Molecular basis of thyroid dyshormonogenesis: genetic screening in population-based Japanese patients
Satoshi Narumi1, Koji Muroya, Yumi Asakura
1Department of Pediatrics, Keio University School of Medicine, 35 Shinanomachi, Shinjuku-ku, Tokyo 160-8582, Japan.
Context:
Inborn errors of thyroid hormone biosynthesis are collectively referred to as thyroid dyshormonogenesis (DH). Seven genes have been implicated in DH, including the dual oxidase 2 gene (DUOX2), the thyroglobulin gene (TG), and the thyroid peroxidase gene (TPO).
Objective:
We aimed to define the prevalence and phenotypic spectrum of DH with single gene mutations.
Subjects And Methods:
A population-based cohort of 102 patients with permanent congenital hypothyroidism was enrolled. Fourteen were diagnosed as DH and were analyzed for the seven causative genes including DUOX2, TG, and TPO. Several common mutations were screened in the remaining 88 patients. Pathogenicity of single amino acid mutations was verified in vitro.
Results:
We identified four, five, and two patients with seemingly biallelic mutations in DUOX2, TG, and TPO, respectively. We also found two patients having one heterozygous DUOX2 mutation and one uncommon single-nucleotide polymorphism (SNP) p.H678R (rs57659670, allele frequency 0.035) and another two patients with homozygous p.H678R. Expression experiments and RT-PCR revealed that p.H678R is a functional SNP with theoretical 40% loss of function, supporting a role of p.H678R in the onset of DH. As for clinical phenotypes, patients with inactive DUOX2 alleles (mutations and/or p.H678R) showed characteristic time-dependent improvement of thyroid function and morphology. All three evaluated patients had a negative result in the perchlorate test.
Conclusions:
Mutations (or a functional SNP) in DUOX2, TG, or TPO were observed in 93% (95% confidence interval = 70-99%) of DH patients. Inactive DUOX2 alleles cause a broader phenotypic spectrum than currently accepted.
Insights
Thyroid dyshormonogenesis (DH) is often caused by mutations in DUOX2, TG, or TPO genes. A functional single nucleotide polymorphism (SNP) in DUOX2 expands the known genetic causes of DH and its phenotypic spectrum.
Area of Science:
- Genetics
- Endocrinology
- Molecular Biology
Background:
- Thyroid dyshormonogenesis (DH) comprises inborn errors of thyroid hormone biosynthesis.
- Seven genes are implicated in DH, including DUOX2, TG, and TPO.
Purpose of the Study:
- To determine the prevalence and phenotypic spectrum of DH caused by single gene mutations.
- To investigate the role of specific gene mutations in DH.
Main Methods:
- A population-based cohort of 102 patients with permanent congenital hypothyroidism was studied.
- Fourteen DH patients were analyzed for seven causative genes (DUOX2, TG, TPO).
- In vitro experiments verified the pathogenicity of identified mutations and a functional SNP (p.H678R) in DUOX2.
Main Results:
- Mutations in DUOX2, TG, and TPO were identified in 93% of DH patients.
- A functional SNP, p.H678R in DUOX2, was found to contribute to DH.
- Patients with inactive DUOX2 alleles showed time-dependent improvement in thyroid function and morphology.
Conclusions:
- Mutations or functional SNPs in DUOX2, TG, or TPO are the primary cause of DH.
- Inactive DUOX2 alleles present a broader phenotypic spectrum than previously recognized.
- The findings refine the genetic understanding and clinical management of DH.
Related Concept Videos
Synthesis and Regulation of Thyroid Hormones
Upon reaching the thyroid gland, TSH stimulates the follicular cells' active uptake of iodide ions from the blood. The ions diffuse to the apical surface of the cells and are oxidized to iodine. The iodine is then...
Hyperthyroidism II: Pathophysiology
Hypothyroidism II: Pathophysiology
Graves' Disease I: Introduction
Graves Disease II: Pathophysiology
Hyperthyroidism I: Introduction

