Sexually dimorphic response of mice to the Western‐style diet caused by deficiency of fatty acid binding protein 6 (Fabp6)

Abstract Bile acids are natural detergents that aid in the absorption of dietary lipids. Fatty acid binding protein 6 (Fabp6) is a component of the bile acid recovery system that operates in the small intestine. The aim of this study was to determine if Fabp6 deficiency causes dietary fat malabsorpt...

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Main Authors: Salam M. Habib, Brittnee L. Zwicker, Linda Wykes, Luis B. Agellon
Format: Article
Language:English
Published: Wiley 2021-02-01
Series:Physiological Reports
Subjects:
Online Access:https://doi.org/10.14814/phy2.14733
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spelling doaj-8a34014c9e8c4e00979f104c3aa9d0ec2021-02-15T15:52:33ZengWileyPhysiological Reports2051-817X2021-02-0193n/an/a10.14814/phy2.14733Sexually dimorphic response of mice to the Western‐style diet caused by deficiency of fatty acid binding protein 6 (Fabp6)Salam M. Habib0Brittnee L. Zwicker1Linda Wykes2Luis B. Agellon3School of Human Nutrition McGill University Montreal QC CanadaSchool of Human Nutrition McGill University Montreal QC CanadaSchool of Human Nutrition McGill University Montreal QC CanadaSchool of Human Nutrition McGill University Montreal QC CanadaAbstract Bile acids are natural detergents that aid in the absorption of dietary lipids. Fatty acid binding protein 6 (Fabp6) is a component of the bile acid recovery system that operates in the small intestine. The aim of this study was to determine if Fabp6 deficiency causes dietary fat malabsorption. Wild‐type and Fabp6‐deficient mice were fed a Western‐style diet (WSD) or a reference low‐fat diet (LFD) for 10 weeks. The body weight gain, bile acid excretion, fat excretion, energy metabolism, and major gut microbial phyla of the mice were assessed at the end of the controlled diet period. Fabp6−/− mice exhibited enhanced excretion of both bile acids and fat on the WSD but not on the LFD diet. Paradoxically, male Fabp6−/− mice, but not female Fabp6−/− mice, had greater adiposity despite increased fat excretion. Analysis of energy intake and of expenditure by indirect calorimetry revealed sex differences in physical activity level and respiratory quotient, but these did not account for the enhanced adiposity displayed by male Fabp6−/− mice. Analysis of stool DNA showed sex‐specific changes in the abundance of major phyla of bacteria in response to Fabp6 deficiency and WSD feeding. The results obtained indicate that the malabsorption of bile acids that occurs in Fabp6−/− mice is associated with dietary fat malabsorption on the high‐fat diet but not on the low‐fat diet. The WSD induced a sexually dimorphic increase in adiposity displayed by Fabp6−/− mice and sexually distinct pattern of change in gut microbiota composition.https://doi.org/10.14814/phy2.14733bile acid malabsorptionfat malabsorptionfatty acid binding proteingut microbiotaobesitysexual dimorphism
collection DOAJ
language English
format Article
sources DOAJ
author Salam M. Habib
Brittnee L. Zwicker
Linda Wykes
Luis B. Agellon
spellingShingle Salam M. Habib
Brittnee L. Zwicker
Linda Wykes
Luis B. Agellon
Sexually dimorphic response of mice to the Western‐style diet caused by deficiency of fatty acid binding protein 6 (Fabp6)
Physiological Reports
bile acid malabsorption
fat malabsorption
fatty acid binding protein
gut microbiota
obesity
sexual dimorphism
author_facet Salam M. Habib
Brittnee L. Zwicker
Linda Wykes
Luis B. Agellon
author_sort Salam M. Habib
title Sexually dimorphic response of mice to the Western‐style diet caused by deficiency of fatty acid binding protein 6 (Fabp6)
title_short Sexually dimorphic response of mice to the Western‐style diet caused by deficiency of fatty acid binding protein 6 (Fabp6)
title_full Sexually dimorphic response of mice to the Western‐style diet caused by deficiency of fatty acid binding protein 6 (Fabp6)
title_fullStr Sexually dimorphic response of mice to the Western‐style diet caused by deficiency of fatty acid binding protein 6 (Fabp6)
title_full_unstemmed Sexually dimorphic response of mice to the Western‐style diet caused by deficiency of fatty acid binding protein 6 (Fabp6)
title_sort sexually dimorphic response of mice to the western‐style diet caused by deficiency of fatty acid binding protein 6 (fabp6)
publisher Wiley
series Physiological Reports
issn 2051-817X
publishDate 2021-02-01
description Abstract Bile acids are natural detergents that aid in the absorption of dietary lipids. Fatty acid binding protein 6 (Fabp6) is a component of the bile acid recovery system that operates in the small intestine. The aim of this study was to determine if Fabp6 deficiency causes dietary fat malabsorption. Wild‐type and Fabp6‐deficient mice were fed a Western‐style diet (WSD) or a reference low‐fat diet (LFD) for 10 weeks. The body weight gain, bile acid excretion, fat excretion, energy metabolism, and major gut microbial phyla of the mice were assessed at the end of the controlled diet period. Fabp6−/− mice exhibited enhanced excretion of both bile acids and fat on the WSD but not on the LFD diet. Paradoxically, male Fabp6−/− mice, but not female Fabp6−/− mice, had greater adiposity despite increased fat excretion. Analysis of energy intake and of expenditure by indirect calorimetry revealed sex differences in physical activity level and respiratory quotient, but these did not account for the enhanced adiposity displayed by male Fabp6−/− mice. Analysis of stool DNA showed sex‐specific changes in the abundance of major phyla of bacteria in response to Fabp6 deficiency and WSD feeding. The results obtained indicate that the malabsorption of bile acids that occurs in Fabp6−/− mice is associated with dietary fat malabsorption on the high‐fat diet but not on the low‐fat diet. The WSD induced a sexually dimorphic increase in adiposity displayed by Fabp6−/− mice and sexually distinct pattern of change in gut microbiota composition.
topic bile acid malabsorption
fat malabsorption
fatty acid binding protein
gut microbiota
obesity
sexual dimorphism
url https://doi.org/10.14814/phy2.14733
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