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Expression and activity of g protein-coupled receptor kinases in differentiated thyroid carcinoma
Thierry Métayé1, Emmanuelle Menet, Joëlle Guilhot
1Biophysics Laboratory, Department of Pathology, Jean Bernard Hospital, BP 577, 86021 Poitiers Cedex, France. t.metaye@chu-poitiers.fr
Abstract:
Most of the TSH effects on the proliferation and differentiation of thyroid cells are mediated by cAMP via an adenylyl cyclase-activating Gs protein. TSH receptor responsiveness in cell cultures, is regulated by G protein-coupled receptor kinase (GRK) 2 and 5. To determine whether an alteration in activity and expression of GRKs might be associated with variable levels of TSH receptor desensitization in vivo, we studied human thyroid tissues including 21 normal tissues and 18 differentiated carcinomas. GRK activity was assayed by rhodopsin phosphorylation, and GRK protein and mRNA expressions assessed by immunoblotting and real-time quantitative RT-PCR, respectively. GRK2 and GRK5 were found as the predominant isoforms in the human thyroid. GRK5 protein expression was significantly decreased in differentiated thyroid carcinoma (P < 0.02) and paralleled a decrease in GRK mRNA expression (P < 0.02). In contrast, no difference in protein and mRNA levels of GRK2 were observed between normal and cancerous thyroid tissues. Although GRK2 protein levels correlated with GRK activities, we demonstrated a significant increase in GRK activity in differentiated thyroid carcinoma (P < 0.02). Less TSH receptor desensitization occurred in differentiated carcinoma than in normal thyroid tissue, as judged by TSH-stimulated cAMP response in human thyroid cells in primary culture. In conclusion, this study indicates that GRK2 activity and GRK5 expression have opposite regulations in cancer cells. Furthermore, the decrease in GRK5 expression may underlie the reduction in homologous desensitization of the TSH receptor in differentiated thyroid carcinoma, contributing to explain the increased cAMP levels in these tumors.
Insights
Thyroid cancer cells show decreased G protein-coupled receptor kinase 5 (GRK5) expression, leading to reduced TSH receptor desensitization. This impacts thyroid cell proliferation and differentiation in differentiated thyroid carcinoma.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Thyroid-stimulating hormone (TSH) regulates thyroid cell function via cAMP signaling, mediated by Gs protein.
- G protein-coupled receptor kinase (GRK) 2 and 5 are key regulators of TSH receptor responsiveness.
- Understanding GRK alterations is crucial for explaining TSH receptor desensitization in thyroid conditions.
Purpose of the Study:
- To investigate the in vivo activity and expression of GRK2 and GRK5 in human thyroid tissues.
- To correlate GRK alterations with TSH receptor desensitization in differentiated thyroid carcinoma.
- To elucidate the role of GRKs in the pathophysiology of differentiated thyroid carcinoma.
Main Methods:
- Analysis of GRK activity via rhodopsin phosphorylation assays.
- Assessment of GRK protein and mRNA expression using immunoblotting and real-time quantitative RT-PCR.
- Measurement of TSH-stimulated cAMP response in primary human thyroid cell cultures.
Main Results:
- GRK2 and GRK5 are the predominant GRK isoforms in the human thyroid.
- Differentiated thyroid carcinoma showed significantly decreased GRK5 protein and mRNA expression (P < 0.02).
- GRK2 protein levels correlated with activity, which was significantly increased in carcinoma (P < 0.02), while GRK5 expression was decreased.
- Reduced TSH receptor desensitization was observed in differentiated carcinoma compared to normal thyroid tissue.
Conclusions:
- GRK2 activity and GRK5 expression are oppositely regulated in differentiated thyroid carcinoma cells.
- Decreased GRK5 expression may contribute to reduced TSH receptor desensitization in differentiated thyroid carcinoma.
- These findings help explain elevated cAMP levels observed in differentiated thyroid tumors.