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Toxic thyroid adenoma: Absence of DNA mutations of the TSH receptor and Gsa

机译:毒性甲状腺腺瘤:TSH受体和Gsa的DNA突变缺失

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摘要

DNA point mutations of the TSH receptor and of the a subunit of the stimulatory GTP-binding protein (Gsa) have been suggested as major causes of hyperfunctioning thyroid adenomas. However, significant differences in the prevalence of these mutations (from 0.3 to 84%) have been found in different populations. The present study was designed to evaluate further the presence of mutations in discrete fragments of cDNA encoding critical regions of the TSH receptor and of the Gsa involved in signal transduction and cAMP production. Genomic DNA extracted from 15 thyroid adenomas and surrounding quiescent thyroid tissues was used as a template to amplify four DNA fragments of TSH receptor and one DNA fragment of Gsa. TSH receptor and Gsa DNAs were analyzed by a number of techniques. We did not detect any mutations (new or previously described) in our patients. These results confirm that the causes of solitary toxic adenomas are protean, and only some of them may be somatic DNA point mutations. Since the clinical features of solitary toxic adenoma are homogeneous, it could be important to establish the specific molecular defect underlying each case, in order to follow up the patients and to assess their clinical evolution.
机译:TSH受体和刺激性GTP结合蛋白(Gsa)的一个亚基的DNA点突变被认为是甲状腺功能亢进症的主要原因。但是,在不同人群中发现了这些突变的发生率的显着差异(从0.3%到84%)。本研究旨在进一步评估在编码信号传导和cAMP产生的TSH受体和Gsa关键区域的cDNA离散片段中突变的存在。从15个甲状腺腺瘤和周围静止的甲状腺组织中提取的基因组DNA被用作模板,以扩增4个TSH受体DNA片段和1个Gsa DNA片段。通过多种技术分析了TSH受体和Gsa DNA。我们未在患者中检测到任何突变(新突变或先前描述的突变)。这些结果证实了单独的毒性腺瘤的病因是蛋白性的,只有其中一些可能是体细胞DNA点突变。由于孤立的毒性腺瘤的临床特征是均一的,因此确定每个病例的特定分子缺陷对于随访患者并评估其临床进展可能很重要。

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