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首页> 外文期刊>BMC Biochemistry >Module structure of interphotoreceptor retinoid-binding protein (IRBP)may provide bases for its complex role in the visual cycle-structure/function study of Xenopus IRBP
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Module structure of interphotoreceptor retinoid-binding protein (IRBP)may provide bases for its complex role in the visual cycle-structure/function study of Xenopus IRBP

机译:受体间类视黄醇结合蛋白(IRBP)的模块结构可能为其在非洲爪蟾IRBP的视觉循环结构/功能研究中的复杂作用提供基础

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Background:Interphotoreceptor retinoid-binding protein's(IRBP)remarkable module structure may be critical to its role in mediating the transport of all-trans and 11-cis retinol,and 11-cis retinal between rods, cones,RPE and Müller cells during the visual cycle.We isolated cDNAs for Xenopus IRBP,and expressed and purified its individual modules,module combinations,and the full-length polypeptide.Binding of all-trans retinol,11-cis retinal and 9-(9-anthroyloxy)stearic acid were characterized by fluorescence spectroscopy monitoring ligand-fluorescence enhancement,quenching of endogenous protein fluorescence,and energy transfer.Finally,the X-ray crystal structure of module-2 was used to predict the location of the ligand-binding sites,and compare their structures among modules using homology modeling. Results:The full-length Xenopus IRBP cDNA codes for a polypeptide of 1,197 amino acid residues beginning with a signal peptide followed by four homologous modules each approx to 300 amino acid residues in length.Modules 1 and 3 are more closely related to each other than either is to modules 2 and 4.Modules 1 and 4 are most similar to the N-and C-terminal modules of the two module IRBP of teleosts.Our data are consistent with the model that vertebrate IRBPs arose through two genetic duplication events,but that the middle two modules were lost during the evolution of the ray finned fish.The sequence of the expressed full-length IRBP was confirmed by liquid chromatography-tandem mass spectrometry.The recombinant full-length Xenopus IRBP bound all-trans retinol and 11-cis retinaldehyde at 3 to 4 sites with Kd's of 0.2 to 0.3 mu M,and was active in protecting all-trans retinol from degradation.Module 2 showed selectivity for all-trans retinol over 11-cis retinaldehyde.The binding data are correlated to the results of docking of all-trans-retinol to the crystal structure of Xenopus module 2 suggesting two ligand-binding sites. However,homology modeling of modules 1,3 and 4 indicate that both sites may not be available for binding of ligands in all four modules. Conclusion:Although its four modules are homologous and each capable of supporting ligand-binding activity,structural differences between their ligand-binding domains,and interactions between the modules themselves will be critical to understanding IRBP's complex role in the visual cycle.
机译:背景:感光细胞间类视黄醇结合蛋白(IRBP)显着的模块结构可能对其介导视轴内视杆,视锥细胞,RPE和Müller细胞之间的全反式和11-顺式视黄醇以及11-顺式视网膜的转运至关重要分离爪蟾IRBP的cDNA,并表达和纯化其各个模块,模块组合和全长多肽。表征了全反式视黄醇,11-顺式视网膜和9-(9-蒽氧基)硬脂酸的结合通过荧光光谱监测配体的荧光增强,内源蛋白质荧光猝灭和能量转移。最后,利用模块2的X射线晶体结构预测配体结合位点的位置,并比较模块之间的结构使用同源建模。结果:Xenopus全长IRBP cDNA编码一个1,197个氨基酸残基的多肽,从一个信号肽开始,然后是四个同源模块,每个模块的长度约为300个氨基酸残基,模块1和3彼此之间的亲缘关系比彼此更紧密模块1和模块4与硬骨鱼两个模块IRBP的N端和C端模块最相似。我们的数据与脊椎动物IRBP通过两次遗传复制事件产生的模型一致,但是重组的全长非洲爪蟾IRBP结合了全反式视黄醇和11-顺式视黄醛在3至4个位点,Kd为0.2至0.3μM,并具有保护全反式视黄醇降解的活性。模块2对11:顺式视黄醛具有全反式视黄醇的选择性。与全反式视黄醇与非洲爪蟾模块2的晶体结构对接的结果相关,表明存在两个配体结合位点。但是,模块1、3和4的同源性建模表明,这两个位点可能无法用于所有四个模块中的配体结合。结论:尽管它的四个模块是同源的并且每个模块都能够支持配体结合活性,但是它们的配体结合域之间的结构差异以及模块本身之间的相互作用对于理解IRBP在视觉循环中的复杂作用至关重要。

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