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

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 N...

Full description

Bibliographic Details
Main Authors: Poppy Datta, J Thomas Cribbs, Seongjin Seo
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0246358
id doaj-aad0f1acb719432e98c0a24f66eb500c
record_format Article
spelling doaj-aad0f1acb719432e98c0a24f66eb500c2021-05-22T04:30:18ZengPublic Library of Science (PLoS)PLoS ONE1932-62032021-01-01165e024635810.1371/journal.pone.0246358Differential requirement of NPHP1 for compartmentalized protein localization during photoreceptor outer segment development and maintenance.Poppy DattaJ Thomas CribbsSeongjin SeoNephrocystin (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.https://doi.org/10.1371/journal.pone.0246358
collection DOAJ
language English
format Article
sources DOAJ
author Poppy Datta
J Thomas Cribbs
Seongjin Seo
spellingShingle Poppy Datta
J Thomas Cribbs
Seongjin Seo
Differential requirement of NPHP1 for compartmentalized protein localization during photoreceptor outer segment development and maintenance.
PLoS ONE
author_facet Poppy Datta
J Thomas Cribbs
Seongjin Seo
author_sort Poppy Datta
title Differential requirement of NPHP1 for compartmentalized protein localization during photoreceptor outer segment development and maintenance.
title_short Differential requirement of NPHP1 for compartmentalized protein localization during photoreceptor outer segment development and maintenance.
title_full Differential requirement of NPHP1 for compartmentalized protein localization during photoreceptor outer segment development and maintenance.
title_fullStr Differential requirement of NPHP1 for compartmentalized protein localization during photoreceptor outer segment development and maintenance.
title_full_unstemmed Differential requirement of NPHP1 for compartmentalized protein localization during photoreceptor outer segment development and maintenance.
title_sort differential requirement of nphp1 for compartmentalized protein localization during photoreceptor outer segment development and maintenance.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2021-01-01
description 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.
url https://doi.org/10.1371/journal.pone.0246358
work_keys_str_mv AT poppydatta differentialrequirementofnphp1forcompartmentalizedproteinlocalizationduringphotoreceptoroutersegmentdevelopmentandmaintenance
AT jthomascribbs differentialrequirementofnphp1forcompartmentalizedproteinlocalizationduringphotoreceptoroutersegmentdevelopmentandmaintenance
AT seongjinseo differentialrequirementofnphp1forcompartmentalizedproteinlocalizationduringphotoreceptoroutersegmentdevelopmentandmaintenance
_version_ 1721431016862646272