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Heterozygous nonsense ARX mutation in a family highlights the complexity of clinical and molecular diagnosis in case of chromosomal and single gene disorder co‐inheritance

BACKGROUND: Corpus callosum agenesis (ACC) is one of the most frequent Central Nervous System (CNS) malformations. However, genetics underlying isolated forms is still poorly recognized. Here, we report on two female familial cases with partial ACC. The proband shows isolated partial ACC and a mild...

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Autores principales: Traversa, Alice, Marchionni, Enrica, Giovannetti, Agnese, Genovesi, Maria L., Panzironi, Noemi, Margiotti, Katia, Napoli, Giulia, Piceci Sparascio, Francesca, De Luca, Alessandro, Petrizzelli, Francesco, Carella, Massimo, Cardona, Francesco, Bernardo, Silvia, Manganaro, Lucia, Mazza, Tommaso, Pizzuti, Antonio, Caputo, Viviana
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/PMC7434725/
https://www.ncbi.nlm.nih.gov/pubmed/32519823
http://dx.doi.org/10.1002/mgg3.1336
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author Traversa, Alice
Marchionni, Enrica
Giovannetti, Agnese
Genovesi, Maria L.
Panzironi, Noemi
Margiotti, Katia
Napoli, Giulia
Piceci Sparascio, Francesca
De Luca, Alessandro
Petrizzelli, Francesco
Carella, Massimo
Cardona, Francesco
Bernardo, Silvia
Manganaro, Lucia
Mazza, Tommaso
Pizzuti, Antonio
Caputo, Viviana
author_facet Traversa, Alice
Marchionni, Enrica
Giovannetti, Agnese
Genovesi, Maria L.
Panzironi, Noemi
Margiotti, Katia
Napoli, Giulia
Piceci Sparascio, Francesca
De Luca, Alessandro
Petrizzelli, Francesco
Carella, Massimo
Cardona, Francesco
Bernardo, Silvia
Manganaro, Lucia
Mazza, Tommaso
Pizzuti, Antonio
Caputo, Viviana
author_sort Traversa, Alice
collection PubMed
description BACKGROUND: Corpus callosum agenesis (ACC) is one of the most frequent Central Nervous System (CNS) malformations. However, genetics underlying isolated forms is still poorly recognized. Here, we report on two female familial cases with partial ACC. The proband shows isolated partial ACC and a mild neurodevelopmental phenotype. A fetus from a previous interrupted pregnancy exhibited a complex phenotype including partial ACC and the occurrence of a de novo 17q12 microduplication, which was interpreted as probably disease‐causing. METHODS: A trio‐based clinical exome sequencing (CES) was performed. RESULTS: Clinical exome sequencing data analysis led to identifying a heterozygous nonsense variant (NM_139058.3:c.922G>T; NP_620689.1:p.Glu308Ter) in the aristaless related homeobox gene (ARX) in the proband, with a putative de novo occurrence, producing a hypothetical protein lacking two essential domains. Sanger analysis confirmed the wild‐type status of both parents in different tissues, and disclosed the occurrence of the nonsense variant in the fetus of the interrupted pregnancy, suggesting a formerly unrecognized contribution of the ARX mutation to the fetus' phenotype and gonadal or gonadosomatic mosaicism in one of the parents. CONCLUSION: This study describes the phenotype associated with a heterozygous loss of function variant in ARX. Moreover, it highlights the importance of investigating both chromosomal and genetic contributions in cases of complex syndromic phenotypes involving CNS.
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spelling pubmed-74347252020-08-20 Heterozygous nonsense ARX mutation in a family highlights the complexity of clinical and molecular diagnosis in case of chromosomal and single gene disorder co‐inheritance Traversa, Alice Marchionni, Enrica Giovannetti, Agnese Genovesi, Maria L. Panzironi, Noemi Margiotti, Katia Napoli, Giulia Piceci Sparascio, Francesca De Luca, Alessandro Petrizzelli, Francesco Carella, Massimo Cardona, Francesco Bernardo, Silvia Manganaro, Lucia Mazza, Tommaso Pizzuti, Antonio Caputo, Viviana Mol Genet Genomic Med Clinical Reports BACKGROUND: Corpus callosum agenesis (ACC) is one of the most frequent Central Nervous System (CNS) malformations. However, genetics underlying isolated forms is still poorly recognized. Here, we report on two female familial cases with partial ACC. The proband shows isolated partial ACC and a mild neurodevelopmental phenotype. A fetus from a previous interrupted pregnancy exhibited a complex phenotype including partial ACC and the occurrence of a de novo 17q12 microduplication, which was interpreted as probably disease‐causing. METHODS: A trio‐based clinical exome sequencing (CES) was performed. RESULTS: Clinical exome sequencing data analysis led to identifying a heterozygous nonsense variant (NM_139058.3:c.922G>T; NP_620689.1:p.Glu308Ter) in the aristaless related homeobox gene (ARX) in the proband, with a putative de novo occurrence, producing a hypothetical protein lacking two essential domains. Sanger analysis confirmed the wild‐type status of both parents in different tissues, and disclosed the occurrence of the nonsense variant in the fetus of the interrupted pregnancy, suggesting a formerly unrecognized contribution of the ARX mutation to the fetus' phenotype and gonadal or gonadosomatic mosaicism in one of the parents. CONCLUSION: This study describes the phenotype associated with a heterozygous loss of function variant in ARX. Moreover, it highlights the importance of investigating both chromosomal and genetic contributions in cases of complex syndromic phenotypes involving CNS. John Wiley and Sons Inc. 2020-06-10 /pmc/articles/PMC7434725/ /pubmed/32519823 http://dx.doi.org/10.1002/mgg3.1336 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-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Clinical Reports
Traversa, Alice
Marchionni, Enrica
Giovannetti, Agnese
Genovesi, Maria L.
Panzironi, Noemi
Margiotti, Katia
Napoli, Giulia
Piceci Sparascio, Francesca
De Luca, Alessandro
Petrizzelli, Francesco
Carella, Massimo
Cardona, Francesco
Bernardo, Silvia
Manganaro, Lucia
Mazza, Tommaso
Pizzuti, Antonio
Caputo, Viviana
Heterozygous nonsense ARX mutation in a family highlights the complexity of clinical and molecular diagnosis in case of chromosomal and single gene disorder co‐inheritance
title Heterozygous nonsense ARX mutation in a family highlights the complexity of clinical and molecular diagnosis in case of chromosomal and single gene disorder co‐inheritance
title_full Heterozygous nonsense ARX mutation in a family highlights the complexity of clinical and molecular diagnosis in case of chromosomal and single gene disorder co‐inheritance
title_fullStr Heterozygous nonsense ARX mutation in a family highlights the complexity of clinical and molecular diagnosis in case of chromosomal and single gene disorder co‐inheritance
title_full_unstemmed Heterozygous nonsense ARX mutation in a family highlights the complexity of clinical and molecular diagnosis in case of chromosomal and single gene disorder co‐inheritance
title_short Heterozygous nonsense ARX mutation in a family highlights the complexity of clinical and molecular diagnosis in case of chromosomal and single gene disorder co‐inheritance
title_sort heterozygous nonsense arx mutation in a family highlights the complexity of clinical and molecular diagnosis in case of chromosomal and single gene disorder co‐inheritance
topic Clinical Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7434725/
https://www.ncbi.nlm.nih.gov/pubmed/32519823
http://dx.doi.org/10.1002/mgg3.1336
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