| Literature DB >> 33298898 |
Amjad Khan1, Muhammad Umair2, Rania Abdulfattah Sharaf3, Muhammad Ismail Khan4, Amir Ullah5, Safdar Abbas6, Nargis Shaheen7, Muhammad Bilal6, Farooq Ahamd8.
Abstract
Congenital hypothyroidism (CH) is one of the most common hereditary disorders affecting neonates worldwide. CH is a multifactorial complex disorder and can be caused by either environmental factors or genetic factors. We studied one Pakistani family with segregating mutations in CH inherited in an autosomal recessive manner. Using whole-exome sequencing (WES), we found a novel homozygous missense variant (c.2315A>G; p.Tyr772Cys) in the thyroid peroxidase (TPO) gene. Different bioinformatics prediction tools and Sanger sequencing were performed to verify the identified variant. Our findings highlight the importance of this gene in causing CH and mild-intellectual disability (ID) in two affected brothers. WES is a convenient and useful tool for the clinical diagnosis of CH and other associated disorders.Entities:
Year: 2020 PMID: 33298898 PMCID: PMC7695822 DOI: 10.1038/s41439-020-00129-3
Source DB: PubMed Journal: Hum Genome Var ISSN: 2054-345X
Fig. 1Genetic and molecular analysis.
A A consanguineous pedigree showing two affected members (IV: 2 and IV: 5) in the fourth generation with congenital hypothyroidism. Affected individuals in the pedigree are shown with shaded symbols, and unaffected individuals are indicated with open symbols. Double lines indicate a consanguineous union. B Sequence chromatogram showing the missense TPO variant. The red arrow indicates the site of the identified variant in this study. Affected individuals (IV: 2 and IV: 5) are homozygous, parents (III: 1 and III: 2) and two normal brothers (IV: 1 and IV: 4) are heterozygous, and two siblings (IV: 3 and IV: 6) are homozygous normal for the identified variant. C Schematic representation of TPO protein and its domains; arrow indicates the location of the mutation identified in the present study. D Conservation of p.Tyr772 across several species.
Fig. 2TPO protein 3D modeling.
A TPO wild-type sushi domain, B TPO mutant-type sushi domain, C simulation of wild-type and mutant sushi domains of TPO, D TPO wild-type structure, E interaction of wild-type Tyr772 with its surrounding residues, and F interaction of mutant Cys 772 with its surrounding residues.