Ghosh Debashis, Haswell Karen M, Sprada Molly, Gonzalez-Fernandez Federico
Department of Pharmacology, State University of New York Upstate Medical University, Syracuse, NY, USA.
Department of Pharmacology, State University of New York Upstate Medical University, Syracuse, NY, USA.
Exp Eye Res. 2015 Nov;140:149-158. doi: 10.1016/j.exer.2015.08.026. Epub 2015 Sep 4.
Interphotoreceptor retinoid-binding protein (IRBP) has a remarkable role in targeting and protecting all-trans and 11-cis retinol, and 11-cis retinal during the rod and cone visual cycles. Little is known about how the correct retinoid is efficiently delivered and removed from the correct cell at the required time. It has been proposed that different fatty composition at that the outer-segments and retinal-pigmented epithelium have an important role is regulating the delivery and uptake of the visual cycle retinoids at the cell-interphotoreceptor-matrix interface. Although this suggests intriguing mechanisms for the role of local fatty acids in visual-cycle retinoid trafficking, nothing is known about the structural basis of IRBP-fatty acid interactions. Such regulation may be mediated through IRBP's unusual repeating homologous modules, each containing about 300 amino acids. We have been investigating structure-function relationships of Zebrafish IRBP (zIRBP), which has only two tandem modules (z1 and z2), as a model for the more complex four-module mammalian IRBP's. Here we report the first X-ray crystal structure of a teleost IRBP, and the only structure with a bound ligand. The X-ray structure of z1, determined at 1.90 Å resolution, reveals a two-domain organization of the module (domains A and B). A deep hydrophobic pocket with a single bound molecule of oleic acid was identified within the N-terminal domain A. In fluorescence titrations assays, oleic acid displaced all-trans retinol from zIRBP. Our study, which provides the first structure of an IRBP with bound ligand, supports a potential role for fatty acids in regulating retinoid binding.
光感受器间类视黄醇结合蛋白(IRBP)在视杆和视锥视觉循环中对全反式视黄醇、11-顺式视黄醇以及11-顺式视黄醛具有显著的靶向和保护作用。目前对于在所需时间如何将正确的类视黄醇有效地递送至正确的细胞并从其中移除,我们知之甚少。有人提出,视杆细胞外段和视网膜色素上皮细胞不同的脂肪酸组成在调节细胞 - 光感受器间基质界面处视觉循环类视黄醇的递送和摄取方面具有重要作用。尽管这提示了局部脂肪酸在视觉循环类视黄醇转运中作用的有趣机制,但对于IRBP - 脂肪酸相互作用的结构基础却一无所知。这种调节可能是通过IRBP不同寻常的重复同源模块介导的,每个模块包含约300个氨基酸。我们一直在研究斑马鱼IRBP(zIRBP)的结构 - 功能关系,它只有两个串联模块(z1和z2),作为更复杂的四模块哺乳动物IRBP的模型。在此,我们报道了硬骨鱼IRBP的首个X射线晶体结构,也是唯一带有结合配体的结构。以1.90 Å分辨率测定的z1的X射线结构揭示了该模块的双结构域组织(结构域A和B)。在N端结构域A内鉴定出一个带有单个油酸结合分子的深疏水口袋。在荧光滴定分析中,油酸将全反式视黄醇从zIRBP上置换下来。我们的研究提供了首个带有结合配体的IRBP结构,支持了脂肪酸在调节类视黄醇结合方面的潜在作用。