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TSH-receptor expression and human thyroid disease: relation to clinical, endocrine, and molecular thyroid parameters

F Schuppert1, S Deiters, E Rambusch

  • 1Department of Clinical Endocrinology, Hannover Medical School, FRG.

Insights

Thyrotropin receptor (TSH-R) gene expression is significantly increased in Graves

Area of Science:

  • Endocrinology
  • Molecular Biology
  • Genetics

Background:

  • Thyrotropin receptor (TSH-R) gene expression regulation by TSH and TSAbs is established in rat cell lines but less clear in human thyroid cells.
  • Hypotheses suggest TSH-R gene negative regulation may be lost in Graves' disease, based on rat cell line data.

Purpose of the Study:

  • To evaluate TSH-R gene transcript levels in human thyroids from Graves' disease patients.
  • To correlate in vivo data with in vitro observations and hypotheses regarding TSH-R gene regulation.

Main Methods:

  • Northern blot analyses were used to characterize TSH-R mRNA levels.
  • TSH-R mRNA levels were analyzed in 66 human thyroid glands, including those from Graves' patients, Hashimoto's thyroiditis, anaplastic carcinomas, endemic goiters, and thyroid autonomy.
  • Results were correlated with clinical parameters and transcript levels of thyroglobulin (TG), thyroid peroxidase (TPO), thyroid transcription factor 1 (TTF-1), and paired box-gene 8 (Pax-8).

Main Results:

  • TSH-R expression was significantly increased (2.2-fold) in Graves' thyroids compared to normal thyroids.
  • TSH-R mRNA levels were decreased in Hashimoto's thyroids (30% of normal) and anaplastic carcinomas (7% of normal).
  • In Graves' patients, TSH-R RNA levels were higher in untreated patients compared to those pretreated with iodide.
  • Pax-8 expression was increased in Graves' thyroids (3.8-fold) and correlated with TG and TPO expression.
  • TTF-1 expression showed minimal change but correlated positively with TSH-R gene expression, while Pax-8 correlated even better with TSH-R transcript levels.

Conclusions:

  • Augmentation of TSH-R expression in Graves' disease suggests a loss of responsiveness to TSH and TSAb-induced negative regulation in vivo.
  • This increase in TSH-R expression is not driven by TTF-1 transcriptional activation.
  • While Pax-8 correlates with TSH-R levels, it does not appear to be the direct regulatory factor.
  • Further research is needed to identify other factors involved in TSH-R negative regulation that may be abnormal in Graves' disease.

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