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Deletion of lysophosphatidylcholine acyltransferase 3 in myeloid cells worsens hepatic steatosis after a high-fat diet

Authors :
Thibaut Bourgeois
Antoine Jalil
Charles Thomas
Charlène Magnani
Naig Le Guern
Thomas Gautier
Jean-Paul Pais de Barros
Victoria Bergas
Hélène Choubley
Loïc Mazzeo
Louise Menegaut
Lorène Josiane Lebrun
Kévin Van Dongen
Marion Xolin
Tony Jourdan
Chloé Buch
Jérome Labbé
Philippe Saas
Laurent Lagrost
David Masson
Jacques Grober
Source :
Journal of Lipid Research, Vol 62, Iss , Pp 100013- (2021)
Publication Year :
2021
Publisher :
Elsevier, 2021.

Abstract

Recent studies have highlighted an important role for lysophosphatidylcholine acyltransferase 3 (LPCAT3) in controlling the PUFA composition of cell membranes in the liver and intestine. In these organs, LPCAT3 critically supports cell-membrane-associated processes such as lipid absorption or lipoprotein secretion. However, the role of LPCAT3 in macrophages remains controversial. Here, we investigated LPCAT3's role in macrophages both in vitro and in vivo in mice with atherosclerosis and obesity. To accomplish this, we used the LysMCre strategy to develop a mouse model with conditional Lpcat3 deficiency in myeloid cells (Lpcat3KOMac). We observed that partial Lpcat3 deficiency (approximately 75% reduction) in macrophages alters the PUFA composition of all phospholipid (PL) subclasses, including phosphatidylinositols and phosphatidylserines. A reduced incorporation of C20 PUFAs (mainly arachidonic acid [AA]) into PLs was associated with a redistribution of these FAs toward other cellular lipids such as cholesteryl esters. Lpcat3 deficiency had no obvious impact on macrophage inflammatory response or endoplasmic reticulum (ER) stress; however, Lpcat3KOMac macrophages exhibited a reduction in cholesterol efflux in vitro. In vivo, myeloid Lpcat3 deficiency did not affect atherosclerosis development in LDL receptor deficient mouse (Ldlr−/−) mice. Lpcat3KOMac mice on a high-fat diet displayed a mild increase in hepatic steatosis associated with alterations in several liver metabolic pathways and in liver eicosanoid composition. We conclude that alterations in AA metabolism along with myeloid Lpcat3 deficiency may secondarily affect AA homeostasis in the whole liver, leading to metabolic disorders and triglyceride accumulation.

Details

Language :
English
ISSN :
00222275
Volume :
62
Issue :
100013-
Database :
Directory of Open Access Journals
Journal :
Journal of Lipid Research
Publication Type :
Academic Journal
Accession number :
edsdoj.83c4b2a37855418097b19c9a61a1428a
Document Type :
article
Full Text :
https://doi.org/10.1194/jlr.RA120000737