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The First Report of a Missense Variant in RFX2 Causing Non-Syndromic Tooth Agenesis in a Consanguineous Pakistani Family

Background: The syndromic and non-syndromic congenital missing teeth phenotype is termed tooth agenesis. Since tooth agenesis is a heterogeneous disorder hence, the patients show diverse absent teeth phenotypes. Thus identifying novel genes involved in the morphogenesis of ectodermal appendages, inc...

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Autores principales: Khan, Sher Alam, Khan, Saadullah, Muhammad, Noor, Rehman, Zia Ur, Khan, Muhammad Adnan, Nasir, Abdul, Kalsoom, Umm-e-, Khan, Anwar Kamal, Khan, Hassan, Wasif, Naveed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8822170/
https://www.ncbi.nlm.nih.gov/pubmed/35145545
http://dx.doi.org/10.3389/fgene.2021.782653
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author Khan, Sher Alam
Khan, Saadullah
Muhammad, Noor
Rehman, Zia Ur
Khan, Muhammad Adnan
Nasir, Abdul
Kalsoom, Umm-e-
Khan, Anwar Kamal
Khan, Hassan
Wasif, Naveed
author_facet Khan, Sher Alam
Khan, Saadullah
Muhammad, Noor
Rehman, Zia Ur
Khan, Muhammad Adnan
Nasir, Abdul
Kalsoom, Umm-e-
Khan, Anwar Kamal
Khan, Hassan
Wasif, Naveed
author_sort Khan, Sher Alam
collection PubMed
description Background: The syndromic and non-syndromic congenital missing teeth phenotype is termed tooth agenesis. Since tooth agenesis is a heterogeneous disorder hence, the patients show diverse absent teeth phenotypes. Thus identifying novel genes involved in the morphogenesis of ectodermal appendages, including teeth, paves the way for establishing signaling pathways. Methods and Results: We have recruited an autosomal recessive non-syndromic tooth agenesis family with two affected members. The exome sequencing technology identified a novel missense sequence variant c.1421T > C; p.(Ile474Thr) in a regulatory factor X (RFX) family member (RFX2, OMIM: 142,765). During the data analysis eight rare variants on various chromosomal locations were identified, but the co-segregation analysis using Sanger sequencing confirmed the segregation of only two variants RFX2: c.1421T > C; p.(Ile474Thr), DOHH: c.109C > G; p.(Pro37Ala) lying in a common 7.1 MB region of homozygosity on chromosome 19p13.3. Furthermore, the online protein prediction algorithms and protein modeling analysis verified the RFX2 variant as a damaging genetic alteration and ACMG pathogenicity criteria classified it as likely pathogenic. On the other hand, the DOHH variant showed benign outcomes. Conclusion: RFX2 regulates the Hedgehog and fibroblast growth factor signaling pathways, which are involved in the epithelial and mesenchymal interactions during tooth development. Prior animal model studies have confirmed the expression of rfx2 at a developmental stage governing mouth formation. Moreover, its regulatory role and close association with ciliary and non-ciliary genes causing various dental malformations makes it a potential candidate gene for tooth agenesis phenotype. Further studies will contribute to exploring the direct role of RFX2 in human tooth development.
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spelling pubmed-88221702022-02-09 The First Report of a Missense Variant in RFX2 Causing Non-Syndromic Tooth Agenesis in a Consanguineous Pakistani Family Khan, Sher Alam Khan, Saadullah Muhammad, Noor Rehman, Zia Ur Khan, Muhammad Adnan Nasir, Abdul Kalsoom, Umm-e- Khan, Anwar Kamal Khan, Hassan Wasif, Naveed Front Genet Genetics Background: The syndromic and non-syndromic congenital missing teeth phenotype is termed tooth agenesis. Since tooth agenesis is a heterogeneous disorder hence, the patients show diverse absent teeth phenotypes. Thus identifying novel genes involved in the morphogenesis of ectodermal appendages, including teeth, paves the way for establishing signaling pathways. Methods and Results: We have recruited an autosomal recessive non-syndromic tooth agenesis family with two affected members. The exome sequencing technology identified a novel missense sequence variant c.1421T > C; p.(Ile474Thr) in a regulatory factor X (RFX) family member (RFX2, OMIM: 142,765). During the data analysis eight rare variants on various chromosomal locations were identified, but the co-segregation analysis using Sanger sequencing confirmed the segregation of only two variants RFX2: c.1421T > C; p.(Ile474Thr), DOHH: c.109C > G; p.(Pro37Ala) lying in a common 7.1 MB region of homozygosity on chromosome 19p13.3. Furthermore, the online protein prediction algorithms and protein modeling analysis verified the RFX2 variant as a damaging genetic alteration and ACMG pathogenicity criteria classified it as likely pathogenic. On the other hand, the DOHH variant showed benign outcomes. Conclusion: RFX2 regulates the Hedgehog and fibroblast growth factor signaling pathways, which are involved in the epithelial and mesenchymal interactions during tooth development. Prior animal model studies have confirmed the expression of rfx2 at a developmental stage governing mouth formation. Moreover, its regulatory role and close association with ciliary and non-ciliary genes causing various dental malformations makes it a potential candidate gene for tooth agenesis phenotype. Further studies will contribute to exploring the direct role of RFX2 in human tooth development. Frontiers Media S.A. 2022-01-25 /pmc/articles/PMC8822170/ /pubmed/35145545 http://dx.doi.org/10.3389/fgene.2021.782653 Text en Copyright © 2022 Khan, Khan, Muhammad, Rehman, Khan, Nasir, Kalsoom, Khan, Khan and Wasif. 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
Khan, Sher Alam
Khan, Saadullah
Muhammad, Noor
Rehman, Zia Ur
Khan, Muhammad Adnan
Nasir, Abdul
Kalsoom, Umm-e-
Khan, Anwar Kamal
Khan, Hassan
Wasif, Naveed
The First Report of a Missense Variant in RFX2 Causing Non-Syndromic Tooth Agenesis in a Consanguineous Pakistani Family
title The First Report of a Missense Variant in RFX2 Causing Non-Syndromic Tooth Agenesis in a Consanguineous Pakistani Family
title_full The First Report of a Missense Variant in RFX2 Causing Non-Syndromic Tooth Agenesis in a Consanguineous Pakistani Family
title_fullStr The First Report of a Missense Variant in RFX2 Causing Non-Syndromic Tooth Agenesis in a Consanguineous Pakistani Family
title_full_unstemmed The First Report of a Missense Variant in RFX2 Causing Non-Syndromic Tooth Agenesis in a Consanguineous Pakistani Family
title_short The First Report of a Missense Variant in RFX2 Causing Non-Syndromic Tooth Agenesis in a Consanguineous Pakistani Family
title_sort first report of a missense variant in rfx2 causing non-syndromic tooth agenesis in a consanguineous pakistani family
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8822170/
https://www.ncbi.nlm.nih.gov/pubmed/35145545
http://dx.doi.org/10.3389/fgene.2021.782653
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