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在光感受器外节发育和维持过程中,NPHP1 对分隔蛋白定位的差异需求。

Differential requirement of NPHP1 for compartmentalized protein localization during photoreceptor outer segment development and maintenance.

机构信息

Department of Ophthalmology and Visual Sciences, The University of Iowa Carver College of Medicine, Iowa City, IA, United States of America.

Institute for Vision Research, The University of Iowa, Iowa City, IA, United States of America.

出版信息

PLoS One. 2021 May 7;16(5):e0246358. doi: 10.1371/journal.pone.0246358. eCollection 2021.

Abstract

Nephrocystin (NPHP1) is a ciliary transition zone protein and its ablation causes nephronophthisis (NPHP) with partially penetrant retinal dystrophy. However, the precise requirements of NPHP1 in photoreceptors are not well understood. Here, we characterize retinal degeneration in a mouse model of NPHP1 and show that NPHP1 is required to prevent infiltration of inner segment plasma membrane proteins into the outer segment during the photoreceptor maturation. We demonstrate that Nphp1 gene-trap mutant mice, which were previously described as null, are likely hypomorphs due to the production of a small quantity of functional mRNAs derived from nonsense-associated altered splicing and skipping of two exons including the one harboring the gene-trap. In homozygous mutant animals, inner segment plasma membrane proteins such as syntaxin-3 (STX3), synaptosomal-associated protein 25 (SNAP25), and interphotoreceptor matrix proteoglycan 2 (IMPG2) accumulate in the outer segment when outer segments are actively elongating. This phenotype, however, is spontaneously ameliorated after the outer segment elongation is completed. Consistent with this, some photoreceptor cell loss (~30%) occurs during the photoreceptor maturation period but it stops afterward. We further show that Nphp1 genetically interacts with Cep290, another NPHP gene, and that a reduction of Cep290 gene dose results in retinal degeneration that continues until adulthood in Nphp1 mutant mice. These findings demonstrate that NPHP1 is required for the confinement of inner segment plasma membrane proteins during the outer segment development, but its requirement diminishes as photoreceptors mature. Our study also suggests that additional mutations in other NPHP genes may influence the penetrance of retinopathy in human NPHP1 patients.

摘要

纤毛过渡带蛋白 Nephrin (NPHP1) 的缺失会导致肾单位肾痨 (NPHP),并伴有部分穿透性视网膜营养不良。然而,NPHP1 在光感受器中的具体需求尚不清楚。在此,我们对 NPHP1 小鼠模型中的视网膜变性进行了表征,并表明 NPHP1 在光感受器成熟过程中对于防止内节质膜蛋白向内节段渗透是必需的。我们证明,先前被描述为缺失的 Nphp1 基因捕获突变小鼠,由于产生了少量源自无义相关剪接改变和两个外显子跳过的有功能的 mRNA(包括包含基因捕获的外显子),很可能是功能不全的等位基因。在纯合突变动物中,当外节段积极伸长时,内节质膜蛋白(如突触结合蛋白 3 (STX3)、突触相关蛋白 25 (SNAP25) 和光感受器间基质糖蛋白 2 (IMPG2))在内节段积聚在外节段中。然而,这种表型在完成外节段伸长后会自发改善。与此一致的是,一些光感受器细胞丢失 (~30%) 在光感受器成熟期间发生,但之后停止。我们进一步表明,Nphp1 与另一个 NPHP 基因 Cep290 发生遗传相互作用,并且 Cep290 基因剂量减少会导致 Nphp1 突变小鼠的视网膜变性一直持续到成年。这些发现表明,NPHP1 在发育中的外节段中对于限制内节质膜蛋白是必需的,但随着光感受器的成熟,其需求会减少。我们的研究还表明,其他 NPHP 基因的额外突变可能会影响人类 NPHP1 患者的视网膜病变的穿透性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4066/8104407/9bf6542f0ca1/pone.0246358.g001.jpg

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