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Genome-wide CNV analysis uncovers novel pathogenic regions in cohort of five multiplex families with neurodevelopmental disorders

Structural reorganization of chromosomes by genomic duplications and/or deletions are known as copy number variations (CNVs). Pathogenic and disease susceptible CNVs alter gene dosage and its phenotypic expression that often leads to human genetic diseases including Neurological disorders. CNVs affe...

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Autores principales: Mudassir, Behjat Ul, Alotaibi, Mashael Alhumaidi, Kizilbash, Nadeem, Alruwaili, Daliyah, Alruwaili, Anwar, Alenezi, Modhi, Agha, Zehra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10558996/
https://www.ncbi.nlm.nih.gov/pubmed/37810058
http://dx.doi.org/10.1016/j.heliyon.2023.e19718
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author Mudassir, Behjat Ul
Alotaibi, Mashael Alhumaidi
Kizilbash, Nadeem
Alruwaili, Daliyah
Alruwaili, Anwar
Alenezi, Modhi
Agha, Zehra
author_facet Mudassir, Behjat Ul
Alotaibi, Mashael Alhumaidi
Kizilbash, Nadeem
Alruwaili, Daliyah
Alruwaili, Anwar
Alenezi, Modhi
Agha, Zehra
author_sort Mudassir, Behjat Ul
collection PubMed
description Structural reorganization of chromosomes by genomic duplications and/or deletions are known as copy number variations (CNVs). Pathogenic and disease susceptible CNVs alter gene dosage and its phenotypic expression that often leads to human genetic diseases including Neurological disorders. CNVs affecting same common genes in multiple neurodevelopmental disorders can better explain the shared clinical and genetic aetiology across brain diseases. Our study presents the novel copy number variations in a cohort of five multiplex consanguineous families with intellectual disability, microcephaly, ASD, epilepsy, and neurological syndromic features. Cytoscan HD microarray suite has revealed genome wide deletions, duplications and LOH regions which are co-segregating in the family members for the rare neurodevelopmental syndromic phenotypes. This study identifies 1q21.1 microduplication, 16p11.2 microduplication, Xp11.22 microduplication, 4p12 microdeletion and Xq21.1 microdeletion that significantly contribute to primary disease onset and its progression for the first time in Pakistani families. Our study has potential impact on the understanding of pathogenic genetic predisposition for appearance of complex and heterogeneous neurodevelopmental disorders with otherwise unexplained syndromic features. Identification of altered gene dosage across the genome is helpful in improved diagnosis, better disease management in day-to-day life activities of patients with cognitive impairment and genetic counselling of families where consanguinity is a tradition. Our study will contribute to expand the knowledge of genotype-phenotype expression and future gateways in therapeutics and precision medicine research will be open in Pakistan.
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spelling pubmed-105589962023-10-08 Genome-wide CNV analysis uncovers novel pathogenic regions in cohort of five multiplex families with neurodevelopmental disorders Mudassir, Behjat Ul Alotaibi, Mashael Alhumaidi Kizilbash, Nadeem Alruwaili, Daliyah Alruwaili, Anwar Alenezi, Modhi Agha, Zehra Heliyon Research Article Structural reorganization of chromosomes by genomic duplications and/or deletions are known as copy number variations (CNVs). Pathogenic and disease susceptible CNVs alter gene dosage and its phenotypic expression that often leads to human genetic diseases including Neurological disorders. CNVs affecting same common genes in multiple neurodevelopmental disorders can better explain the shared clinical and genetic aetiology across brain diseases. Our study presents the novel copy number variations in a cohort of five multiplex consanguineous families with intellectual disability, microcephaly, ASD, epilepsy, and neurological syndromic features. Cytoscan HD microarray suite has revealed genome wide deletions, duplications and LOH regions which are co-segregating in the family members for the rare neurodevelopmental syndromic phenotypes. This study identifies 1q21.1 microduplication, 16p11.2 microduplication, Xp11.22 microduplication, 4p12 microdeletion and Xq21.1 microdeletion that significantly contribute to primary disease onset and its progression for the first time in Pakistani families. Our study has potential impact on the understanding of pathogenic genetic predisposition for appearance of complex and heterogeneous neurodevelopmental disorders with otherwise unexplained syndromic features. Identification of altered gene dosage across the genome is helpful in improved diagnosis, better disease management in day-to-day life activities of patients with cognitive impairment and genetic counselling of families where consanguinity is a tradition. Our study will contribute to expand the knowledge of genotype-phenotype expression and future gateways in therapeutics and precision medicine research will be open in Pakistan. Elsevier 2023-09-01 /pmc/articles/PMC10558996/ /pubmed/37810058 http://dx.doi.org/10.1016/j.heliyon.2023.e19718 Text en © 2023 Published by Elsevier Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Mudassir, Behjat Ul
Alotaibi, Mashael Alhumaidi
Kizilbash, Nadeem
Alruwaili, Daliyah
Alruwaili, Anwar
Alenezi, Modhi
Agha, Zehra
Genome-wide CNV analysis uncovers novel pathogenic regions in cohort of five multiplex families with neurodevelopmental disorders
title Genome-wide CNV analysis uncovers novel pathogenic regions in cohort of five multiplex families with neurodevelopmental disorders
title_full Genome-wide CNV analysis uncovers novel pathogenic regions in cohort of five multiplex families with neurodevelopmental disorders
title_fullStr Genome-wide CNV analysis uncovers novel pathogenic regions in cohort of five multiplex families with neurodevelopmental disorders
title_full_unstemmed Genome-wide CNV analysis uncovers novel pathogenic regions in cohort of five multiplex families with neurodevelopmental disorders
title_short Genome-wide CNV analysis uncovers novel pathogenic regions in cohort of five multiplex families with neurodevelopmental disorders
title_sort genome-wide cnv analysis uncovers novel pathogenic regions in cohort of five multiplex families with neurodevelopmental disorders
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10558996/
https://www.ncbi.nlm.nih.gov/pubmed/37810058
http://dx.doi.org/10.1016/j.heliyon.2023.e19718
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