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Non-hyperfunctioning nodules from multinodular goiters: a minor role in pathogenesis for somatic activating mutations
C Derrien1, E Sonnet, I Gicquel
1Department of Endocrinology, CHU, Hĵpital Sud, Rennes, France. chrderrien@aol.com
Abstract:
Constitutive activation of the cAMP pathway stimulates thyrocyte proliferation. Gain-of-function mutations in Gsalpha protein have already been identified in thyroid nodules which have lost the ability to trap iodine. In contrast, most of the studies failed to detect somatic activating mutations in the thyrotropin receptor (TSH-R) in non-hyperfunctioning thyroid tumors. The aim of this study was to screen for mutations TSH-R exon 10, encoding the whole intracytoplasmic area involved in signal transduction, and Gsalpha exons 8 and 9, containing the two hot-spot codons 201 and 227, in a subset of non-hyperfunctioning nodules from multinodular goiter. Identified by matching ultrasonography and scintiscan, 22 eufunctioning (normal 99Tc uptake) and 15 nonfunctioning (decreased 99Tc uptake) nodules from 27 non-toxic multinodular goiters were isolated. After DNA extraction, TSH-R exon 10 was analyzed by direct sequencing of the PCR products and Gsalpha exons 8 and 9 by Denaturing Gradient Gel Electrophoresis. No mutation of TSH-R or Gsalpha was detected in the 37 nodules analyzed. This absence of mutation, despite the use of two sensitive screening methods associated with the analysis of the TSH-R whole intracytoplasmic area and Gsalpha two hot-spot codons, suggests that TSH-R and Gsalpha play a minor role in the pathogenesis of non-toxic nodules from multinodular goiters.
Insights
This study investigated mutations in the thyrotropin receptor (TSH-R) and Gsalpha protein in non-toxic thyroid nodules. No mutations were found, suggesting these genes play a minor role in the development of such nodules.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Constitutive activation of the cAMP pathway promotes thyrocyte proliferation.
- Gain-of-function mutations in Gsalpha protein are found in iodine-non-trapping thyroid nodules.
- Somatic activating mutations in the thyrotropin receptor (TSH-R) are rarely detected in non-hyperfunctioning thyroid tumors.
Purpose of the Study:
- To screen for mutations in TSH-R exon 10 and Gsalpha exons 8 and 9.
- To investigate the role of TSH-R and Gsalpha in the pathogenesis of non-hyperfunctioning nodules from multinodular goiters.
Main Methods:
- Analysis of 37 nodules (22 eufunctioning, 15 nonfunctioning) from 27 non-toxic multinodular goiters.
- TSH-R exon 10 analyzed by direct sequencing of PCR products.
- Gsalpha exons 8 and 9 analyzed by Denaturing Gradient Gel Electrophoresis.
Main Results:
- No mutations in TSH-R exon 10 were detected in any of the analyzed nodules.
- No mutations in Gsalpha exons 8 and 9 (hot-spot codons 201 and 227) were found.
- Absence of mutations in TSH-R and Gsalpha in the studied cohort.
Conclusions:
- TSH-R and Gsalpha appear to play a minor role in the pathogenesis of non-toxic nodules in multinodular goiters.
- The findings are based on sensitive screening methods targeting key regions of TSH-R and Gsalpha.