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Novel Variant in CEP250 Causes Protein Mislocalization and Leads to Nonsyndromic Autosomal Recessive Type of Progressive Hearing Loss

Genetic hearing loss is the most common hereditary sensorial disorder. Though more than 120 genes associated with deafness have been identified, unveiled causative genes and variants of diverse types of hearing loss remain. Herein, we identified a novel nonsense homozygous variant in CEP250 (c.3511C...

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Autores principales: Kang, Minjin, Kim, Jung Ah, Song, Mee Hyun, Joo, Sun Young, Kim, Se Jin, Jang, Seung Hyun, Lee, Ho, Seong, Je Kyung, Choi, Jae Young, Gee, Heon Yung, Jung, Jinsei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10528078/
https://www.ncbi.nlm.nih.gov/pubmed/37759551
http://dx.doi.org/10.3390/cells12182328
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author Kang, Minjin
Kim, Jung Ah
Song, Mee Hyun
Joo, Sun Young
Kim, Se Jin
Jang, Seung Hyun
Lee, Ho
Seong, Je Kyung
Choi, Jae Young
Gee, Heon Yung
Jung, Jinsei
author_facet Kang, Minjin
Kim, Jung Ah
Song, Mee Hyun
Joo, Sun Young
Kim, Se Jin
Jang, Seung Hyun
Lee, Ho
Seong, Je Kyung
Choi, Jae Young
Gee, Heon Yung
Jung, Jinsei
author_sort Kang, Minjin
collection PubMed
description Genetic hearing loss is the most common hereditary sensorial disorder. Though more than 120 genes associated with deafness have been identified, unveiled causative genes and variants of diverse types of hearing loss remain. Herein, we identified a novel nonsense homozygous variant in CEP250 (c.3511C>T; p.Gln1171Ter) among the family members with progressive moderate sensorineural hearing loss in nonsyndromic autosomal recessive type but without retinal degeneration. CEP250 encodes C-Nap1 protein belonging to the CEP protein family, comprising 30 proteins that play roles in centrosome aggregation and cell cycle progression. The nonsense variant in CEP250 led to the early truncating protein of C-Nap1, which hindered centrosome localization; heterologous expression of CEP250 (c.3511C>T) in NIH3T3 cells within cilia expression condition revealed that the truncating C-Nap1 (p.Gln1171Ter) was not localized at the centrosome but was dispersed in the cytosol. In the murine adult cochlea, Cep250 was expressed in the inner and outer hair cells. Knockout mice of Cep250 showed significant hair cell degeneration and progressive hearing loss in auditory brainstem response. In conclusion, a nonsense variant in CEP250 results in a deficit of centrosome localization and hair cell degeneration in the cochlea, which is associated with the progression of hearing loss in humans and mice.
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spelling pubmed-105280782023-09-28 Novel Variant in CEP250 Causes Protein Mislocalization and Leads to Nonsyndromic Autosomal Recessive Type of Progressive Hearing Loss Kang, Minjin Kim, Jung Ah Song, Mee Hyun Joo, Sun Young Kim, Se Jin Jang, Seung Hyun Lee, Ho Seong, Je Kyung Choi, Jae Young Gee, Heon Yung Jung, Jinsei Cells Article Genetic hearing loss is the most common hereditary sensorial disorder. Though more than 120 genes associated with deafness have been identified, unveiled causative genes and variants of diverse types of hearing loss remain. Herein, we identified a novel nonsense homozygous variant in CEP250 (c.3511C>T; p.Gln1171Ter) among the family members with progressive moderate sensorineural hearing loss in nonsyndromic autosomal recessive type but without retinal degeneration. CEP250 encodes C-Nap1 protein belonging to the CEP protein family, comprising 30 proteins that play roles in centrosome aggregation and cell cycle progression. The nonsense variant in CEP250 led to the early truncating protein of C-Nap1, which hindered centrosome localization; heterologous expression of CEP250 (c.3511C>T) in NIH3T3 cells within cilia expression condition revealed that the truncating C-Nap1 (p.Gln1171Ter) was not localized at the centrosome but was dispersed in the cytosol. In the murine adult cochlea, Cep250 was expressed in the inner and outer hair cells. Knockout mice of Cep250 showed significant hair cell degeneration and progressive hearing loss in auditory brainstem response. In conclusion, a nonsense variant in CEP250 results in a deficit of centrosome localization and hair cell degeneration in the cochlea, which is associated with the progression of hearing loss in humans and mice. MDPI 2023-09-21 /pmc/articles/PMC10528078/ /pubmed/37759551 http://dx.doi.org/10.3390/cells12182328 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kang, Minjin
Kim, Jung Ah
Song, Mee Hyun
Joo, Sun Young
Kim, Se Jin
Jang, Seung Hyun
Lee, Ho
Seong, Je Kyung
Choi, Jae Young
Gee, Heon Yung
Jung, Jinsei
Novel Variant in CEP250 Causes Protein Mislocalization and Leads to Nonsyndromic Autosomal Recessive Type of Progressive Hearing Loss
title Novel Variant in CEP250 Causes Protein Mislocalization and Leads to Nonsyndromic Autosomal Recessive Type of Progressive Hearing Loss
title_full Novel Variant in CEP250 Causes Protein Mislocalization and Leads to Nonsyndromic Autosomal Recessive Type of Progressive Hearing Loss
title_fullStr Novel Variant in CEP250 Causes Protein Mislocalization and Leads to Nonsyndromic Autosomal Recessive Type of Progressive Hearing Loss
title_full_unstemmed Novel Variant in CEP250 Causes Protein Mislocalization and Leads to Nonsyndromic Autosomal Recessive Type of Progressive Hearing Loss
title_short Novel Variant in CEP250 Causes Protein Mislocalization and Leads to Nonsyndromic Autosomal Recessive Type of Progressive Hearing Loss
title_sort novel variant in cep250 causes protein mislocalization and leads to nonsyndromic autosomal recessive type of progressive hearing loss
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10528078/
https://www.ncbi.nlm.nih.gov/pubmed/37759551
http://dx.doi.org/10.3390/cells12182328
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