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United detection GNAS and TSHR mutations in subclinical toxic multinodular goiter
Chunbo Liu1, Jingyuan Yang, Fengjun Wang
1Department of Ultrasound,The First Affiliated Hospital of Harbin Medical University, Harbin, Heilongjiang, China.
Abstract:
The aim of the study was to investigate whether the mutations of the GNAS gene and thyroid-stimulating hormone receptor (TSHR) gene were a potential molecular biological mechanism for subclinical toxic multinodular goiter (sTMG) and to evaluate the association of these mutations with the clinicopathological features of these disorders.Forty-four patients with sTMG and 20 controls(multinodular goiter) from Heilongjiang province of China who underwent subtotal thyroidectomy were recruited. Genes' mutations were analyzed by direct DNA sequencing of the polymerase chain reaction-amplified the parts of exons. In sTMG group, three mutations at GNAS gene were identified in seven patients (15.9%). Six mutations at TSHR gene were identified in 14 patients (31.8%). Mutation positivity of TSHR gene had statistically significant by comparison of two groups. In sTMG group, the mutation positivity of patients with serum TSH level below 0.1 microU/ml and above 0.01 microU/ml is obviously different (P < 0.05) at TSHR gene. However, these statistically significant differences were both not being seen at GNAS gene, and patients with nodules before universal salt iodization (USI)and after USI (P > 0.05). Mutation positivity of TSHR gene has a relation with sTMG. It is more probable that serum TSH level play an important role in mutagenesis.
Insights
Mutations in the thyroid-stimulating hormone receptor (TSHR) gene are linked to subclinical toxic multinodular goiter (sTMG). TSHR gene mutations are more common in sTMG patients, especially those with altered TSH levels.
Area of Science:
- Endocrinology
- Molecular Biology
- Genetics
Background:
- Subclinical toxic multinodular goiter (sTMG) is a common thyroid disorder.
- The underlying molecular mechanisms of sTMG require further investigation.
Purpose of the Study:
- To investigate GNAS and TSHR gene mutations as potential molecular mechanisms for sTMG.
- To evaluate the association between these mutations and clinicopathological features of sTMG.
Main Methods:
- Direct DNA sequencing of polymerase chain reaction-amplified gene segments.
- Analysis of GNAS and TSHR gene mutations in 44 sTMG patients and 20 controls.
- Correlation of mutation positivity with serum TSH levels and history of universal salt iodization (USI).
Main Results:
- GNAS gene mutations were found in 15.9% of sTMG patients.
- TSHR gene mutations were identified in 31.8% of sTMG patients, significantly more than in controls.
- TSHR mutation positivity showed a significant association with serum TSH levels in sTMG patients.
Conclusions:
- TSHR gene mutations are associated with sTMG and may play a role in its pathogenesis.
- Serum TSH levels appear to be an important factor in the mutagenesis associated with sTMG.
- GNAS gene mutations did not show a significant association with sTMG or clinicopathological features.
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