Intestinal epithelial N-acylphosphatidylethanolamine phospholipase D links dietary fat to metabolic adaptations in obesity and steatosis.

Everard, Amandine; Plovier, Hubert; Rastelli, Marialetizia; Van Hul, Matthias; de Wouters d'Oplinter, Alice; Geurts, Lucie; Druart, Céline; Robine, Sylvie et al. · Nat Commun · 2019

basic_science · Level V

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Abstract

Variations in N-acylethanolamines (NAE) levels are associated with obesity and metabolic comorbidities. Their role in the gut remains unclear. Therefore, we generated a mouse model of inducible intestinal epithelial cell (IEC)-specific deletion of N-acylphosphatidylethanolamine phospholipase D (NAPE-PLD), a key enzyme involved in NAE biosynthesis (Napepld<sup>∆IEC</sup>). We discovered that Napepld<sup>∆IEC</sup> mice are hyperphagic upon first high-fat diet (HFD) exposure, and develop exacerbated obesity and steatosis. These mice display hypothalamic Pomc neurons dysfunctions and alterations in intestinal and plasma NAE and 2-acylglycerols. After long-term HFD, Napepld<sup>∆IEC</sup> mice present reduced energy expenditure. The increased steatosis is associated with higher gut and liver lipid absorption. Napepld<sup>∆IEC</sup> mice display altered gut microbiota. Akkermansia muciniphila administration partly counteracts the IEC NAPE-PLD deletion effects. In conclusion, intestinal NAPE-PLD is a key sensor in nutritional adaptation to fat intake, gut-to-brain axis and energy homeostasis and thereby constitutes a novel target to tackle obesity and related disorders.

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