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Functional and genetic analyses of ZYG11B provide evidences for its involvement in OAVS

BACKGROUND: The Oculo‐Auriculo‐Vertebral Spectrum (OAVS) or Goldenhar Syndrome is an embryonic developmental disorder characterized by hemifacial microsomia associated with auricular, ocular and vertebral malformations. The clinical heterogeneity of this spectrum and its incomplete penetrance limite...

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Autores principales: Tingaud‐Sequeira, Angèle, Trimouille, Aurélien, Marlin, Sandrine, Lopez, Estelle, Berenguer, Marie, Gherbi, Souad, Arveiler, Benoit, Lacombe, Didier, Rooryck, Caroline
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7549578/
https://www.ncbi.nlm.nih.gov/pubmed/32738032
http://dx.doi.org/10.1002/mgg3.1375
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author Tingaud‐Sequeira, Angèle
Trimouille, Aurélien
Marlin, Sandrine
Lopez, Estelle
Berenguer, Marie
Gherbi, Souad
Arveiler, Benoit
Lacombe, Didier
Rooryck, Caroline
author_facet Tingaud‐Sequeira, Angèle
Trimouille, Aurélien
Marlin, Sandrine
Lopez, Estelle
Berenguer, Marie
Gherbi, Souad
Arveiler, Benoit
Lacombe, Didier
Rooryck, Caroline
author_sort Tingaud‐Sequeira, Angèle
collection PubMed
description BACKGROUND: The Oculo‐Auriculo‐Vertebral Spectrum (OAVS) or Goldenhar Syndrome is an embryonic developmental disorder characterized by hemifacial microsomia associated with auricular, ocular and vertebral malformations. The clinical heterogeneity of this spectrum and its incomplete penetrance limited the molecular diagnosis. In this study, we describe a novel causative gene, ZYG11B. METHODS: A sporadic case of OAVS was analyzed by whole exome sequencing in trio strategy. The identified candidate gene, ZYG11B, was screened in 143 patients by next generation sequencing. Overexpression and immunofluorescence of wild‐type and mutated ZYG11B forms were performed in Hela cells. Moreover, morpholinos were used for transient knockdown of its homologue in zebrafish embryo. RESULTS: A nonsense de novo heterozygous variant in ZYG11B, (NM_024646, c.1609G>T, p.Glu537*) was identified in a single OAVS patient. This variant leads in vitro to a truncated protein whose subcellular localization is altered. Transient knockdown of the zebrafish homologue gene confirmed its role in craniofacial cartilages architecture and in notochord development. Moreover, ZYG11B expression regulates a cartilage master regulator, SOX6, and is regulated by Retinoic Acid, a known developmental toxic molecule leading to clinical features of OAVS. CONCLUSION: Based on genetic, cellular and animal model data, we proposed ZYG11B as a novel rare causative gene for OAVS.
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spelling pubmed-75495782020-10-19 Functional and genetic analyses of ZYG11B provide evidences for its involvement in OAVS Tingaud‐Sequeira, Angèle Trimouille, Aurélien Marlin, Sandrine Lopez, Estelle Berenguer, Marie Gherbi, Souad Arveiler, Benoit Lacombe, Didier Rooryck, Caroline Mol Genet Genomic Med Original Articles BACKGROUND: The Oculo‐Auriculo‐Vertebral Spectrum (OAVS) or Goldenhar Syndrome is an embryonic developmental disorder characterized by hemifacial microsomia associated with auricular, ocular and vertebral malformations. The clinical heterogeneity of this spectrum and its incomplete penetrance limited the molecular diagnosis. In this study, we describe a novel causative gene, ZYG11B. METHODS: A sporadic case of OAVS was analyzed by whole exome sequencing in trio strategy. The identified candidate gene, ZYG11B, was screened in 143 patients by next generation sequencing. Overexpression and immunofluorescence of wild‐type and mutated ZYG11B forms were performed in Hela cells. Moreover, morpholinos were used for transient knockdown of its homologue in zebrafish embryo. RESULTS: A nonsense de novo heterozygous variant in ZYG11B, (NM_024646, c.1609G>T, p.Glu537*) was identified in a single OAVS patient. This variant leads in vitro to a truncated protein whose subcellular localization is altered. Transient knockdown of the zebrafish homologue gene confirmed its role in craniofacial cartilages architecture and in notochord development. Moreover, ZYG11B expression regulates a cartilage master regulator, SOX6, and is regulated by Retinoic Acid, a known developmental toxic molecule leading to clinical features of OAVS. CONCLUSION: Based on genetic, cellular and animal model data, we proposed ZYG11B as a novel rare causative gene for OAVS. John Wiley and Sons Inc. 2020-08-01 /pmc/articles/PMC7549578/ /pubmed/32738032 http://dx.doi.org/10.1002/mgg3.1375 Text en © 2020 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals LLC This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Tingaud‐Sequeira, Angèle
Trimouille, Aurélien
Marlin, Sandrine
Lopez, Estelle
Berenguer, Marie
Gherbi, Souad
Arveiler, Benoit
Lacombe, Didier
Rooryck, Caroline
Functional and genetic analyses of ZYG11B provide evidences for its involvement in OAVS
title Functional and genetic analyses of ZYG11B provide evidences for its involvement in OAVS
title_full Functional and genetic analyses of ZYG11B provide evidences for its involvement in OAVS
title_fullStr Functional and genetic analyses of ZYG11B provide evidences for its involvement in OAVS
title_full_unstemmed Functional and genetic analyses of ZYG11B provide evidences for its involvement in OAVS
title_short Functional and genetic analyses of ZYG11B provide evidences for its involvement in OAVS
title_sort functional and genetic analyses of zyg11b provide evidences for its involvement in oavs
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7549578/
https://www.ncbi.nlm.nih.gov/pubmed/32738032
http://dx.doi.org/10.1002/mgg3.1375
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