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Changes in bile acid composition are correlated with reduced intestinal cholesterol uptake in intestine-specific WASH-deficient mice

  • Andries Heida
  • , Theo van Dijk
  • , Marieke Smit
  • , Martijn Koehorst
  • , Mirjam Koster
  • , Niels Kloosterhuis
  • , Rick Havinga
  • , Vincent W Bloks
  • , Justina C Wolters
  • , Alain de Bruin
  • , Jan Albert Kuivenhoven
  • , Jan Freark de Boer
  • , Folkert Kuipers
  • , Bart van de Sluis*
  • *Corresponding author for this work
  • University of Groningen
  • University Medical Center Groningen

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

The Wiskott-Aldrich syndrome protein and SCAR homolog (WASH) complex is a pentameric protein complex localized at endosomes, where it facilitates the transport of numerous receptors from endosomes toward the plasma membrane. Recent studies have shown that the WASH complex plays an essential role in cholesterol and glucose homeostasis in humans and mice. To investigate the physiological importance of intestinal WASH, we ablated the WASH component WASHC1 specifically in murine enterocytes. Male and female intestine-specific WASHC1-deficient mice (Washc1 IKO) were challenged with either a standard chow diet or a high-cholesterol (1.25 %) diet (HCD). Washc1 IKO mice fed a standard diet did not present any apparent phenotype, but when fed an HCD, their hepatic cholesterol levels were ~ 50 % lower compared to those observed in control mice. The intestinal cholesterol absorption was almost 2-fold decreased in Washc1 IKO mice, which translated into increased fecal neutral sterol loss. The intestinal expression of cholesterogenic genes, such as Hmgcs1, Hmgcr, and Ldlr, was significantly higher in Washc1 IKO mice than in control mice and correlated with increased whole-body de novo cholesterol synthesis, likely to compensate for impaired intestinal cholesterol absorption. Unexpectedly, the ratio of biliary 12α-/non-12α-hydroxylated bile acids (BAs) was decreased in Washc1 IKO mice and reversing this reduced ratio by feeding the mice with the HCD supplemented with 0.5 % (w/w) sodium cholate normalized the improvement of hepatic cholesterol levels in Washc1 IKO mice. Our data indicate that the intestinal WASH complex plays an important role in intestinal cholesterol absorption, likely by modulating biliary BA composition.

Original languageEnglish
Article number159445
Pages (from-to)1-11
Number of pages11
JournalBiochimica et Biophysica Acta - Molecular and Cell Biology of Lipids
Volume1869
Issue number2
Early online date10 Dec 2023
DOIs
Publication statusPublished - Mar 2024

Bibliographical note

Publisher Copyright:
© 2023 The Authors

Funding

This study was financially supported by the University Medical Center Groningen (UMCG), partially financed by the European Union ( MSCA-ITN-2020 , 953489 , Acronym EndoConnect coordinated by B.v.d.S), and The Netherlands Cardiovascular Research Initiative : ‘the Dutch Heart Foundation, Dutch Federation of University Medical Centers, The Netherlands Organization for Health Research and Development and the Royal Netherlands Academy of Sciences’ ( CVON2017-2020 ; Acronym Genius2) to J.A.K. and B.v.d.S; ZonMW OC grant (2471032) to J.A.K. and B.v.d.S.; NWO ENW grant (OCENW.M.22.034) to B.v.d.S., J.A.K. is an established investigator of the Netherlands Heart Foundation (2015T068); the Graduate School for Drug Exploration (GUIDE). JFdB is supported by the Nutrition and Health initiative of the University of Groningen . FK is supported by the Netherlands Heart Foundation (IN CONTROL, CVON2018-27 ) and the Noaber Foundation (Lunteren, the Netherlands). The authors would like to thank A. Gerding, R.C. Verzijl, U. Tharehalli Mathada, and D.Y. Vos of the Department of Pediatrics, University of Groningen, University Medical Center Groningen, Groningen, The Netherlands, for their assistance with experiments and data analysis.

FundersFunder number
Dutch Federation of University Medical Centers
GUIDE
Graduate School for Drug Exploration
IN CONTROLCVON2018-27
Royal Netherlands Academy of SciencesCVON2017-2020
Noaber Foundation
European Commission953489, MSCA-ITN-2020
Rijksuniversiteit Groningen
ZonMw2471032
Hartstichting2015T068
Nederlandse Organisatie voor Wetenschappelijk OnderzoekOCENW.M.22.034
Universitair Medisch Centrum Groningen

    Keywords

    • Bile acids
    • Cholesterol
    • Endosome
    • Ezetimibe
    • Intestine

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