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Generation of a Mouse Spontaneous Autoimmune Thyroiditis Model
Published on: March 17, 2023
Long-term outcome of loss-of-function mutations in thyrotropin receptor gene
Yardena Tenenbaum-Rakover1, Shlomo Almashanu, Ora Hess
11 Pediatric Endocrine Unit, Ha'Emek Medical Center , Afula, Israel .
Background:
Loss-of-function mutations in the thyrotropin receptor (TSHR) gene lead to resistance to TSH (RTSH) presenting with either congenital hypothyroidism (CH) or subclinical hypothyroidism (SCH). Despite several reports of patients with TSHR mutations, data on the long-term outcome of this condition are limited, and no consensus exists on the need for hormone replacement therapy. The aim of the present study was to assess the long-term outcome in children and adolescents with RTSH due to TSHR mutations.
Methods:
The TSHR gene was sequenced in 94 subjects (aged 3 days-21 years) with either nonautoimmune SCH or CH with RTSH.
Results:
Twenty-seven subjects (29%) carried mutations in TSHR. Fifteen infants were identified by neonatal screening, and the other 79 patients were detected in the process of testing for various other conditions or because of family occurrence of thyroid test abnormalities. Six different mutations were identified: c.484C>G (p.P162A), c.202C>T (p.P68S), c.790C>T (p.P264S), c.269A>C (p.Q90P), c.1957C>G (p.L653V), and c.1347C>T (p.R450C). Twelve subjects were homozygous, three were compound heterozygous, and 12 were heterozygous. Mean serum TSH levels at diagnosis and at last visit were significantly higher in patients with TSHR mutations than in those without mutations (29.04 vs. 14.15, p=0.002; 31.73 vs. 6.19, p<0.0001, respectively). Homozygous patients had a more severe phenotype (TSH 53.6 vs. 9.24, p<0.0001). Mean serum free thyroxine (fT4) levels at the last visit were significantly lower than at the first visit in the homozygous individuals (p=0.05) for a follow-up period of as long as 11 years. Heterozygous subjects had only mild hyperthyrotropinemia with stable TSH levels. However, homozygous subjects showed a trend toward increased TSH and decreased fT4 with time.
Conclusion:
SCH in heterozygotes with TSHR mutations is a stable compensated condition with an appropriately adjusted set point for pituitary-thyroid feedback that does not require replacement therapy. However, homozygous subjects, with incompletely compensated SCH, show reduced fT4 levels over time and may require levothyroxine treatment. Replacement therapy should be considered on an individual basis, and long-term follow up is recommended.
Insights
Resistance to TSH (RTSH) due to TSHR mutations in children can present as subclinical hypothyroidism (SCH). Homozygous patients may require levothyroxine treatment, while heterozygotes with SCH have a stable condition.
Area of Science:
- Endocrinology
- Genetics
- Pediatrics
Background:
- Loss-of-function mutations in the thyrotropin receptor (TSHR) gene cause resistance to TSH (RTSH), leading to congenital or subclinical hypothyroidism.
- Limited data exist on the long-term outcomes of RTSH, and the need for hormone replacement therapy is not standardized.
Purpose of the Study:
- To evaluate the long-term outcomes in children and adolescents diagnosed with RTSH resulting from TSHR gene mutations.
Main Methods:
- Sequencing of the TSHR gene in 94 subjects (aged 3 days to 21 years) with nonautoimmune subclinical hypothyroidism or congenital hypothyroidism with RTSH.
- Analysis of mutation types, zygosity, and correlation with thyroid hormone levels (TSH, fT4) over time.
Main Results:
- Twenty-seven subjects (29%) harbored TSHR mutations, with six distinct mutations identified.
- Homozygous patients exhibited a more severe phenotype with significantly higher TSH and a trend toward decreased fT4 over time.
- Heterozygous subjects presented with mild hyperthyrotropinemia and stable TSH levels, indicating a compensated condition.
Conclusions:
- Subclinical hypothyroidism in heterozygotes with TSHR mutations is a stable, compensated state not requiring hormone replacement therapy.
- Homozygous subjects with incompletely compensated SCH may experience reduced fT4 levels and potentially benefit from levothyroxine treatment.
- Individualized assessment and long-term monitoring are recommended for managing patients with TSHR mutations.
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