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Published on: March 17, 2023
A somatic mutation in the thyrotropin receptor gene in a patient with an autonomous nodule within a multinodular
Gerasimos P Sykiotis1, Argyro Sgourou, Adamantia Papachatzopoulou
1Department of Internal Medicine, Division of Endocrinology, University of Patras Medical School, Patras, Greece.
Abstract:
Thyrotropin (TSH) is the prime regulator of thyroid cell growth and function and acts through the thyrotropin receptor (TSHR) located on the surface membrane of thyrocytes. Somatic heterozygous mutations that cause TSHR activation in the absence of TSH have been found in toxic adenomas and in hot nodules of multinodular goiters. Clinically and histologically heterogeneous nodules can share common gain-of-function mutations. Mutation prevalence varies greatly and is inversely related to iodine intake of the population. We report a Greek patient presenting with subclinical hyperthyroidism due to a fast-growing autonomous hyperplastic nodule in a long-standing multinodular goiter. Direct DNA sequencing showed that the hot nodule harbored a somatic heterozygous activating TSHR mutation: substitution of glutamine for leucine in the third transmembrane helix. This mutation (L512Q) was recently described in two solitary toxic adenomas. This report expands the spectrum of mutations shared by dissimilar hot nodules, supporting a common mechanism for nonautoimmune thyroid autonomy. The identification of the L512Q substitution demonstrates that gain-of-function TSHR mutations are encountered in Greece, although iodine deficiency has been significantly corrected over the last three decades.
Insights
Gain-of-function mutations in the thyrotropin receptor (TSHR) cause autonomous thyroid nodules. A Greek patient with a hyperplastic nodule revealed a common L512Q TSHR mutation, supporting shared mechanisms for nonautoimmune thyroid autonomy.
Area of Science:
- Endocrinology
- Molecular Biology
- Genetics
Background:
- Thyrotropin (TSH) regulates thyroid function via the TSH receptor (TSHR).
- Activating TSHR mutations cause nonautoimmune thyroid autonomy, such as toxic adenomas and hot nodules.
- Mutation prevalence correlates inversely with iodine intake.
Purpose of the Study:
- To investigate the genetic basis of a fast-growing autonomous hyperplastic nodule in a Greek patient with multinodular goiter.
- To expand the spectrum of known TSHR mutations in nonautoimmune thyroid autonomy.
Main Methods:
- Direct DNA sequencing of the TSHR gene in the patient's hyperplastic nodule.
- Clinical and histological evaluation of the patient's thyroid condition.
Main Results:
- A somatic heterozygous activating TSHR mutation, L512Q (leucine to glutamine substitution), was identified in the hot nodule.
- This L512Q mutation was previously reported in solitary toxic adenomas, indicating shared mutations across different nodular types.
- The patient presented with subclinical hyperthyroidism.
Conclusions:
- The L512Q TSHR mutation is implicated in nonautoimmune thyroid autonomy in Greece, even with improved iodine intake.
- Dissimilar hot nodules can share common gain-of-function TSHR mutations, suggesting a unified pathogenic mechanism.
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