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Effect of Differences in the Microbiome of Cyp17a1-Deficient Mice on Atherosclerotic Background

CYP17A1 is a cytochrome P450 enzyme that has 17-alpha-hydroxylase and C17,20-lyase activities. Cyp17a11 deficiency is associated with high body mass and visceral fat deposition in atherosclerotic female ApoE knockout (KO, d/d or −/−) mice. In the present study, we aimed to investigate the effects of...

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Autores principales: Künstner, Axel, Aherrahrou, Redouane, Hirose, Misa, Bruse, Petra, Ibrahim, Saleh Mohamed, Busch, Hauke, Erdmann, Jeanette, Aherrahrou, Zouhair
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8224745/
https://www.ncbi.nlm.nih.gov/pubmed/34070975
http://dx.doi.org/10.3390/cells10061292
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author Künstner, Axel
Aherrahrou, Redouane
Hirose, Misa
Bruse, Petra
Ibrahim, Saleh Mohamed
Busch, Hauke
Erdmann, Jeanette
Aherrahrou, Zouhair
author_facet Künstner, Axel
Aherrahrou, Redouane
Hirose, Misa
Bruse, Petra
Ibrahim, Saleh Mohamed
Busch, Hauke
Erdmann, Jeanette
Aherrahrou, Zouhair
author_sort Künstner, Axel
collection PubMed
description CYP17A1 is a cytochrome P450 enzyme that has 17-alpha-hydroxylase and C17,20-lyase activities. Cyp17a11 deficiency is associated with high body mass and visceral fat deposition in atherosclerotic female ApoE knockout (KO, d/d or −/−) mice. In the present study, we aimed to investigate the effects of diet and Cyp17a1 genotype on the gut microbiome. Female Cyp17a1 (d/d) × ApoE (d/d) (DKO) and ApoE (d/d) (controls) were fed either standard chow or a Western-type diet (WTD), and we demonstrated the effects of genetics and diet on the body mass of the mice and composition of their gut microbiome. We found a significantly lower alpha diversity after accounting for the ecological network structure in DKO mice and WTD-fed mice compared with chow-fed ApoE(d/d). Furthermore, we found a strong significant positive association of the Firmicutes vs. Bacteroidota ratio with body mass and the circulating total cholesterol and triglyceride concentrations of the mice when feeding the WTD, independent of the Cyp17a1 genotype. Further pathway enrichment and network analyses revealed a substantial effect of Cyp17a1 genotype on associated cardiovascular and obesity-related pathways involving aspartate and L-arginine. Future studies are required to validate these findings and further investigate the role of aspartate/L-arginine pathways in the obesity and body fat distribution in our mouse model.
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spelling pubmed-82247452021-06-25 Effect of Differences in the Microbiome of Cyp17a1-Deficient Mice on Atherosclerotic Background Künstner, Axel Aherrahrou, Redouane Hirose, Misa Bruse, Petra Ibrahim, Saleh Mohamed Busch, Hauke Erdmann, Jeanette Aherrahrou, Zouhair Cells Article CYP17A1 is a cytochrome P450 enzyme that has 17-alpha-hydroxylase and C17,20-lyase activities. Cyp17a11 deficiency is associated with high body mass and visceral fat deposition in atherosclerotic female ApoE knockout (KO, d/d or −/−) mice. In the present study, we aimed to investigate the effects of diet and Cyp17a1 genotype on the gut microbiome. Female Cyp17a1 (d/d) × ApoE (d/d) (DKO) and ApoE (d/d) (controls) were fed either standard chow or a Western-type diet (WTD), and we demonstrated the effects of genetics and diet on the body mass of the mice and composition of their gut microbiome. We found a significantly lower alpha diversity after accounting for the ecological network structure in DKO mice and WTD-fed mice compared with chow-fed ApoE(d/d). Furthermore, we found a strong significant positive association of the Firmicutes vs. Bacteroidota ratio with body mass and the circulating total cholesterol and triglyceride concentrations of the mice when feeding the WTD, independent of the Cyp17a1 genotype. Further pathway enrichment and network analyses revealed a substantial effect of Cyp17a1 genotype on associated cardiovascular and obesity-related pathways involving aspartate and L-arginine. Future studies are required to validate these findings and further investigate the role of aspartate/L-arginine pathways in the obesity and body fat distribution in our mouse model. MDPI 2021-05-23 /pmc/articles/PMC8224745/ /pubmed/34070975 http://dx.doi.org/10.3390/cells10061292 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Künstner, Axel
Aherrahrou, Redouane
Hirose, Misa
Bruse, Petra
Ibrahim, Saleh Mohamed
Busch, Hauke
Erdmann, Jeanette
Aherrahrou, Zouhair
Effect of Differences in the Microbiome of Cyp17a1-Deficient Mice on Atherosclerotic Background
title Effect of Differences in the Microbiome of Cyp17a1-Deficient Mice on Atherosclerotic Background
title_full Effect of Differences in the Microbiome of Cyp17a1-Deficient Mice on Atherosclerotic Background
title_fullStr Effect of Differences in the Microbiome of Cyp17a1-Deficient Mice on Atherosclerotic Background
title_full_unstemmed Effect of Differences in the Microbiome of Cyp17a1-Deficient Mice on Atherosclerotic Background
title_short Effect of Differences in the Microbiome of Cyp17a1-Deficient Mice on Atherosclerotic Background
title_sort effect of differences in the microbiome of cyp17a1-deficient mice on atherosclerotic background
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8224745/
https://www.ncbi.nlm.nih.gov/pubmed/34070975
http://dx.doi.org/10.3390/cells10061292
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