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Role of C-terminal serines in desensitization and phosphorylation of the mouse thromboxane receptor
1Division of Nephrology, Department of Medicine, Duke University and Durham Veterans Affairs Medical Centers, Durham, North Carolina 27710, USA.
Abstract:
To investigate the role of C-terminal hydroxyamino acids in desensitization of the receptor for thromboxane A2 (TxA2), we created a mutant TxA2 receptor (TP receptor) in which serines at positions 321, 322, and 328 were replaced with either alanine or glycine. Mutant and wild type receptors were expressed in a mesangial cell line, and clones expressing similar numbers of receptors were studied. Affinity and specificity of TxA2 binding to the mutant receptor were identical to wild type receptors. In contrast, TxA2-induced inositol trisphosphate generation by the mutant receptor was enhanced compared with the wild type. Prior treatment with the TxA2 agonist U46619 reduced subsequent U46619-induced increases in inositol trisphosphate generation by both receptors; however, the extent of desensitization was significantly reduced in the receptor mutant. Protein kinase C (PKC) inhibitors attenuated TxA2-induced desensitization of wild type receptors, but had little effect on TxA2-induced desensitization of mutant receptors. Pretreatment with the phorbol ester phorbol 12, 13-dybutyrate (PDBu) (100 nM) decreased subsequent responsiveness of wild type but not mutant TP receptors. -induced desensitization of wild type receptors was associated with enhanced phosphorylation of receptor proteins. This agonist-specific phosphorylation of the TP receptor was largely prevented by inhibitors of PKC. Treatment with 100 nM PDBu increased phosphorylation of both wild type and mutant TP receptors, but the extent of phosphorylation of the receptor mutant was reduced compared with the wild type. Increasing the concentration of PDBu from 100 nM to 1 microM PDBu reduced responsiveness of both mutant and wild type receptors without enhancing phosphorylation of either of the receptor proteins. These data suggest that 1) phosphorylation of C-terminal serines contributes to agonist-specific desensitization of the TP receptor, 2) PKC-induced desensitization of TP receptors is caused, in part, by phosphorylation of C-terminal serines, and 3) desensitization of TP receptors by PKC is complex and involves mechanisms that may not require direct phosphorylation of receptor proteins.
Insights
Investigating thromboxane A2 (TxA2) receptor desensitization, this study found that C-terminal serine phosphorylation is crucial for TxA2 receptor desensitization, particularly through protein kinase C pathways.
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- The receptor for thromboxane A2 (TP receptor) plays a critical role in cardiovascular function.
- Understanding the mechanisms of TP receptor desensitization is essential for developing targeted therapies.
Purpose of the Study:
- To investigate the role of C-terminal hydroxyamino acids in the desensitization of the thromboxane A2 (TxA2) receptor.
- To elucidate the involvement of protein kinase C (PKC) in TP receptor desensitization.
Main Methods:
- Created mutant TP receptors by replacing C-terminal serines with alanine or glycine.
- Expressed wild type and mutant receptors in a mesangial cell line.
- Assessed receptor binding, inositol trisphosphate generation, and receptor phosphorylation following agonist stimulation and PKC activation.
Main Results:
- Mutant TP receptors showed enhanced inositol trisphosphate generation compared to wild type.
- Desensitization of mutant receptors by the TxA2 agonist U46619 was significantly reduced.
- PKC inhibitors attenuated desensitization of wild type receptors but had minimal effect on mutant receptors.
- Agonist-induced phosphorylation of wild type TP receptors was largely prevented by PKC inhibitors.
Conclusions:
- Phosphorylation of C-terminal serines contributes to agonist-specific desensitization of the TP receptor.
- PKC-induced desensitization of TP receptors involves, in part, the phosphorylation of C-terminal serines.
- TP receptor desensitization by PKC is complex and may involve mechanisms beyond direct receptor phosphorylation.