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Novel compound heterozygous mutations in MCPH1 gene causes primary microcephaly in Saudi family

OBJECTIVES: To identify genetic variation involved in primary microcephaly. METHODS: In present study we identified 4 generation Saudi family showing primary microcephaly. We performed whole exome sequencing along with Sanger sequencing to find the genetic defect in this family. This study was condu...

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Autores principales: Naseer, Muhammad I., Rasool, Mahmood, Abdulkareem, Angham A., Bassiouni, Randa I., Algahtani, Hussein, Chaudhary, Adeel G., Al-Qahtani, Mohammad H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Riyadh : Armed Forces Hospital 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8015564/
https://www.ncbi.nlm.nih.gov/pubmed/30351297
http://dx.doi.org/10.17712/nsj.2018.4.20180095
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author Naseer, Muhammad I.
Rasool, Mahmood
Abdulkareem, Angham A.
Bassiouni, Randa I.
Algahtani, Hussein
Chaudhary, Adeel G.
Al-Qahtani, Mohammad H.
author_facet Naseer, Muhammad I.
Rasool, Mahmood
Abdulkareem, Angham A.
Bassiouni, Randa I.
Algahtani, Hussein
Chaudhary, Adeel G.
Al-Qahtani, Mohammad H.
author_sort Naseer, Muhammad I.
collection PubMed
description OBJECTIVES: To identify genetic variation involved in primary microcephaly. METHODS: In present study we identified 4 generation Saudi family showing primary microcephaly. We performed whole exome sequencing along with Sanger sequencing to find the genetic defect in this family. This study was conducted in King Abdulaziz University started from 2016 and the results presented in this manuscript are from one of the family. RESULTS: Two novel missense variants (c.982G>A and c.1273T>A) were identified in heterozygous state in exon 8 of MCPH1 gene. The detected missense variants cause a tyrosine to asparagine substitution of residue 425 and a valine to isoleucine substitution at residue 310. MCPH1 gene encodes a DNA damage response protein. The encoded protein play a role in G2/M DNA damage checkpoint arrest via maintenance of inhibitory phosphorylation of cyclin-dependent kinase 1. The respective mutation was ruled out in 100 control samples. CONCLUSION: We found novel compound heterozygous mutation in Saudi family that will help to build database for genetic mutations in population and pave way to devise strategies to tackle such disorders in future.
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spelling pubmed-80155642021-08-13 Novel compound heterozygous mutations in MCPH1 gene causes primary microcephaly in Saudi family Naseer, Muhammad I. Rasool, Mahmood Abdulkareem, Angham A. Bassiouni, Randa I. Algahtani, Hussein Chaudhary, Adeel G. Al-Qahtani, Mohammad H. Neurosciences (Riyadh) Brief Communication OBJECTIVES: To identify genetic variation involved in primary microcephaly. METHODS: In present study we identified 4 generation Saudi family showing primary microcephaly. We performed whole exome sequencing along with Sanger sequencing to find the genetic defect in this family. This study was conducted in King Abdulaziz University started from 2016 and the results presented in this manuscript are from one of the family. RESULTS: Two novel missense variants (c.982G>A and c.1273T>A) were identified in heterozygous state in exon 8 of MCPH1 gene. The detected missense variants cause a tyrosine to asparagine substitution of residue 425 and a valine to isoleucine substitution at residue 310. MCPH1 gene encodes a DNA damage response protein. The encoded protein play a role in G2/M DNA damage checkpoint arrest via maintenance of inhibitory phosphorylation of cyclin-dependent kinase 1. The respective mutation was ruled out in 100 control samples. CONCLUSION: We found novel compound heterozygous mutation in Saudi family that will help to build database for genetic mutations in population and pave way to devise strategies to tackle such disorders in future. Riyadh : Armed Forces Hospital 2018-10 /pmc/articles/PMC8015564/ /pubmed/30351297 http://dx.doi.org/10.17712/nsj.2018.4.20180095 Text en Copyright: © Neurosciences https://creativecommons.org/licenses/by-nc-sa/3.0/Neurosciences is an Open Access journal and articles published are distributed under the terms of the Creative Commons Attribution-NonCommercial License (CC BY-NC). Readers may copy, distribute, and display the work for non-commercial purposes with the proper citation of the original work.
spellingShingle Brief Communication
Naseer, Muhammad I.
Rasool, Mahmood
Abdulkareem, Angham A.
Bassiouni, Randa I.
Algahtani, Hussein
Chaudhary, Adeel G.
Al-Qahtani, Mohammad H.
Novel compound heterozygous mutations in MCPH1 gene causes primary microcephaly in Saudi family
title Novel compound heterozygous mutations in MCPH1 gene causes primary microcephaly in Saudi family
title_full Novel compound heterozygous mutations in MCPH1 gene causes primary microcephaly in Saudi family
title_fullStr Novel compound heterozygous mutations in MCPH1 gene causes primary microcephaly in Saudi family
title_full_unstemmed Novel compound heterozygous mutations in MCPH1 gene causes primary microcephaly in Saudi family
title_short Novel compound heterozygous mutations in MCPH1 gene causes primary microcephaly in Saudi family
title_sort novel compound heterozygous mutations in mcph1 gene causes primary microcephaly in saudi family
topic Brief Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8015564/
https://www.ncbi.nlm.nih.gov/pubmed/30351297
http://dx.doi.org/10.17712/nsj.2018.4.20180095
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