ABCG1 orchestrates adipose tissue macrophage plasticity and insulin resistance in obesity by rewiring saturated fatty acid pools

胰岛素抵抗 脂肪组织 脂质体 ABCG1公司 促炎细胞因子 脂毒性 炎症 生物 脂质代谢 细胞生物学 内分泌学 化学 内科学 胰岛素 生物化学 免疫学 ATP结合盒运输机 运输机 医学 基因
作者
Veronica D. Dahik,Pukar KC,Clément Materne,Canelle Reydellet,Marie Lhomme,Céline Cruciani‐Guglielmacci,Jessica Denom,Eric Bun,Maharajah Ponnaiah,Florence Deknuydt,Éric Frisdal,Lise Hardy,Hervé Durand,Isabelle Guillas,Philippe Lesnik,Ivan Gudelj,Gordan Lauc,Maryse Guérin,Anatol Kontush,Antoine Soprani
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science (AAAS)]
卷期号:16 (777): eadi6682-eadi6682 被引量:4
标识
DOI:10.1126/scitranslmed.adi6682
摘要

The mechanisms governing adipose tissue macrophage (ATM) metabolic adaptation during diet-induced obesity (DIO) are poorly understood. In obese adipose tissue, ATMs are exposed to lipid fluxes, which can influence the activation of specific inflammatory and metabolic programs and contribute to the development of obesity-associated insulin resistance and other metabolic disorders. In the present study, we demonstrate that the membrane ATP-binding cassette g1 (Abcg1) transporter controls the ATM functional response to fatty acids (FAs) carried by triglyceride-rich lipoproteins, which are abundant in high-energy diets. Mice genetically lacking Abcg1 in the myeloid lineage presented an ameliorated inflammatory status in adipose tissue and reduced insulin resistance. Abcg1-deficient ATMs exhibited a less inflammatory phenotype accompanied by a low bioenergetic profile and modified FA metabolism. A closer look at the ATM lipidome revealed a shift in the handling of FA pools, including a redirection of saturated FAs from membrane phospholipids to lipid droplets, leading to a reduction in membrane rigidity and neutralization of proinflammatory FAs. ATMs from human individuals with obesity presented the same reciprocal relationship between ABCG1 expression and this inflammatory and metabolic status. Abolition of this protective, anti-inflammatory phenotype in Abcg1-deficient ATMs was achieved through restoration of lipoprotein lipase (Lpl) activity, thus delineating the importance of the Abcg1/Lpl axis in controlling ATM metabolic inflammation. Overall, our study identifies the rewiring of FA pools by Abcg1 as a major pathway orchestrating ATM plasticity and insulin resistance in DIO.
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