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Updated: Jul 17, 2026

Detection of Ligand-activated G Protein-coupled Receptor Internalization by Confocal Microscopy
Published on: April 9, 2017
Agonist mediated internalization of M2 mAChR is beta-arrestin-dependent
Kymry T Jones1, Maria Echeverry, Valerie A Mosser
1School of Biology, Georgia Institute of Technology, Atlanta, GA 30332, USA. gt0008b@mail.gatech.edu
Background:
Muscarinic acetylcholine receptors (mAChRs) undergo agonist-promoted internalization, but evidence suggesting that the mechanism of internalization is beta-arrestin dependent has been contradictory and unclear. Previous studies using heterologous over-expression of wild type or dominant-negative forms of beta-arrestins have reported that agonist-promoted internalization of M2 mAChRs is a beta-arrestin- and clathrin-independent phenomenon. In order to circumvent the complications associated with the presence of endogenous beta-arrestin that may have existed in these earlier studies, we examined agonist-promoted internalization of the M2 mAChR in mouse embryonic fibroblasts (MEFs) derived from beta-arrestin knockout mice that lack expression of either one or both isoforms of beta-arrestin (beta-arrestin 1 and 2).
Results:
In wild type MEF cells transiently expressing M2 mAChRs, 40% of surface M2 mAChRs underwent internalization and sorted into intracellular compartments following agonist stimulation. In contrast, M2 mAChRs failed to undergo internalization and sorting into intracellular compartments in MEF beta-arrestin double knockout cells following agonist stimulation. In double knockout cells, expression of either beta-arrestin 1 or 2 isoforms resulted in rescue of agonist-promoted internalization. Stimulation of M2 mAChRs led to a stable co-localization with GFP-tagged beta-arrestin within endocytic structures in multiple cell lines; the compartment to which beta-arrestin localized was determined to be the early endosome. Agonist-promoted internalization of M2 mAChRs was moderately rescued in MEF beta-arrestin 1 and 2 double knockout cells expressing exogenous arrestin mutants that were selectively defective in interactions with clathrin (beta-arrestin 2 DeltaLIELD), AP-2 (beta-arrestin 2-F391A), or both clathrin/AP-2. Expression of a truncated carboxy-terminal region of beta-arrestin 1 (319-418) completely abrogated agonist-promoted internalization of M2 mAChRs in wild type MEF cells.
Conclusion:
In summary, this study demonstrates that agonist-promoted internalization of M2 mAChRs is beta-arrestin- and clathrin-dependent, and that the receptor stably co-localizes with beta-arrestin in early endosomal vesicles.
Insights
Agonist-promoted internalization of M2 muscarinic acetylcholine receptors (mAChRs) requires beta-arrestin and clathrin. This study used beta-arrestin knockout cells to demonstrate M2 mAChR internalization is dependent on beta-arrestin and clathrin.
Area of Science:
- Cell Biology
- Molecular Pharmacology
- Receptor Trafficking
Background:
- Muscarinic acetylcholine receptors (mAChRs) are known to internalize upon agonist stimulation.
- Previous studies on M2 mAChR internalization mechanisms, particularly beta-arrestin dependence, yielded contradictory results.
- The role of endogenous beta-arrestins in these processes remained unclear.
Purpose of the Study:
- To clarify the role of beta-arrestin in agonist-promoted M2 mAChR internalization.
- To investigate the involvement of beta-arrestin isoforms (1 and 2) in M2 mAChR internalization.
- To determine the dependence on clathrin and AP-2 in this process.
Main Methods:
- Utilized mouse embryonic fibroblasts (MEFs) from beta-arrestin knockout mice (lacking beta-arrestin 1 and/or 2).
- Examined M2 mAChR internalization in wild-type and knockout MEFs expressing M2 mAChRs.
- Employed rescue experiments with beta-arrestin isoforms and mutants, and co-localization studies with GFP-tagged beta-arrestin.
Main Results:
- M2 mAChR internalization was abolished in beta-arrestin double knockout MEFs but rescued by re-expressing beta-arrestin 1 or 2.
- M2 mAChRs co-localized with beta-arrestin in early endosomes upon agonist stimulation.
- Partial rescue of internalization was observed with beta-arrestin mutants defective in clathrin/AP-2 interactions, and complete abrogation with a beta-arrestin 1 C-terminal truncation.
Conclusions:
- Agonist-promoted internalization of M2 mAChRs is dependent on both beta-arrestin and clathrin.
- M2 mAChRs stably co-localize with beta-arrestin within early endosomal vesicles during internalization.
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