首页> 美国卫生研究院文献>Human Molecular Genetics >In-frame deletion in a novel centrosomal/ciliary protein CEP290/NPHP6 perturbs its interaction with RPGR and results in early-onset retinal degeneration in the rd16 mouse
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In-frame deletion in a novel centrosomal/ciliary protein CEP290/NPHP6 perturbs its interaction with RPGR and results in early-onset retinal degeneration in the rd16 mouse

机译:新型中心体/睫状蛋白CEP290 / NPHP6的框内缺失会扰乱其与RPGR的相互作用并导致rd16小鼠的早期视网膜变性

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摘要

Centrosome- and cilia-associated proteins play crucial roles in establishing polarity and regulating intracellular transport in post-mitotic cells. Using genetic mapping and positional candidate strategy, we have identified an in-frame deletion in a novel centrosomal protein CEP290 (also called NPHP6), leading to early-onset retinal degeneration in a newly identified mouse mutant, rd16. We demonstrate that CEP290 localizes primarily to centrosomes of dividing cells and to the connecting cilium of retinal photoreceptors. We show that, in the retina, CEP290 associates with several microtubule-based transport proteins including RPGR, which is mutated in ~15% of patients with retinitis pigmentosa. A truncated CEP290 protein (ΔCEP290) is detected in the rd16 retina, but in considerably reduced amounts; however, the mutant protein exhibits stronger association with specific RPGR isoform(s). Immunogold labeling studies demonstrate the redistribution of RPGR and of phototransduction proteins in the photoreceptors of rd16 retina. Our findings suggest a critical function for CEP290 in ciliary transport and provide insights into the mechanism of early-onset photoreceptor degeneration.
机译:中心体和纤毛相关蛋白在有丝分裂后细胞中建立极性和调节细胞内转运中起关键作用。使用遗传作图法和位置候选策略,我们已经确定了新型中心体蛋白CEP290(也称为NPHP6)的框内缺失,从而导致了新发现的小鼠突变体rd16的早期视网膜变性。我们证明,CEP290主要定位于分裂细胞的中心体和视网膜感光细胞的连接纤毛。我们显示,在视网膜中,CEP290与包括RPGR在内的几种基于微管的转运蛋白相关,后者在约15%的色素性视网膜炎患者中发生突变。在rd16视网膜中检测到截短的CEP290蛋白(ΔCEP290),但数量明显减少;然而,突变蛋白表现出与特定RPGR同工型的更强缔合。免疫金标记研究表明RPGR和光转导蛋白在rd16视网膜的光感受器中重新分布。我们的发现表明CEP290在睫状运输中起关键作用,并为早期发病的感光细胞变性的机理提供了见识。

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