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Rapid desensitization of the TRH receptor and persistent desensitization of its constitutively active mutant
I Zaltsman1, H Grimberg, M Lupu-Meiri
1Department of Physiology and Pharmacology, Sackler Faculty of Medicine, Tel Aviv University, Ramat Aviv 69978, Israel.
Abstract:
We studied rapid desensitization of the thyrotropin-releasing hormone receptor (TRH-R) or the m1-muscarinic receptor (m1-R) to a short challenge of threshold TRH concentration and persistent desensitization due to constitutive activity of a mutant TRH-R. Xenopus oocytes expressing TRH-Rs and/or m1-Rs were challenged for 15 s with threshold concentrations of TRH ([TRH]) and then immediately with supraoptimal [TRH] or acetylcholine ([ACh]). The threshold challenge caused desensitization of 50 - 57% of responses to subsequent supraoptimal stimulation with TRH or ACh. The homologous desensitization was reversible within 60 s after removal of the agonist. The protein kinase C (PKC) inhibitor, chelerythrine, inhibited the control responses by 30 - 40%, without affecting the desensitized responses. Chelerythrine or the phosphatase inhibitor, okadaic acid, had little effect on the kinetics of resensitization, indicating limited involvement of PKC. In oocytes coexpressing wild type TRH-Rs or m1-Rs with a constitutively active TRH-R mutant (C335Stop TRH-R), a persistent desensitization (33 - 57%) of the responses to TRH or ACh was observed. Additionally, there was a complete loss of the rapid desensitization induced by threshold [TRH]. Chlorodiazepoxide (CDE), a competitive binding antagonist of TRH-Rs and an inverse agonist of C335Stop TRH-Rs, abolished the persistent desensitization induced by C335Stop TRH-Rs and enabled the rapid desensitization, conferring the wild type phenotype on C335Stop TRH-Rs. Chelerythrine had qualitatively the same effect as CDE. In conclusion, unlike the rapid desensitization, the persistent desensitization caused by the constitutively active C335Stop TRH-Rs is largely mediated by PKC. It abrogates, however, the rapid desensitization, suggesting a common mechanistic step(s).
Insights
Rapid desensitization of thyrotropin-releasing hormone receptors (TRH-R) is distinct from persistent desensitization caused by mutant TRH-Rs. Protein kinase C (PKC) mediates persistent, but not rapid, TRH-R desensitization.
Area of Science:
- Pharmacology
- Molecular Biology
- Cell Signaling
Background:
- Thyrotropin-releasing hormone receptors (TRH-Rs) and m1-muscarinic receptors (m1-Rs) mediate cellular responses.
- Receptor desensitization is a crucial regulatory mechanism.
- Constitutively active receptor mutants offer insights into desensitization pathways.
Purpose of the Study:
- To investigate the mechanisms of rapid and persistent desensitization of TRH-Rs and m1-Rs.
- To determine the role of protein kinase C (PKC) in these desensitization processes.
- To characterize the effects of a constitutively active TRH-R mutant on receptor function and desensitization.
Main Methods:
- Xenopus oocytes expressing TRH-Rs and/or m1-Rs were used.
- Receptors were challenged with threshold or supraoptimal concentrations of TRH or acetylcholine (ACh).
- The effects of PKC inhibitor (chelerythrine) and phosphatase inhibitor (okadaic acid) were assessed. Constitutively active TRH-R mutants and antagonists were employed.
Main Results:
- A brief TRH challenge caused rapid, reversible desensitization of TRH-Rs and m1-Rs.
- PKC inhibition affected basal responses but not rapid desensitization or resensitization kinetics.
- A constitutively active TRH-R mutant induced persistent desensitization and abolished rapid desensitization.
- The antagonist chlorodiazepoxide (CDE) and chelerythrine reversed persistent desensitization and restored rapid desensitization.
Conclusions:
- Rapid TRH-R desensitization is largely independent of PKC.
- Persistent desensitization mediated by constitutively active TRH-R mutants involves PKC.
- A common mechanistic step may link rapid and persistent desensitization pathways, despite differing mediators.