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Whole exome sequencing identified five novel variants in CNTN2, CARS2, ARSA, and CLCN4 leading to epilepsy in consanguineous families

Introduction: Epilepsy is a group of neurological disorders characterized by recurring seizures and fits. The Epilepsy genes can be classified into four distinct groups, based on involvement of these genes in different pathways leading to Epilepsy as a phenotype. Genetically the disease has been ass...

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Autores principales: Abdulkareem, Angham Abdulrhman, Zaman, Qaiser, Khan, Hamza, Khan, Sabar, Rehman, Gauhar, Tariq, Nabeel, Ahmad, Mashal, Owais, Muhammad, Najumuddin, Muthaffar, Osama Yousef, Bibi, Fehmida, Khang, Rin, Ryu, Seung Woo, Naseer, Muhammad Imran, Jelani, Musharraf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10285458/
https://www.ncbi.nlm.nih.gov/pubmed/37359369
http://dx.doi.org/10.3389/fgene.2023.1185065
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author Abdulkareem, Angham Abdulrhman
Zaman, Qaiser
Khan, Hamza
Khan, Sabar
Rehman, Gauhar
Tariq, Nabeel
Ahmad, Mashal
Owais, Muhammad
Najumuddin
Muthaffar, Osama Yousef
Bibi, Fehmida
Khang, Rin
Ryu, Seung Woo
Naseer, Muhammad Imran
Jelani, Musharraf
author_facet Abdulkareem, Angham Abdulrhman
Zaman, Qaiser
Khan, Hamza
Khan, Sabar
Rehman, Gauhar
Tariq, Nabeel
Ahmad, Mashal
Owais, Muhammad
Najumuddin
Muthaffar, Osama Yousef
Bibi, Fehmida
Khang, Rin
Ryu, Seung Woo
Naseer, Muhammad Imran
Jelani, Musharraf
author_sort Abdulkareem, Angham Abdulrhman
collection PubMed
description Introduction: Epilepsy is a group of neurological disorders characterized by recurring seizures and fits. The Epilepsy genes can be classified into four distinct groups, based on involvement of these genes in different pathways leading to Epilepsy as a phenotype. Genetically the disease has been associated with various pathways, leading to pure epilepsy-related disorders caused by CNTN2 variations, or involving physical or systemic issues along with epilepsy caused by CARS2 and ARSA, or developed by genes that are putatively involved in epilepsy lead by CLCN4 variations. Methods: In this study, five families of Pakistani origin (EP-01, EP-02, EP-04, EP-09, and EP-11) were included for molecular diagnosis. Results: Clinical presentations of these patients included neurological symptoms such as delayed development, seizures, regression, myoclonic epilepsy, progressive spastic tetraparesis, vision and hearing impairment, speech problems, muscle fibrillation, tremors, and cognitive decline. Whole exome sequencing in index patients and Sanger sequencing in all available individuals in each family identified four novel homozygous variants in genes CARS2: c.655G>A p.Ala219Thr (EP-01), ARSA: c.338T>C: p.Leu113Pro (EP-02), c.938G>T p.Arg313Leu (EP-11), CNTN2: c.1699G>T p.Glu567Ter (EP-04), and one novel hemizygous variant in gene CLCN4: c.2167C>T p.Arg723Trp (EP-09). Conclusion: To the best of our knowledge these variants were novel and had not been reported in familial epilepsy. These variants were absent in 200 ethnically matched healthy control chromosomes. Three dimensional protein analyses revealed drastic changes in the normal functions of the variant proteins. Furthermore, these variants were designated as “pathogenic” as per guidelines of American College of Medical Genetics 2015. Due to overlapping phenotypes, among the patients, clinical subtyping was not possible. However, whole exome sequencing successfully pinpointed the molecular diagnosis which could be helpful for better management of these patients. Therefore, we recommend that exome sequencing be performed as a first-line molecular diagnostic test in familial cases.
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spelling pubmed-102854582023-06-23 Whole exome sequencing identified five novel variants in CNTN2, CARS2, ARSA, and CLCN4 leading to epilepsy in consanguineous families Abdulkareem, Angham Abdulrhman Zaman, Qaiser Khan, Hamza Khan, Sabar Rehman, Gauhar Tariq, Nabeel Ahmad, Mashal Owais, Muhammad Najumuddin Muthaffar, Osama Yousef Bibi, Fehmida Khang, Rin Ryu, Seung Woo Naseer, Muhammad Imran Jelani, Musharraf Front Genet Genetics Introduction: Epilepsy is a group of neurological disorders characterized by recurring seizures and fits. The Epilepsy genes can be classified into four distinct groups, based on involvement of these genes in different pathways leading to Epilepsy as a phenotype. Genetically the disease has been associated with various pathways, leading to pure epilepsy-related disorders caused by CNTN2 variations, or involving physical or systemic issues along with epilepsy caused by CARS2 and ARSA, or developed by genes that are putatively involved in epilepsy lead by CLCN4 variations. Methods: In this study, five families of Pakistani origin (EP-01, EP-02, EP-04, EP-09, and EP-11) were included for molecular diagnosis. Results: Clinical presentations of these patients included neurological symptoms such as delayed development, seizures, regression, myoclonic epilepsy, progressive spastic tetraparesis, vision and hearing impairment, speech problems, muscle fibrillation, tremors, and cognitive decline. Whole exome sequencing in index patients and Sanger sequencing in all available individuals in each family identified four novel homozygous variants in genes CARS2: c.655G>A p.Ala219Thr (EP-01), ARSA: c.338T>C: p.Leu113Pro (EP-02), c.938G>T p.Arg313Leu (EP-11), CNTN2: c.1699G>T p.Glu567Ter (EP-04), and one novel hemizygous variant in gene CLCN4: c.2167C>T p.Arg723Trp (EP-09). Conclusion: To the best of our knowledge these variants were novel and had not been reported in familial epilepsy. These variants were absent in 200 ethnically matched healthy control chromosomes. Three dimensional protein analyses revealed drastic changes in the normal functions of the variant proteins. Furthermore, these variants were designated as “pathogenic” as per guidelines of American College of Medical Genetics 2015. Due to overlapping phenotypes, among the patients, clinical subtyping was not possible. However, whole exome sequencing successfully pinpointed the molecular diagnosis which could be helpful for better management of these patients. Therefore, we recommend that exome sequencing be performed as a first-line molecular diagnostic test in familial cases. Frontiers Media S.A. 2023-06-08 /pmc/articles/PMC10285458/ /pubmed/37359369 http://dx.doi.org/10.3389/fgene.2023.1185065 Text en Copyright © 2023 Abdulkareem, Zaman, Khan, Khan, Rehman, Tariq, Ahmad, Owais, Najumuddin, Muthaffar, Bibi, Khang, Ryu, Naseer and Jelani. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Abdulkareem, Angham Abdulrhman
Zaman, Qaiser
Khan, Hamza
Khan, Sabar
Rehman, Gauhar
Tariq, Nabeel
Ahmad, Mashal
Owais, Muhammad
Najumuddin
Muthaffar, Osama Yousef
Bibi, Fehmida
Khang, Rin
Ryu, Seung Woo
Naseer, Muhammad Imran
Jelani, Musharraf
Whole exome sequencing identified five novel variants in CNTN2, CARS2, ARSA, and CLCN4 leading to epilepsy in consanguineous families
title Whole exome sequencing identified five novel variants in CNTN2, CARS2, ARSA, and CLCN4 leading to epilepsy in consanguineous families
title_full Whole exome sequencing identified five novel variants in CNTN2, CARS2, ARSA, and CLCN4 leading to epilepsy in consanguineous families
title_fullStr Whole exome sequencing identified five novel variants in CNTN2, CARS2, ARSA, and CLCN4 leading to epilepsy in consanguineous families
title_full_unstemmed Whole exome sequencing identified five novel variants in CNTN2, CARS2, ARSA, and CLCN4 leading to epilepsy in consanguineous families
title_short Whole exome sequencing identified five novel variants in CNTN2, CARS2, ARSA, and CLCN4 leading to epilepsy in consanguineous families
title_sort whole exome sequencing identified five novel variants in cntn2, cars2, arsa, and clcn4 leading to epilepsy in consanguineous families
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10285458/
https://www.ncbi.nlm.nih.gov/pubmed/37359369
http://dx.doi.org/10.3389/fgene.2023.1185065
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