4.5 Article

Functional characterization of CEP250 variant identified in nonsyndromic retinitis pigmentosa

Journal

HUMAN MUTATION
Volume 40, Issue 8, Pages 1039-1045

Publisher

WILEY
DOI: 10.1002/humu.23759

Keywords

CEP250; cilia; knockin mice; nonsyndromic RP; retinal dysfunction

Funding

  1. National Natural Science Foundation of China [31771390, 81522014, 81870690, 81800857]
  2. National Key R&D Program of China [2017YFA0105300, 2017YFB0403700]
  3. Zhejiang Provincial Natural Science Foundation of China [LD18H120001]
  4. Zhejiang Provincial Key Research and Development Program [2015C03029]
  5. 111 Project [D16011]
  6. Wenzhou Science and Technology Innovation Team Project [C20150004]

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Retinitis pigmentosa (RP) is the most common manifestation of inherited retinal diseases with high degree of genetic, allelic, and phenotypic heterogeneity. CEP250 encodes the C-Nap1 protein and has been associated with various retinal phenotypes. Here, we report the identification of a mutation (c.562C>T, p.R188*) in the CEP250 in a consanguineous family with nonsyndromic RP. To gain insights into the molecular pathomechanism underlying CEP250 defects and the functional relevance of CEP250 variants in humans, we conducted a functional characterization of CEP250 variant using a novel Cep250 knockin mouse line. Remarkably, the disruption of Cep250 resulted in severe impairment of retinal function and significant retinal morphological alterations. The homozygous knockin mice showed significantly reduced retinal thickness and ERG responses. This study not only broadens the spectrum of phenotypes associated with CEP250 mutations, but also, for the first time, elucidates the function of CEP250 in photoreceptors using a newly established animal model.

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