Goncalves Aurélie, Gontero Brigitte, Nowicki Marion, Margier Marielle, Masset Gabriel, Amiot Marie-Josèphe, Reboul Emmanuelle
INRA, UMR 1260 "Nutrition, Obesity and Risk of Thrombosis," F-13385 Marseille, France INSERM, UMR 1062, F-13385 Marseille, France Aix-Marseille Université, F-13385 Marseille, France.
Aix-Marseille Université CNRS, BIP, UMR 7281, F-13402 Marseille, France.
J Lipid Res. 2015 Jun;56(6):1123-33. doi: 10.1194/jlr.M057612. Epub 2015 Apr 1.
Scavenger receptors (SRs) like cluster determinant 36 (CD36) and SR class B type I (SR-BI) play a debated role in lipid transport across the intestinal brush border membrane. We used surface plasmon resonance to analyze real-time interactions between the extracellular protein loops and various ligands ranging from single lipid molecules to mixed micelles. Micelles mimicking physiological structures were necessary for optimal binding to both the extracellular loop of CD36 (lCD36) and the extracellular loop of SR-BI (lSR-BI). Cholesterol, phospholipid, and fatty acid micellar content significantly modulated micelle binding to and dissociation from the transporters. In particular, high phospholipid micellar concentrations inhibited micelle binding to both receptors (-53.8 and -74.4% binding at 0.32 mM compared with 0.04 mM for lCD36 and lSR-BI, respectively, P < 0.05). The presence of fatty acids was crucial for micelle interactions with both proteins (94.4 and 81.3% binding with oleic acid for lCD36 and lSR-BI, respectively, P < 0.05) and fatty acid type substitution within the micelles was the component that most impacted micelle binding to the transporters. These effects were partly due to subsequent modifications in micellar size and surface electric charge, and could be correlated to micellar vitamin D uptake by Caco-2 cells. Our findings show for the first time that micellar lipid composition and micellar properties are key factors governing micelle interactions with SRs.
清道夫受体(SRs),如簇分化抗原36(CD36)和B类I型清道夫受体(SR-BI),在脂质跨肠刷状缘膜转运过程中所起的作用存在争议。我们利用表面等离子体共振技术分析了细胞外蛋白环与从单个脂质分子到混合微团等各种配体之间的实时相互作用。模拟生理结构的微团对于与CD36的细胞外环(lCD36)和SR-BI的细胞外环(lSR-BI)的最佳结合是必需的。胆固醇、磷脂和脂肪酸的微团含量显著调节微团与转运蛋白的结合和解离。特别是,高浓度的磷脂微团抑制微团与两种受体的结合(lCD36和lSR-BI在0.32 mM时的结合率分别比0.04 mM时降低了53.8%和74.4%,P < 0.05)。脂肪酸的存在对于微团与两种蛋白的相互作用至关重要(lCD36和lSR-BI与油酸的结合率分别为94.4%和81.3%,P < 0.05),并且微团内脂肪酸类型的替换是对微团与转运蛋白结合影响最大的成分。这些效应部分归因于微团大小和表面电荷的后续变化,并且可能与Caco-2细胞对微团维生素D的摄取相关。我们的研究结果首次表明,微团脂质组成和微团性质是决定微团与清道夫受体相互作用的关键因素。