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Tracking Drug-induced Changes in Receptor Post-internalization Trafficking by Colocalizational Analysis
Published on: July 3, 2015
Post-activation-mediated changes in opioid receptors detected by N-terminal antibodies
Achla Gupta1, Raphael Rozenfeld, Ivone Gomes
1Department of Pharmacology and Systems Therapeutics, Mount Sinai School of Medicine, New York, New York 10029, USA.
Abstract:
The majority of studies examining activity-induced conformational changes in G protein-coupled receptors have focused on transmembrane helices or intracellular regions. Relatively few studies have examined the involvement of the extracellular region in general and the N-terminal region in particular in this process. To begin to address this, we generated a series of antibodies to the N-terminal region of opioid receptors. Characterization of these antibodies revealed that they differentially recognize activated receptors. Recently, we generated monoclonal antibodies that recognize regions proximal to glycosylation sites in the receptor N terminus. Characterization of these antibodies revealed that agonist treatment leads to a decrease in epitope recognition by the antibody presumably because of a movement of the region of the N terminus proximal to glycosylation sites. The time course of the decrease in antibody recognition suggested that it could be due to a post-activation-mediated event. Examination of the involvement of receptor residues in the C-tail and beta-arrestin binding using site-directed mutagenesis and cells or tissues lacking beta-arrestin 2 suggests a role for these desensitization-related mechanisms in governing antibody binding to the receptor. Thus, these N-terminally directed antibodies can differentially recognize post-activation-mediated changes in the C-terminal (intracellular) region of the receptor. Therefore, these conformation-sensitive antibodies represent powerful reagents to probe receptor activation states and provide a potential tool for identifying and characterizing new compounds of therapeutic interest.
Insights
New antibodies targeting the opioid receptor N terminus reveal conformational changes during activation. These conformation-sensitive antibodies can probe receptor states and aid in drug discovery.
Area of Science:
- Pharmacology
- Molecular Biology
- Biochemistry
Background:
- G protein-coupled receptor (GPCR) research often overlooks extracellular regions, particularly the N terminus, in activity-induced conformational changes.
- Most studies focus on transmembrane helices or intracellular domains, leaving the N-terminal role underexplored.
Purpose of the Study:
- To investigate the involvement of the opioid receptor N terminus in activity-induced conformational changes.
- To develop and characterize novel antibodies targeting the N-terminal region for probing receptor activation states.
Main Methods:
- Generation of a series of antibodies targeting the N-terminal region of opioid receptors.
- Characterization of antibody recognition of activated versus resting receptors, including those near glycosylation sites.
- Site-directed mutagenesis and analysis of beta-arrestin 2 knockout cells to investigate desensitization mechanisms.
Main Results:
- Antibodies differentially recognize activated opioid receptors, with some showing decreased epitope recognition upon agonist treatment.
- Agonist-induced conformational changes in the N terminus, potentially linked to glycosylation sites, were observed.
- Evidence suggests post-activation events and C-terminal/beta-arrestin interactions influence N-terminal antibody binding.
Conclusions:
- N-terminally directed antibodies can detect post-activation conformational changes in the C-terminal region of opioid receptors.
- These conformation-sensitive antibodies are valuable tools for studying receptor activation states.
- The developed antibodies offer potential for identifying and characterizing novel therapeutic compounds.
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