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Overview
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The pT379-MOP Phosphorylation Assay Kit allows determination of MOP Phosphorylation in 96-well plates without the need for Western blot analysis.
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Background
Analysis of agonist-driven GPCR phosphorylation provides insights into the receptor activation state and ligand pharmacology. We offers Phosphorylation Assay kits based on the first-in-class immunoassay for the quantitative assessment of GPCR phosphorylation. The assay can be performed entirely in multiwell cell culture plates, thus eliminating the need for Western blot analysis. The assay involves immunoprecipitation of affinity-tagged receptors using magnetic beads followed by detection using Premium Phosphosite-Specific Antibodies as phospho-biosensors. The Receptor Phosphorylation Assay allows quantitative determination of GPCR phosphorylation particular when total receptor is determined in parallel using Non-Phospho Antibodies, which are included in each kit. The Receptor Phosphorylation Assay can be performed using transiently or stably transfected cells. This assay protocol has been optimized for transiently transfected HEK293 cells in 96-well format using plasmids expressing 3xHA-tagged GPCR constructs. It can be adapted to other affinity tags such as FLAG, Myc, His or GFP. The assay can be performed manually or fully automated in medium- to high-throughput mode. The Phosphorylation Assay Kit provides a fast, robust and reliable solution, fulfilling the requirements for extensive application in academic and pharmaceutical research.

More Details
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Overview
Figure 1. OD signals in pT379-MOP Phosphorylation Assay. HEK293 cells stably expressing the µ-opioid receptor (MOP) were treated with increasing DAMGO concentrations for 30 min at 37°C. Phosphorylation was determined using pT379-MOP Phosphorylation Assay Kit according to the standard assay protocol.
Figure 2. DAMGO-induced MOP phosphorylation determined using the 7TM Phosphorylation Assay. Concentration–response curves were generated after treatment of HEK293 cells stably expressing the µ-opioid receptor (MOP) with increasing DAMGO concentrations for 30 min at 37°C. The cells were then lysed and analyzed for pT370-, pS375-, pT376-, and pT379-MOP phosphorylation according to the standard assay protocol. All data points were normalized to 10 µM DAMGO stimulation.
Figure 3. Morphine-induced MOP phosphorylation determined using the 7TM Phosphorylation Assay. Concentration–response curves were generated after treatment of HEK293 cells stably expressing the µ-opioid receptor (MOP) with increasing morphine concentrations for 30 min at 37°C. The cells were then lysed and analyzed for pT370-, pS375-, pT376-, and pT379-MOP phosphorylation according to the standard assay protocol. All data points were normalized to 10 µM DAMGO stimulation.
Figure 4. Inhibition of DAMGO-induced MOP phosphorylation by naloxone. Concentration–response curves were generated after treatment of HEK293 cells stably expressing the µ-opioid receptor (MOP) with increasing naloxone concentrations for 30 min at 37°C. The antagonist naloxone was added 30 min prior to challenge with 10 µM DAMGO. The cells were then lysed and analyzed for pT370-, pS375-, pT376-, and pT379-MOP phosphorylation according to the standard assay protocol. All data points were normalized to 10 µM DAMGO stimulation.
Figure 5. PMA-induced MOP phosphorylation determined using the 7TM Phosphorylation Assay. Concentration–response curves were generated after treatment of HEK293 cells stably expressing the µ-opioid receptor (MOP) with increasing concentrations of the PKC activator phorbol 12-myristate 13-acetate (PMA) for 30 min at 37°C. The cells were then lysed and analyzed for pT370-, pS375-, pT376-, and pT379-MOP phosphorylation according to the standard assay protocol. All data points were normalized to 10 µM DAMGO stimulation.
pT379-MOP Phosphorylation Assay Kit
pT379-MOP Phosphorylation Assay Kit
Catalog Number:
PAT1456045TMA
Mfr. No.:
7TM0319E-PA
Price:
$464
Size:
96-Well Assay Kit
Quantity:
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