Genetic and Functional Studies of Patients with Thyroid Dyshormonogenesis and Defects in the TSH Receptor (TSHR)

Diego Yeste1,2,3, Noelia Baz-Redón1,2, María Antolín4

  • 1Growth and Development Group, Vall d'Hebron Institut de Recerca (VHIR)-Pediatric Endocrinology Section, Hospital Universitari Vall d'Hebron (HUVH), 08035 Barcelona, Spain.

Insights

Genetic defects in the TSH receptor (TSHR) cause thyroid issues. This study identified six TSHR variants in five patients, confirming their pathogenicity and improving genotype-phenotype correlation for thyroid dysgenesis and dyshormonogenesis.

Area of Science:

  • Endocrinology
  • Genetics
  • Pediatric Endocrinology

Background:

  • Genetic defects in the TSH receptor (TSHR) lead to thyroid dysgenesis and/or dyshormonogenesis, presenting a wide spectrum of congenital hypothyroidism.
  • Over 250 TSHR variants are documented, but many lack in vitro characterization, hindering genotype-phenotype correlation.

Purpose of the Study:

  • To genetically characterize pediatric patients with thyroid dyshormonogenesis due to TSHR defects.
  • To perform in vitro functional studies of identified TSHR variants to establish genotype-phenotype relationships.

Main Methods:

  • Analysis of 160 pediatric patients with thyroid dyshormonogenesis using a high-throughput gene panel.
  • In vitro functional assays measuring TSH-dependent cAMP-response-element activation for identified TSHR variants.

Main Results:

  • Six TSHR variants, including two novel ones, were identified in five patients with mild or severe thyroid dyshormonogenesis.
  • Each variant exhibited distinct in vitro functional profiles, ranging from partially to totally deleterious.
  • The study found that 3.13% of patients with thyroid dyshormonogenesis had candidate TSHR variants.

Conclusions:

  • In vitro functional studies are crucial for confirming the pathogenicity of TSHR variants.
  • Understanding the patient's specific genotype is essential for accurate diagnostic confirmation of thyroid dyshormonogenesis.

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