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Prenatal whole exome sequencing detects a new homozygous fukutin (FKTN) mutation in a fetus with an ultrasound suspicion of familial Dandy–Walker malformation

BACKGROUND: Posterior fossa malformations are among the most diagnosed central nervous system (CNS) anomalies detected by ultrasound (US) in prenatal age. We identified the pathogenic gene mutation in a male fetus of 17 weeks of gestation with US suspicion of familial Dandy–Walker spectrum malformat...

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Autores principales: Traversa, Alice, Bernardo, Silvia, Paiardini, Alessandro, Giovannetti, Agnese, Marchionni, Enrica, Genovesi, Maria Luce, Guadagnolo, Daniele, Torres, Barbara, Paolacci, Stefano, Bernardini, Laura, Mazza, Tommaso, Carella, Massimo, Caputo, Viviana, Pizzuti, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6978243/
https://www.ncbi.nlm.nih.gov/pubmed/31756055
http://dx.doi.org/10.1002/mgg3.1054
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author Traversa, Alice
Bernardo, Silvia
Paiardini, Alessandro
Giovannetti, Agnese
Marchionni, Enrica
Genovesi, Maria Luce
Guadagnolo, Daniele
Torres, Barbara
Paolacci, Stefano
Bernardini, Laura
Mazza, Tommaso
Carella, Massimo
Caputo, Viviana
Pizzuti, Antonio
author_facet Traversa, Alice
Bernardo, Silvia
Paiardini, Alessandro
Giovannetti, Agnese
Marchionni, Enrica
Genovesi, Maria Luce
Guadagnolo, Daniele
Torres, Barbara
Paolacci, Stefano
Bernardini, Laura
Mazza, Tommaso
Carella, Massimo
Caputo, Viviana
Pizzuti, Antonio
author_sort Traversa, Alice
collection PubMed
description BACKGROUND: Posterior fossa malformations are among the most diagnosed central nervous system (CNS) anomalies detected by ultrasound (US) in prenatal age. We identified the pathogenic gene mutation in a male fetus of 17 weeks of gestation with US suspicion of familial Dandy–Walker spectrum malformation, using Next Generation Sequencing approach in prenatal diagnosis. METHODS: Whole exome sequencing (WES) approach has been performed on fetal genomic DNA. After reads preprocessing, mapping, variant calling, and annotation, a filtering strategy based on allelic frequency, recessive inheritance, and phenotypic ontologies has been applied. A fetal magnetic resonance imaging (MRI) at 18 weeks of gestation has been performed. An in silico analysis of a potential causative missense variant in the fukutin protein has been carried out through a structural modeling approach. RESULTS: We identified a new homozygous missense mutation in fukutin gene (FKTN, NM_006731.2: c.898G>A; NP_006722.2: p.Gly300Arg). Fetal MRI supported molecular findings. Structural modeling analyses indicated a potential pathogenetic mechanism of the variant, through a reduced activation of the sugar moieties, which in turn impairs transfer to dystroglycan and thus its glycosylation. These findings pointed to a redefinition of the US suspicion of recurrence of Dandy–Walker malformation (DWM) to a muscular dystrophy‐dystroglycanopathy type A4. CONCLUSIONS: The present case confirmed WES as a reliable tool for the prenatal identification of the molecular bases of early‐detected CNS malformations.
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spelling pubmed-69782432020-01-28 Prenatal whole exome sequencing detects a new homozygous fukutin (FKTN) mutation in a fetus with an ultrasound suspicion of familial Dandy–Walker malformation Traversa, Alice Bernardo, Silvia Paiardini, Alessandro Giovannetti, Agnese Marchionni, Enrica Genovesi, Maria Luce Guadagnolo, Daniele Torres, Barbara Paolacci, Stefano Bernardini, Laura Mazza, Tommaso Carella, Massimo Caputo, Viviana Pizzuti, Antonio Mol Genet Genomic Med Clinical Report BACKGROUND: Posterior fossa malformations are among the most diagnosed central nervous system (CNS) anomalies detected by ultrasound (US) in prenatal age. We identified the pathogenic gene mutation in a male fetus of 17 weeks of gestation with US suspicion of familial Dandy–Walker spectrum malformation, using Next Generation Sequencing approach in prenatal diagnosis. METHODS: Whole exome sequencing (WES) approach has been performed on fetal genomic DNA. After reads preprocessing, mapping, variant calling, and annotation, a filtering strategy based on allelic frequency, recessive inheritance, and phenotypic ontologies has been applied. A fetal magnetic resonance imaging (MRI) at 18 weeks of gestation has been performed. An in silico analysis of a potential causative missense variant in the fukutin protein has been carried out through a structural modeling approach. RESULTS: We identified a new homozygous missense mutation in fukutin gene (FKTN, NM_006731.2: c.898G>A; NP_006722.2: p.Gly300Arg). Fetal MRI supported molecular findings. Structural modeling analyses indicated a potential pathogenetic mechanism of the variant, through a reduced activation of the sugar moieties, which in turn impairs transfer to dystroglycan and thus its glycosylation. These findings pointed to a redefinition of the US suspicion of recurrence of Dandy–Walker malformation (DWM) to a muscular dystrophy‐dystroglycanopathy type A4. CONCLUSIONS: The present case confirmed WES as a reliable tool for the prenatal identification of the molecular bases of early‐detected CNS malformations. John Wiley and Sons Inc. 2019-11-22 /pmc/articles/PMC6978243/ /pubmed/31756055 http://dx.doi.org/10.1002/mgg3.1054 Text en © 2019 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals, Inc. 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 Clinical Report
Traversa, Alice
Bernardo, Silvia
Paiardini, Alessandro
Giovannetti, Agnese
Marchionni, Enrica
Genovesi, Maria Luce
Guadagnolo, Daniele
Torres, Barbara
Paolacci, Stefano
Bernardini, Laura
Mazza, Tommaso
Carella, Massimo
Caputo, Viviana
Pizzuti, Antonio
Prenatal whole exome sequencing detects a new homozygous fukutin (FKTN) mutation in a fetus with an ultrasound suspicion of familial Dandy–Walker malformation
title Prenatal whole exome sequencing detects a new homozygous fukutin (FKTN) mutation in a fetus with an ultrasound suspicion of familial Dandy–Walker malformation
title_full Prenatal whole exome sequencing detects a new homozygous fukutin (FKTN) mutation in a fetus with an ultrasound suspicion of familial Dandy–Walker malformation
title_fullStr Prenatal whole exome sequencing detects a new homozygous fukutin (FKTN) mutation in a fetus with an ultrasound suspicion of familial Dandy–Walker malformation
title_full_unstemmed Prenatal whole exome sequencing detects a new homozygous fukutin (FKTN) mutation in a fetus with an ultrasound suspicion of familial Dandy–Walker malformation
title_short Prenatal whole exome sequencing detects a new homozygous fukutin (FKTN) mutation in a fetus with an ultrasound suspicion of familial Dandy–Walker malformation
title_sort prenatal whole exome sequencing detects a new homozygous fukutin (fktn) mutation in a fetus with an ultrasound suspicion of familial dandy–walker malformation
topic Clinical Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6978243/
https://www.ncbi.nlm.nih.gov/pubmed/31756055
http://dx.doi.org/10.1002/mgg3.1054
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