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Expression of beta-arrestins in toxic and cold thyroid nodules
C Voigt1, H Holzapfel, R Paschke
1III, Medical Department, University of Leipzig, Ph. Rosenthal Str. 27, D-04103, Leipzig, Germany.
Abstract:
beta-Arrestins mediate agonist dependent desensitization of G protein-coupled receptors. Somatic TSH receptor mutations were identified in the majority of hot thyroid nodules. When transiently overexpressed in COS 7 cells these mutations resulted in constitutive activation of the cAMP pathway. However, the in vivo mechanisms and the in vivo desensitization of these TSH receptor mutations are unknown. Moreover, constitutively activated beta-adrenergic receptors are known to be constitutively desensitized. Therefore, we investigated the expression of beta-arrestins in toxic thyroid nodules (TTNs) with and without somatic TSH receptor mutation and in cold thyroid nodules (CTNs) by Western blotting and ELISA. Expression of beta-arrestin 2 was increased in all TTNs while beta-arrestin 2 expression was decreased in CTNs compared to their corresponding surrounding tissue. The mean beta-arrestin 1 expression was unchanged in the cytosol of TTNs, in membranes and cytosol of CTNs and decreased in the membranes of TTNs compared to their surrounding tissue. Transient coexpression of beta-arrestins 1 or 2 with the TSH receptor in HEK 293 cells and subsequent determination of cAMP showed that in vitro both beta-arrestins interact with the TSH receptor and are able to desensitize the receptor. The increased beta-arrestin 2 expression in TTNs and the desensitization of the TSH receptor by beta-arrestin 2 in vitro suggest that the beta-arrestin 2 expression is cAMP dependent and that beta-arrestin 2 very likely desensitizes the constitutively activated TSH receptor in toxic thyroid nodules.
Insights
Beta-arrestins desensitize G protein-coupled receptors. In toxic thyroid nodules (TTNs), increased beta-arrestin 2 expression suggests it desensitizes the TSH receptor, explaining hyperthyroidism.
Area of Science:
- Endocrinology
- Molecular Biology
- Cellular Signaling
Background:
- G protein-coupled receptors (GPCRs) are regulated by beta-arrestins.
- Somatic TSH receptor mutations cause constitutive activation and cAMP pathway signaling in hot thyroid nodules.
- In vivo desensitization mechanisms for these mutations remain unclear.
Purpose of the Study:
- Investigate beta-arrestin expression in toxic thyroid nodules (TTNs) and cold thyroid nodules (CTNs).
- Determine the role of beta-arrestins in TSH receptor desensitization in TTNs.
Main Methods:
- Western blotting and ELISA to quantify beta-arrestin 1 and 2 expression in TTNs and CTNs.
- Transient coexpression of TSH receptor with beta-arrestins in HEK 293 cells.
- cAMP level determination to assess receptor activity.
Main Results:
- Beta-arrestin 2 expression was elevated in TTNs and reduced in CTNs compared to surrounding tissues.
- Beta-arrestin 1 expression showed varied changes in TTNs and CTNs.
- In vitro, both beta-arrestins interacted with and desensitized the TSH receptor.
Conclusions:
- Increased beta-arrestin 2 in TTNs is likely cAMP-dependent.
- Beta-arrestin 2 plays a significant role in desensitizing constitutively active TSH receptors in TTNs.