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首页> 外文期刊>Scientific reports. >Rpgrip1 is required for rod outer segment development and ciliary protein trafficking in zebrafish
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Rpgrip1 is required for rod outer segment development and ciliary protein trafficking in zebrafish

机译:Rpgrip1是斑马鱼杆外段发育和睫状蛋白运输的必需条件

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摘要

Mutations in the RPGR-interacting protein 1 (RPGRIP1) gene cause recessive Leber congenital amaurosis (LCA), juvenile retinitis pigmentosa (RP) and cone-rod dystrophy. RPGRIP1 interacts with other retinal disease-causing proteins and has been proposed to have a role in ciliary protein transport; however, its function remains elusive. Here, we describe a new zebrafish model carrying a nonsense mutation in the rpgrip1 gene. Rpgrip1homozygous mutants do not form rod outer segments and display mislocalization of rhodopsin, suggesting a role for RPGRIP1 in rhodopsin-bearing vesicle trafficking. Furthermore, Rab8, the key regulator of rhodopsin ciliary trafficking, was mislocalized in photoreceptor cells of rpgrip1 mutants. The degeneration of rod cells is early onset, followed by the death of cone cells. These phenotypes are similar to that observed in LCA and juvenile RP patients. Our data indicate RPGRIP1 is necessary for rod outer segment development through regulating ciliary protein trafficking. The rpgrip1 mutant zebrafish may provide a platform for developing therapeutic treatments for RP patients.
机译:RPGR相互作用蛋白1(RPGRIP1)基因中的突变会导致隐性Leber先天性黑桃病(LCA),幼年性色素性视网膜炎(RP)和视锥细胞营养不良。 RPGRIP1与其他引起视网膜疾病的蛋白质相互作用,并被认为在睫状蛋白的运输中起重要作用。但是,其功能仍然难以捉摸。在这里,我们描述了一种新的斑马鱼模型,该模型在rpgrip1基因中带有无意义的突变。 Rpgrip1homozygous突变体不形成杆外部段,并显示视紫红质的错误定位,表明RPGRIP1在视紫红质的囊泡运输中的作用。此外,Rab8,视紫红质纤毛运输的关键调节器,在rpgrip1突变体的感光细胞中定位不正确。杆状细胞的变性是较早发作,然后是视锥细胞死亡。这些表型类似于在LCA和青少年RP患者中观察到的表型。我们的数据表明,RPGRIP1对于通过调节睫状蛋白的运输对杆外部节段的发育是必需的。 rpgrip1突变斑马鱼可能为开发针对RP患者的治疗方法提供平台。

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