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Deleterious Variants in <i>WNT10A</i>, <i>EDAR,</i> and <i>EDA</i> Causing Isolated and Syndromic Tooth Agenesis: A Structural Perspective from Molecular Dynamics Simulations
oleh: Asia Parveen, Sher Alam Khan, Muhammad Usman Mirza, Hina Bashir, Fatima Arshad, Maria Iqbal, Waseem Ahmad, Ahsan Wahab, Amal Fiaz, Sidra Naz, Fareeha Ashraf, Tayyaba Mobeen, Salman Aziz, Syed Shoaib Ahmed, Noor Muhammad, Nehal F. Hassib, Mostafa I. Mostafa, Nagwa E. Gaboon, Roquyya Gul, Saadullah Khan, Matheus Froeyen, Muhammad Shoaib, Naveed Wasif
Format: | Article |
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Diterbitkan: | MDPI AG 2019-10-01 |
Deskripsi
The dental abnormalities are the typical features of many ectodermal dysplasias along with congenital malformations of nails, skin, hair, and sweat glands. However, several reports of non-syndromic/isolated tooth agenesis have also been found in the literature. The characteristic features of hypohidrotic ectodermal dysplasia (HED) comprise of hypodontia/oligodontia, along with hypohidrosis/anhidrosis, and hypotrichosis. Pathogenic variants in <i>EDA</i>, <i>EDAR</i>, <i>EDARADD</i>, and <i>TRAF6</i>, cause the phenotypic expression of HED. Genetic alterations in <i>EDA</i> and <i>WNT10A</i> cause particularly non-syndromic/isolated oligodontia. In the current project, we recruited 57 patients of 17 genetic pedigrees (A-Q) from different geographic regions of the world, including Pakistan, Egypt, Saudi Arabia, and Syria. The molecular investigation of different syndromic and non-syndromic dental conditions, including hypodontia, oligodontia, generalized odontodysplasia, and dental crowding was carried out by using exome and Sanger sequencing. We have identified a novel missense variant (c.311G>A; p.Arg104His) in <i>WNT10A</i> in three oligodontia patients of family A, two novel sequence variants (c.207delinsTT, p.Gly70Trpfs*25 and c.1300T>G; p.Try434Gly) in <i>EDAR</i> in three patients of family B and four patients of family C, respectively. To better understand the structural and functional consequences of missense variants in WNT10A and EDAR on the stability of the proteins, we have performed extensive molecular dynamic (MD) simulations. We have also identified three previously reported pathogenic variants (c.1076T>C; p.Met359Thr), (c.1133C>T; p.Thr378Met) and (c.594_595insC; Gly201Argfs*39) in <i>EDA</i> in family D (four patients), E (two patients) and F (one patient), correspondingly. Presently, our data explain the genetic cause of 18 syndromic and non-syndromic tooth agenesis patients in six autosomal recessive and X-linked pedigrees (A-F), which expand the mutational spectrum of these unique clinical manifestations.