Department of Pharmacology, School of Medicine, Case Western Reserve University, Cleveland, OH, USA.
Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY, USA; Northeastern Collaborative Access Team, Argonne National Laboratory, Argonne, IL, USA.
J Lipid Res. 2021;62:100054. doi: 10.1016/j.jlr.2021.100054. Epub 2021 Feb 23.
Present in the small intestine, cellular retinol binding protein 2 (CRBP2) plays an important role in the uptake, transport, and metabolism of dietary retinoids. However, the recent discovery of the interactions of CRBP2 with 2-arachidonoylglycerol and other monoacylglycerols (MAGs) suggests the broader involvement of this protein in lipid metabolism and signaling. To better understand the physiological role of CRBP2, we determined its protein-lipid interactome using a fluorescence-based retinol replacement assay adapted for a high-throughput screening format. By examining chemical libraries of bioactive lipids, we provided evidence for the selective interaction of CRBP2 with a subset of nonretinoid ligands with the highest affinity for sn-1 and sn-2 MAGs that contain polyunsaturated C18-C20 acyl chains. We also elucidated the structure-affinity relationship for nonretinoid ligands of this protein. We further dissect the molecular basis for this ligand's specificity by analyzing high-resolution crystal structures of CRBP2 in complex with selected derivatives of MAGs. Finally, we identify T51 and V62 as key amino acids that enable the broadening of ligand selectivity to MAGs in CRBP2 as compared with retinoid-specific CRBP1. Thus, our study provides the molecular framework for understanding the lipid selectivity and diverse functions of CRBPs in controlling lipid homeostasis.
在小肠中,细胞视黄醇结合蛋白 2(CRBP2)在膳食视黄醇的摄取、转运和代谢中发挥重要作用。然而,最近发现 CRBP2 与 2-花生四烯酸甘油和其他单酰基甘油(MAG)的相互作用表明该蛋白更广泛地参与脂质代谢和信号转导。为了更好地理解 CRBP2 的生理作用,我们使用适应高通量筛选格式的基于荧光的视黄醇替代测定法确定了其蛋白-脂质相互作用组。通过检查生物活性脂质的化学文库,我们为 CRBP2 与一组非视黄醇配体的选择性相互作用提供了证据,这些配体对含有多不饱和 C18-C20 酰基链的 sn-1 和 sn-2 MAG 具有最高亲和力。我们还阐明了该蛋白非视黄醇配体的结构亲和力关系。通过分析 CRBP2 与选定的 MAG 衍生物复合物的高分辨率晶体结构,我们进一步剖析了这种配体特异性的分子基础。最后,我们确定 T51 和 V62 是关键氨基酸,使 CRBP2 中的配体选择性扩展到 MAG 与视黄醇特异性的 CRBP1 相比。因此,我们的研究为理解 CRBPs 在控制脂质动态平衡中的脂质选择性和多种功能提供了分子框架。