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Usher syndrome in Denmark: mutation spectrum and some clinical observations

BACKGROUND: Usher syndrome (USH) is a genetically heterogeneous deafness‐blindness syndrome, divided into three clinical subtypes: USH1, USH2 and USH3. METHODS: Mutations in 21 out of 26 investigated Danish unrelated individuals with USH were identified, using a combination of molecular diagnostic m...

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Autores principales: Dad, Shzeena, Rendtorff, Nanna Dahl, Tranebjærg, Lisbeth, Grønskov, Karen, Karstensen, Helena Gásdal, Brox, Vigdis, Nilssen, Øivind, Roux, Anne‐Françoise, Rosenberg, Thomas, Jensen, Hanne, Møller, Lisbeth Birk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5023938/
https://www.ncbi.nlm.nih.gov/pubmed/27957503
http://dx.doi.org/10.1002/mgg3.228
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author Dad, Shzeena
Rendtorff, Nanna Dahl
Tranebjærg, Lisbeth
Grønskov, Karen
Karstensen, Helena Gásdal
Brox, Vigdis
Nilssen, Øivind
Roux, Anne‐Françoise
Rosenberg, Thomas
Jensen, Hanne
Møller, Lisbeth Birk
author_facet Dad, Shzeena
Rendtorff, Nanna Dahl
Tranebjærg, Lisbeth
Grønskov, Karen
Karstensen, Helena Gásdal
Brox, Vigdis
Nilssen, Øivind
Roux, Anne‐Françoise
Rosenberg, Thomas
Jensen, Hanne
Møller, Lisbeth Birk
author_sort Dad, Shzeena
collection PubMed
description BACKGROUND: Usher syndrome (USH) is a genetically heterogeneous deafness‐blindness syndrome, divided into three clinical subtypes: USH1, USH2 and USH3. METHODS: Mutations in 21 out of 26 investigated Danish unrelated individuals with USH were identified, using a combination of molecular diagnostic methods. RESULTS: Before Next Generation Sequencing (NGS) became available mutations in nine individuals (1 USH1, 7 USH2, 1 USH3) were identified by Sanger sequencing of USH1C,USH2A or CLRN1 or by Arrayed Primer EXtension (APEX) method. Mutations in 12 individuals (7 USH1, 5 USH2) were found by targeted NGS of ten known USH genes. Five novel pathogenic variants were identified. We combined our data with previously published, and obtained an overview of the USH mutation spectrum in Denmark, including 100 unrelated individuals; 32 with USH1, 67 with USH2, and 1 with USH3. Macular edema was observed in 44 of 117 individuals. Olfactory function was tested in 12 individuals and found to be within normal range in all. CONCLUSION: Mutations that lead to USH1 were predominantly identified in MYO7A (75%), whereas all mutations in USH2 cases were identified in USH2A. The MYO7A mutation c.93C>A, p.(Cys31*) accounted for 33% of all USH1 mutations and the USH2A c.2299delG, p.(Glu767Serfs*21) variant accounted for 45% of all USH2 mutations in the Danish cohort.
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spelling pubmed-50239382016-12-12 Usher syndrome in Denmark: mutation spectrum and some clinical observations Dad, Shzeena Rendtorff, Nanna Dahl Tranebjærg, Lisbeth Grønskov, Karen Karstensen, Helena Gásdal Brox, Vigdis Nilssen, Øivind Roux, Anne‐Françoise Rosenberg, Thomas Jensen, Hanne Møller, Lisbeth Birk Mol Genet Genomic Med Original Articles BACKGROUND: Usher syndrome (USH) is a genetically heterogeneous deafness‐blindness syndrome, divided into three clinical subtypes: USH1, USH2 and USH3. METHODS: Mutations in 21 out of 26 investigated Danish unrelated individuals with USH were identified, using a combination of molecular diagnostic methods. RESULTS: Before Next Generation Sequencing (NGS) became available mutations in nine individuals (1 USH1, 7 USH2, 1 USH3) were identified by Sanger sequencing of USH1C,USH2A or CLRN1 or by Arrayed Primer EXtension (APEX) method. Mutations in 12 individuals (7 USH1, 5 USH2) were found by targeted NGS of ten known USH genes. Five novel pathogenic variants were identified. We combined our data with previously published, and obtained an overview of the USH mutation spectrum in Denmark, including 100 unrelated individuals; 32 with USH1, 67 with USH2, and 1 with USH3. Macular edema was observed in 44 of 117 individuals. Olfactory function was tested in 12 individuals and found to be within normal range in all. CONCLUSION: Mutations that lead to USH1 were predominantly identified in MYO7A (75%), whereas all mutations in USH2 cases were identified in USH2A. The MYO7A mutation c.93C>A, p.(Cys31*) accounted for 33% of all USH1 mutations and the USH2A c.2299delG, p.(Glu767Serfs*21) variant accounted for 45% of all USH2 mutations in the Danish cohort. John Wiley and Sons Inc. 2016-06-28 /pmc/articles/PMC5023938/ /pubmed/27957503 http://dx.doi.org/10.1002/mgg3.228 Text en © 2016 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals, Inc. This is an open access article under the terms of the Creative Commons Attribution (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
Dad, Shzeena
Rendtorff, Nanna Dahl
Tranebjærg, Lisbeth
Grønskov, Karen
Karstensen, Helena Gásdal
Brox, Vigdis
Nilssen, Øivind
Roux, Anne‐Françoise
Rosenberg, Thomas
Jensen, Hanne
Møller, Lisbeth Birk
Usher syndrome in Denmark: mutation spectrum and some clinical observations
title Usher syndrome in Denmark: mutation spectrum and some clinical observations
title_full Usher syndrome in Denmark: mutation spectrum and some clinical observations
title_fullStr Usher syndrome in Denmark: mutation spectrum and some clinical observations
title_full_unstemmed Usher syndrome in Denmark: mutation spectrum and some clinical observations
title_short Usher syndrome in Denmark: mutation spectrum and some clinical observations
title_sort usher syndrome in denmark: mutation spectrum and some clinical observations
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5023938/
https://www.ncbi.nlm.nih.gov/pubmed/27957503
http://dx.doi.org/10.1002/mgg3.228
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