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WGS Revealed Novel BBS5 Pathogenic Variants, Missed by WES, Causing Ciliary Structure and Function Defects

Bardet–Biedl syndrome (BBS) is an autosomal recessive ciliopathy that affects multiple organs, leading to retinitis pigmentosa, polydactyly, obesity, renal anomalies, cognitive impairment, and hypogonadism. Until now, biallelic pathogenic variants have been identified in at least 24 genes delineatin...

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Autores principales: Karam, Adella, Delvallée, Clarisse, Estrada-Cuzcano, Alejandro, Geoffroy, Véronique, Lamouche, Jean-Baptiste, Leuvrey, Anne-Sophie, Nourisson, Elsa, Tarabeux, Julien, Stoetzel, Corinne, Scheidecker, Sophie, Porter, Louise Frances, Génin, Emmanuelle, Redon, Richard, Sandron, Florian, Boland, Anne, Deleuze, Jean-François, Le May, Nicolas, Dollfus, Hélène, Muller, Jean
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10218572/
https://www.ncbi.nlm.nih.gov/pubmed/37240074
http://dx.doi.org/10.3390/ijms24108729
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author Karam, Adella
Delvallée, Clarisse
Estrada-Cuzcano, Alejandro
Geoffroy, Véronique
Lamouche, Jean-Baptiste
Leuvrey, Anne-Sophie
Nourisson, Elsa
Tarabeux, Julien
Stoetzel, Corinne
Scheidecker, Sophie
Porter, Louise Frances
Génin, Emmanuelle
Redon, Richard
Sandron, Florian
Boland, Anne
Deleuze, Jean-François
Le May, Nicolas
Dollfus, Hélène
Muller, Jean
author_facet Karam, Adella
Delvallée, Clarisse
Estrada-Cuzcano, Alejandro
Geoffroy, Véronique
Lamouche, Jean-Baptiste
Leuvrey, Anne-Sophie
Nourisson, Elsa
Tarabeux, Julien
Stoetzel, Corinne
Scheidecker, Sophie
Porter, Louise Frances
Génin, Emmanuelle
Redon, Richard
Sandron, Florian
Boland, Anne
Deleuze, Jean-François
Le May, Nicolas
Dollfus, Hélène
Muller, Jean
author_sort Karam, Adella
collection PubMed
description Bardet–Biedl syndrome (BBS) is an autosomal recessive ciliopathy that affects multiple organs, leading to retinitis pigmentosa, polydactyly, obesity, renal anomalies, cognitive impairment, and hypogonadism. Until now, biallelic pathogenic variants have been identified in at least 24 genes delineating the genetic heterogeneity of BBS. Among those, BBS5 is a minor contributor to the mutation load and is one of the eight subunits forming the BBSome, a protein complex implied in protein trafficking within the cilia. This study reports on a European BBS5 patient with a severe BBS phenotype. Genetic analysis was performed using multiple next-generation sequencing (NGS) tests (targeted exome, TES and whole exome, WES), and biallelic pathogenic variants could only be identified using whole-genome sequencing (WGS), including a previously missed large deletion of the first exons. Despite the absence of family samples, the biallelic status of the variants was confirmed. The BBS5 protein’s impact was confirmed on the patient’s cells (presence/absence and size of the cilium) and ciliary function (Sonic Hedgehog pathway). This study highlights the importance of WGS and the challenge of reliable structural variant detection in patients’ genetic explorations as well as functional tests to assess a variant’s pathogenicity.
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spelling pubmed-102185722023-05-27 WGS Revealed Novel BBS5 Pathogenic Variants, Missed by WES, Causing Ciliary Structure and Function Defects Karam, Adella Delvallée, Clarisse Estrada-Cuzcano, Alejandro Geoffroy, Véronique Lamouche, Jean-Baptiste Leuvrey, Anne-Sophie Nourisson, Elsa Tarabeux, Julien Stoetzel, Corinne Scheidecker, Sophie Porter, Louise Frances Génin, Emmanuelle Redon, Richard Sandron, Florian Boland, Anne Deleuze, Jean-François Le May, Nicolas Dollfus, Hélène Muller, Jean Int J Mol Sci Article Bardet–Biedl syndrome (BBS) is an autosomal recessive ciliopathy that affects multiple organs, leading to retinitis pigmentosa, polydactyly, obesity, renal anomalies, cognitive impairment, and hypogonadism. Until now, biallelic pathogenic variants have been identified in at least 24 genes delineating the genetic heterogeneity of BBS. Among those, BBS5 is a minor contributor to the mutation load and is one of the eight subunits forming the BBSome, a protein complex implied in protein trafficking within the cilia. This study reports on a European BBS5 patient with a severe BBS phenotype. Genetic analysis was performed using multiple next-generation sequencing (NGS) tests (targeted exome, TES and whole exome, WES), and biallelic pathogenic variants could only be identified using whole-genome sequencing (WGS), including a previously missed large deletion of the first exons. Despite the absence of family samples, the biallelic status of the variants was confirmed. The BBS5 protein’s impact was confirmed on the patient’s cells (presence/absence and size of the cilium) and ciliary function (Sonic Hedgehog pathway). This study highlights the importance of WGS and the challenge of reliable structural variant detection in patients’ genetic explorations as well as functional tests to assess a variant’s pathogenicity. MDPI 2023-05-13 /pmc/articles/PMC10218572/ /pubmed/37240074 http://dx.doi.org/10.3390/ijms24108729 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
Karam, Adella
Delvallée, Clarisse
Estrada-Cuzcano, Alejandro
Geoffroy, Véronique
Lamouche, Jean-Baptiste
Leuvrey, Anne-Sophie
Nourisson, Elsa
Tarabeux, Julien
Stoetzel, Corinne
Scheidecker, Sophie
Porter, Louise Frances
Génin, Emmanuelle
Redon, Richard
Sandron, Florian
Boland, Anne
Deleuze, Jean-François
Le May, Nicolas
Dollfus, Hélène
Muller, Jean
WGS Revealed Novel BBS5 Pathogenic Variants, Missed by WES, Causing Ciliary Structure and Function Defects
title WGS Revealed Novel BBS5 Pathogenic Variants, Missed by WES, Causing Ciliary Structure and Function Defects
title_full WGS Revealed Novel BBS5 Pathogenic Variants, Missed by WES, Causing Ciliary Structure and Function Defects
title_fullStr WGS Revealed Novel BBS5 Pathogenic Variants, Missed by WES, Causing Ciliary Structure and Function Defects
title_full_unstemmed WGS Revealed Novel BBS5 Pathogenic Variants, Missed by WES, Causing Ciliary Structure and Function Defects
title_short WGS Revealed Novel BBS5 Pathogenic Variants, Missed by WES, Causing Ciliary Structure and Function Defects
title_sort wgs revealed novel bbs5 pathogenic variants, missed by wes, causing ciliary structure and function defects
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10218572/
https://www.ncbi.nlm.nih.gov/pubmed/37240074
http://dx.doi.org/10.3390/ijms24108729
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