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Genomic profiling supports the diagnosis of primary ciliary dyskinesia and reveals novel candidate genes and genetic variants

Primary ciliary dyskinesia (PCD) is a rare inherited autosomal recessive or X-linked disorder that mainly affects lungs. Dysfunction of respiratory cilia causes symptoms such as chronic rhinosinusitis, coughing, rhinitis, conductive hearing loss and recurrent lung infections with bronchiectasis. It...

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Autores principales: Andjelkovic, Marina, Minic, Predrag, Vreca, Misa, Stojiljkovic, Maja, Skakic, Anita, Sovtic, Aleksandar, Rodic, Milan, Skodric-Trifunovic, Vesna, Maric, Nina, Visekruna, Jelena, Spasovski, Vesna, Pavlovic, Sonja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6177184/
https://www.ncbi.nlm.nih.gov/pubmed/30300419
http://dx.doi.org/10.1371/journal.pone.0205422
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author Andjelkovic, Marina
Minic, Predrag
Vreca, Misa
Stojiljkovic, Maja
Skakic, Anita
Sovtic, Aleksandar
Rodic, Milan
Skodric-Trifunovic, Vesna
Maric, Nina
Visekruna, Jelena
Spasovski, Vesna
Pavlovic, Sonja
author_facet Andjelkovic, Marina
Minic, Predrag
Vreca, Misa
Stojiljkovic, Maja
Skakic, Anita
Sovtic, Aleksandar
Rodic, Milan
Skodric-Trifunovic, Vesna
Maric, Nina
Visekruna, Jelena
Spasovski, Vesna
Pavlovic, Sonja
author_sort Andjelkovic, Marina
collection PubMed
description Primary ciliary dyskinesia (PCD) is a rare inherited autosomal recessive or X-linked disorder that mainly affects lungs. Dysfunction of respiratory cilia causes symptoms such as chronic rhinosinusitis, coughing, rhinitis, conductive hearing loss and recurrent lung infections with bronchiectasis. It is now well known that pathogenic genetic changes lead to ciliary dysfunction. Here we report usage of clinical-exome based NGS approach in order to reveal underlying genetic causes in cohort of 21 patient with diagnosis of PCD. By detecting 18 (12 novel) potentially pathogenic genetic variants, we established the genetic cause of 11 (9 unrelated) patients. Genetic variants were detected in six PCD disease-causing genes, as well as in SPAG16 and SPAG17 genes, that were not detected in PCD patients so far, but were related to some symptoms of PCD. The most frequently mutated gene in our cohort was DNAH5 (27.77%). Identified variants were in homozygous, compound heterozygous and trans-heterozygous state. For detailed characterization of one novel homozygous genetic variant in DNAI1 gene (c. 947_948insG, p. Thr318TyrfsTer11), RT-qPCR and Western Blot analysis were performed. Molecular diagnostic approach applied in this study enables analysis of 29 PCD disease-causing and related genes. It resulted in mutation detection rate of 50% and enabled discovery of twelve novel mutations and pointed two possible novel PCD candidate genes.
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spelling pubmed-61771842018-10-19 Genomic profiling supports the diagnosis of primary ciliary dyskinesia and reveals novel candidate genes and genetic variants Andjelkovic, Marina Minic, Predrag Vreca, Misa Stojiljkovic, Maja Skakic, Anita Sovtic, Aleksandar Rodic, Milan Skodric-Trifunovic, Vesna Maric, Nina Visekruna, Jelena Spasovski, Vesna Pavlovic, Sonja PLoS One Research Article Primary ciliary dyskinesia (PCD) is a rare inherited autosomal recessive or X-linked disorder that mainly affects lungs. Dysfunction of respiratory cilia causes symptoms such as chronic rhinosinusitis, coughing, rhinitis, conductive hearing loss and recurrent lung infections with bronchiectasis. It is now well known that pathogenic genetic changes lead to ciliary dysfunction. Here we report usage of clinical-exome based NGS approach in order to reveal underlying genetic causes in cohort of 21 patient with diagnosis of PCD. By detecting 18 (12 novel) potentially pathogenic genetic variants, we established the genetic cause of 11 (9 unrelated) patients. Genetic variants were detected in six PCD disease-causing genes, as well as in SPAG16 and SPAG17 genes, that were not detected in PCD patients so far, but were related to some symptoms of PCD. The most frequently mutated gene in our cohort was DNAH5 (27.77%). Identified variants were in homozygous, compound heterozygous and trans-heterozygous state. For detailed characterization of one novel homozygous genetic variant in DNAI1 gene (c. 947_948insG, p. Thr318TyrfsTer11), RT-qPCR and Western Blot analysis were performed. Molecular diagnostic approach applied in this study enables analysis of 29 PCD disease-causing and related genes. It resulted in mutation detection rate of 50% and enabled discovery of twelve novel mutations and pointed two possible novel PCD candidate genes. Public Library of Science 2018-10-09 /pmc/articles/PMC6177184/ /pubmed/30300419 http://dx.doi.org/10.1371/journal.pone.0205422 Text en © 2018 Andjelkovic et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Andjelkovic, Marina
Minic, Predrag
Vreca, Misa
Stojiljkovic, Maja
Skakic, Anita
Sovtic, Aleksandar
Rodic, Milan
Skodric-Trifunovic, Vesna
Maric, Nina
Visekruna, Jelena
Spasovski, Vesna
Pavlovic, Sonja
Genomic profiling supports the diagnosis of primary ciliary dyskinesia and reveals novel candidate genes and genetic variants
title Genomic profiling supports the diagnosis of primary ciliary dyskinesia and reveals novel candidate genes and genetic variants
title_full Genomic profiling supports the diagnosis of primary ciliary dyskinesia and reveals novel candidate genes and genetic variants
title_fullStr Genomic profiling supports the diagnosis of primary ciliary dyskinesia and reveals novel candidate genes and genetic variants
title_full_unstemmed Genomic profiling supports the diagnosis of primary ciliary dyskinesia and reveals novel candidate genes and genetic variants
title_short Genomic profiling supports the diagnosis of primary ciliary dyskinesia and reveals novel candidate genes and genetic variants
title_sort genomic profiling supports the diagnosis of primary ciliary dyskinesia and reveals novel candidate genes and genetic variants
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6177184/
https://www.ncbi.nlm.nih.gov/pubmed/30300419
http://dx.doi.org/10.1371/journal.pone.0205422
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