Probiotics

We previously found that peroxisomal biogenesis factor 11a (Pex11a) deficiency is associated with a reduction in peroxisome abundance and impaired fatty acid metabolism in hepatocytes, and results in steatosis. In the present study, we investigated whether butyrate induces Pex11a expression and pero...

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Autores principales: Weng, Huachun, Endo, Kosuke, Li, Jiawei, Kito, Naoko, Iwai, Naoharu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4320100/
https://www.ncbi.nlm.nih.gov/pubmed/25659146
http://dx.doi.org/10.1371/journal.pone.0117851
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author Weng, Huachun
Endo, Kosuke
Li, Jiawei
Kito, Naoko
Iwai, Naoharu
author_facet Weng, Huachun
Endo, Kosuke
Li, Jiawei
Kito, Naoko
Iwai, Naoharu
author_sort Weng, Huachun
collection PubMed
description We previously found that peroxisomal biogenesis factor 11a (Pex11a) deficiency is associated with a reduction in peroxisome abundance and impaired fatty acid metabolism in hepatocytes, and results in steatosis. In the present study, we investigated whether butyrate induces Pex11a expression and peroxisome proliferation, and studied its effect on lipid metabolism. C57BL/6 mice fed standard chow or a high-fat diet (HFD) were treated with tributyrin, 4-phelybutyrate acid (4-PBA), or the butyrate-producing probiotics (Clostridium butyricum MIYAIRI 588 [CBM]) plus inulin (dietary fiber), and the body weight, white adipose tissue, serum triglycerides, mRNA expression, and peroxisome abundance were evaluated. Tributyrin or 4-PBA treatment significantly decreased body weight and increased hepatic mRNA expression of peroxisome proliferator-activated receptor-α (PPARα) and Pex11a. In addition, 4-PBA treatment increased peroxisome abundance and the expression of genes involved in peroxisomal fatty acid β-oxidation (acyl-coenzyme A oxidase 1 and hydroxysteroid [17-beta] dehydrogenase 4). CBM and inulin administration reduced adipose tissue mass and serum triglycerides, induced Pex11a, acyl-coenzyme A oxidase 1, and hydroxysteroid (17-beta) dehydrogenase 4 genes, and increased peroxisome abundance in mice fed standard chow or an HFD. In conclusion, elevation of butyrate availability (directly through administration of butyrate or indirectly via administration of butyrate-producing probiotics plus fiber) induces PPARα and Pex11a and the genes involved in peroxisomal fatty acid β-oxidation, increases peroxisome abundance, and improves lipid metabolism. These results may provide a new therapeutic strategy against hyperlipidemia and obesity.
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spelling pubmed-43201002015-02-18 Induction of Peroxisomes by Butyrate-Producing Probiotics Weng, Huachun Endo, Kosuke Li, Jiawei Kito, Naoko Iwai, Naoharu PLoS One Research Article We previously found that peroxisomal biogenesis factor 11a (Pex11a) deficiency is associated with a reduction in peroxisome abundance and impaired fatty acid metabolism in hepatocytes, and results in steatosis. In the present study, we investigated whether butyrate induces Pex11a expression and peroxisome proliferation, and studied its effect on lipid metabolism. C57BL/6 mice fed standard chow or a high-fat diet (HFD) were treated with tributyrin, 4-phelybutyrate acid (4-PBA), or the butyrate-producing probiotics (Clostridium butyricum MIYAIRI 588 [CBM]) plus inulin (dietary fiber), and the body weight, white adipose tissue, serum triglycerides, mRNA expression, and peroxisome abundance were evaluated. Tributyrin or 4-PBA treatment significantly decreased body weight and increased hepatic mRNA expression of peroxisome proliferator-activated receptor-α (PPARα) and Pex11a. In addition, 4-PBA treatment increased peroxisome abundance and the expression of genes involved in peroxisomal fatty acid β-oxidation (acyl-coenzyme A oxidase 1 and hydroxysteroid [17-beta] dehydrogenase 4). CBM and inulin administration reduced adipose tissue mass and serum triglycerides, induced Pex11a, acyl-coenzyme A oxidase 1, and hydroxysteroid (17-beta) dehydrogenase 4 genes, and increased peroxisome abundance in mice fed standard chow or an HFD. In conclusion, elevation of butyrate availability (directly through administration of butyrate or indirectly via administration of butyrate-producing probiotics plus fiber) induces PPARα and Pex11a and the genes involved in peroxisomal fatty acid β-oxidation, increases peroxisome abundance, and improves lipid metabolism. These results may provide a new therapeutic strategy against hyperlipidemia and obesity. Public Library of Science 2015-02-06 /pmc/articles/PMC4320100/ /pubmed/25659146 http://dx.doi.org/10.1371/journal.pone.0117851 Text en © 2015 Weng 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
Weng, Huachun
Endo, Kosuke
Li, Jiawei
Kito, Naoko
Iwai, Naoharu
Induction of Peroxisomes by Butyrate-Producing Probiotics
title Induction of Peroxisomes by Butyrate-Producing Probiotics
title_full Induction of Peroxisomes by Butyrate-Producing Probiotics
title_fullStr Induction of Peroxisomes by Butyrate-Producing Probiotics
title_full_unstemmed Induction of Peroxisomes by Butyrate-Producing Probiotics
title_short Induction of Peroxisomes by Butyrate-Producing Probiotics
title_sort induction of peroxisomes by butyrate-producing probiotics
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4320100/
https://www.ncbi.nlm.nih.gov/pubmed/25659146
http://dx.doi.org/10.1371/journal.pone.0117851
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