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MFGE8 links absorption of dietary fatty acids with catabolism of enterocyte lipid stores through HNF4γ-dependent transcription of CES enzymes

Enterocytes modulate the extent of postprandial lipemia by storing dietary fats in cytoplasmic lipid droplets (cLDs). We have previously shown that the integrin ligand MFGE8 links absorption of dietary fats with activation of triglyceride (TG) hydrolases that catabolize cLDs for chylomicron producti...

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Autores principales: Datta, Ritwik, Gholampour, Mohammad A., Yang, Christopher D., Volk, Regan, Lin, Sinan, Podolsky, Michael J., Arnold, Thomas, Rieder, Florian, Zaro, Balyn W., Verzi, Michael, Lehner, Richard, Abumrad, Nada, Lizama, Carlos O., Atabai, Kamran
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10138282/
https://www.ncbi.nlm.nih.gov/pubmed/36924494
http://dx.doi.org/10.1016/j.celrep.2023.112249
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author Datta, Ritwik
Gholampour, Mohammad A.
Yang, Christopher D.
Volk, Regan
Lin, Sinan
Podolsky, Michael J.
Arnold, Thomas
Rieder, Florian
Zaro, Balyn W.
Verzi, Michael
Lehner, Richard
Abumrad, Nada
Lizama, Carlos O.
Atabai, Kamran
author_facet Datta, Ritwik
Gholampour, Mohammad A.
Yang, Christopher D.
Volk, Regan
Lin, Sinan
Podolsky, Michael J.
Arnold, Thomas
Rieder, Florian
Zaro, Balyn W.
Verzi, Michael
Lehner, Richard
Abumrad, Nada
Lizama, Carlos O.
Atabai, Kamran
author_sort Datta, Ritwik
collection PubMed
description Enterocytes modulate the extent of postprandial lipemia by storing dietary fats in cytoplasmic lipid droplets (cLDs). We have previously shown that the integrin ligand MFGE8 links absorption of dietary fats with activation of triglyceride (TG) hydrolases that catabolize cLDs for chylomicron production. Here, we identify CES1D as the key hydrolase downstream of the MFGE8-αvβ5 integrin pathway that regulates catabolism of diet-derived cLDs. Mfge8 knockout (KO) enterocytes have reduced CES1D transcript and protein levels and reduced protein levels of the transcription factor HNF4γ. Both Ces1d and Hnf4γ KO mice have decreased enterocyte TG hydrolase activity coupled with retention of TG in cLDs. Mechanistically, MFGE8-dependent fatty acid uptake through CD36 stabilizes HNF4γ protein level; HNF4γ then increases Ces1d transcription. Our work identifies a regulatory network that regulates the severity of postprandial lipemia by linking dietary fat absorption with protein stabilization of a transcription factor that increases expression of hydrolases responsible for catabolizing diet-derived cLDs.
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spelling pubmed-101382822023-04-27 MFGE8 links absorption of dietary fatty acids with catabolism of enterocyte lipid stores through HNF4γ-dependent transcription of CES enzymes Datta, Ritwik Gholampour, Mohammad A. Yang, Christopher D. Volk, Regan Lin, Sinan Podolsky, Michael J. Arnold, Thomas Rieder, Florian Zaro, Balyn W. Verzi, Michael Lehner, Richard Abumrad, Nada Lizama, Carlos O. Atabai, Kamran Cell Rep Article Enterocytes modulate the extent of postprandial lipemia by storing dietary fats in cytoplasmic lipid droplets (cLDs). We have previously shown that the integrin ligand MFGE8 links absorption of dietary fats with activation of triglyceride (TG) hydrolases that catabolize cLDs for chylomicron production. Here, we identify CES1D as the key hydrolase downstream of the MFGE8-αvβ5 integrin pathway that regulates catabolism of diet-derived cLDs. Mfge8 knockout (KO) enterocytes have reduced CES1D transcript and protein levels and reduced protein levels of the transcription factor HNF4γ. Both Ces1d and Hnf4γ KO mice have decreased enterocyte TG hydrolase activity coupled with retention of TG in cLDs. Mechanistically, MFGE8-dependent fatty acid uptake through CD36 stabilizes HNF4γ protein level; HNF4γ then increases Ces1d transcription. Our work identifies a regulatory network that regulates the severity of postprandial lipemia by linking dietary fat absorption with protein stabilization of a transcription factor that increases expression of hydrolases responsible for catabolizing diet-derived cLDs. 2023-03-28 2023-03-15 /pmc/articles/PMC10138282/ /pubmed/36924494 http://dx.doi.org/10.1016/j.celrep.2023.112249 Text en https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Datta, Ritwik
Gholampour, Mohammad A.
Yang, Christopher D.
Volk, Regan
Lin, Sinan
Podolsky, Michael J.
Arnold, Thomas
Rieder, Florian
Zaro, Balyn W.
Verzi, Michael
Lehner, Richard
Abumrad, Nada
Lizama, Carlos O.
Atabai, Kamran
MFGE8 links absorption of dietary fatty acids with catabolism of enterocyte lipid stores through HNF4γ-dependent transcription of CES enzymes
title MFGE8 links absorption of dietary fatty acids with catabolism of enterocyte lipid stores through HNF4γ-dependent transcription of CES enzymes
title_full MFGE8 links absorption of dietary fatty acids with catabolism of enterocyte lipid stores through HNF4γ-dependent transcription of CES enzymes
title_fullStr MFGE8 links absorption of dietary fatty acids with catabolism of enterocyte lipid stores through HNF4γ-dependent transcription of CES enzymes
title_full_unstemmed MFGE8 links absorption of dietary fatty acids with catabolism of enterocyte lipid stores through HNF4γ-dependent transcription of CES enzymes
title_short MFGE8 links absorption of dietary fatty acids with catabolism of enterocyte lipid stores through HNF4γ-dependent transcription of CES enzymes
title_sort mfge8 links absorption of dietary fatty acids with catabolism of enterocyte lipid stores through hnf4γ-dependent transcription of ces enzymes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10138282/
https://www.ncbi.nlm.nih.gov/pubmed/36924494
http://dx.doi.org/10.1016/j.celrep.2023.112249
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