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The C Terminus of Peripherin/rds Participates in Rod Outer Segment Targeting and Alignment of Disk Incisures

机译:Peripherin / rds的C末端参与杆外段的靶向和盘位对准

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Protein targeting is essential for domain specialization in polarized cells. In photoreceptors, three distinct membrane domains exist in the outer segment: plasma membrane, disk lamella, and disk rim. Peripherin/retinal degeneration slow (rds) and rom-1 are photoreceptor-specific members of the transmembrane 4 superfamily of transmembrane proteins, which participate in disk morphogenesis and localize to rod outer segment (ROS) disk rims. We examined the role of their C termini in targeting by generating transgenic Xenopus laevis expressing green fluorescent protein (GFP) fusion proteins. A GFP fusion containing residues 317-336 of peripherin/rds localized uniformly to disk membranes. A longer fusion (residues 307-346) also localized to the ROS but exhibited higher affinity for disk rims than disk lamella. In contrast, the rom-1 C terminus did not promote ROS localization. The GFP-peripherin/rds fusion proteins did not immunoprecipitate with peripherin/rds or rom-1, suggesting this region does not form intermolecular interactions and is not involved in subunit assembly. Presence of GFP-peripherin/rds fusions correlated with disrupted incisures, disordered ROS tips, and membrane whorls. These abnormalities may reflect competition of the fusion proteins for other proteins that interact with peripherin/rds. This work describes novel roles for the C terminus of peripherin/rds in targeting and maintaining ROS structure and its potential involvement in inherited retinal degenerations.
机译:蛋白质靶向对于极化细胞中的域特化至关重要。在感光器中,外部部分存在三个不同的膜结构域:质膜,盘状薄片和盘状边缘。外周蛋白/视网膜变性慢(rds)和rom-1是跨膜蛋白跨膜4超家族的光感受器特异性成员,其参与盘形态发生并定位于杆外节(ROS)盘边缘。我们通过生成表达绿色荧光蛋白(GFP)融合蛋白的转基因非洲爪蟾来检查其C末端在靶向中的作用。包含融合蛋白/ rds的残基317-336的GFP融合物均匀地定位在磁盘膜上。较长的融合蛋白(残基307-346)也位于ROS上,但对磁盘边缘的亲和力高于磁盘薄片。相反,rom-1 C末端不促进ROS定位。 GFP-peripherin / rds融合蛋白不能与perpherinin / rds或rom-1免疫沉淀,表明该区域不形成分子间相互作用,也不参与亚基组装。 GFP-peripherin / rds融合蛋白的存在与损伤破坏,ROS末端紊乱和膜旋涡相关。这些异常可能反映了融合蛋白与与外周蛋白/ rds相互作用的其他蛋白的竞争。这项工作描述了外周血蛋白/ rds C末端在靶向和维持ROS结构及其在遗传性视网膜变性中的潜在作用方面的新作用。

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