首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Ligand Binding Induces Conformational Changes in Human Cellular Retinol-binding Protein 1 (CRBP1) Revealed by Atomic Resolution Crystal Structures
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Ligand Binding Induces Conformational Changes in Human Cellular Retinol-binding Protein 1 (CRBP1) Revealed by Atomic Resolution Crystal Structures

机译:配体结合诱导通过原子分辨率晶体结构揭示的人类细胞视黄醇结合蛋白1(CRBP1)的构象变化

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摘要

Important in regulating the uptake, storage, and metabolism of retinoids, cellular retinol-binding protein 1 (CRBP1) is essential for trafficking vitamin A through the cytoplasm. However, the molecular details of ligand uptake and targeted release by CRBP1 remain unclear. Here we report the first structure of CRBP1 in a ligand-free form as well as ultra-high resolution structures of this protein bound to either all-trans-retinol or retinylamine, the latter a therapeutic retinoid that prevents light-induced retinal degeneration. Superpositioning of human apo- and holo-CRBP1 revealed major differences within segments surrounding the entrance to the retinoid-binding site. These included α-helix II and hairpin turns between β-strands βC-βD and βE-βF as well as several side chains, such as Phe-57, Tyr-60, and Ile-77, that change their orientations to accommodate the ligand. Additionally, we mapped hydrogen bond networks inside the retinoid-binding cavity and demonstrated their significance for the ligand affinity. Analyses of the crystallographic B-factors indicated several regions with higher backbone mobility in the apoprotein that became more rigid upon retinoid binding. This conformational flexibility of human apo-CRBP1 facilitates interaction with the ligands, whereas the more rigid holoprotein structure protects the labile retinoid moiety during vitamin A transport. These findings suggest a mechanism of induced fit upon ligand binding by mammalian cellular retinol-binding proteins.
机译:细胞视黄醇结合蛋白1(CRBP1)在调节类维生素A的摄取,储存和代谢中起着重要作用,对于通过细胞质运输维生素A至关重要。然而,CRBP1的配体摄取和靶向释放的分子细节仍不清楚。在这里,我们报告无配体形式的CRBP1的第一个结构以及与全反式视黄醇或视黄胺结合的该蛋白的超高分辨率结构,后者是一种可治疗的类视黄醇,可防止光诱导的视网膜变性。人类载脂蛋白和全CRBP1的重叠显示类视色素结合位点入口周围的节段内的主要差异。这些包括α-螺旋II和在β链βC-βD和βE-βF之间的发夹匝以及一些侧链(例如Phe-57,Tyr-60和Ile-77),它们改变了方向以适应配体。此外,我们绘制了维甲酸结合腔内的氢键网络,并证明了它们对配体亲和力的重要性。晶体学B因子的分析表明,载脂蛋白中具有较高骨架移动性的几个区域在类维生素A结合后变得更加刚性。人载脂蛋白-CRBP1的这种构象柔韧性促进了与配体的相互作用,而更坚硬的全蛋白结构则在维生素A运输过程中保护了不稳定的类视黄醇部分。这些发现提示了哺乳动物细胞视黄醇结合蛋白对配体结合的诱导适应的机制。

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