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Updated: Jun 28, 2026

Visualizing Clathrin-mediated Endocytosis of G Protein-coupled Receptors at Single-event Resolution via TIRF Microscopy
Published on: October 20, 2014
c-Src-mediated phosphorylation of AP-2 reveals a general mechanism for receptors internalizing through the clathrin
Brandon Zimmerman1, May Simaan, Mi-Hye Lee
1Hormones and Cancer Research Unit, Department of Medicine, McGill University Health Center Research Institute, Royal Victoria Hospital, 687 Pine Avenue West, Montréal, Quebec, Canada H3A 1A1.
Abstract:
Clathrin-mediated endocytosis is a complex process regulated at many different levels. We showed previously that activation of the angiotensin type 1 receptor (AT1R), which belongs to the G protein-coupled receptor (GPCR) family, leads to c-Src-dependent tyrosine phosphorylation of beta2-adaptin, a subunit of the clathrin adaptor AP-2. The phosphorylation of beta2-adaptin on tyrosine residue 737 (Y737) negatively regulates its interaction with betaarrestin, another important clathrin adaptor for GPCR internalization. Here we sought to determine whether AP-2 phosphorylation represents a general mechanism for different receptors internalizing through the clathrin pathway. Using a specifically designed antibody against the phosphorylated form of Y737 on beta2-adaptin, we demonstrate that this residue is phosphorylated by AT1R in different cell types like HEK293, COS-7 and vascular smooth muscle cells. Using RNA interference approaches, we reveal that this agonist-mediated event is both betaarrestin- and c-Src-dependent, and that it occurs at the plasma membrane in clathrin-coated vesicles (CCVs). We further show that this is not only a common event employed by other GPCRs like the beta2-adrenergic, vasopressin V2, bradykinin type 2, platelet-activating factor and endothelin A receptors but that the epidermal growth factor receptor is capable of eliciting the phosphorylation of AP-2 in CCVs. Our results imply that tyrosine phosphorylation of Y737 on beta2-adaptin is a common regulatory mechanism employed by different receptors undergoing clathrin-dependent endocytosis, and suggest a wider function for this event than originally anticipated.
Insights
Tyrosine phosphorylation of beta2-adaptin (Y737) is a common regulatory mechanism in clathrin-dependent endocytosis for various receptors, including GPCRs and EGFR.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Clathrin-mediated endocytosis (CME) is a crucial cellular process for receptor internalization.
- G protein-coupled receptor (GPCR) activation can trigger c-Src-dependent phosphorylation of beta2-adaptin (a subunit of AP-2) at Y737.
- This phosphorylation negatively impacts beta-arrestin interaction, influencing GPCR internalization.
Purpose of the Study:
- To investigate if AP-2 phosphorylation at Y737 is a general regulatory mechanism for receptors undergoing CME.
- To determine the involvement of beta-arrestin and c-Src in this phosphorylation event.
- To explore the role of this mechanism in the internalization of various GPCRs and other receptors.
Main Methods:
- Utilized a specific antibody for phosphorylated Y737 on beta2-adaptin.
- Employed RNA interference (RNAi) to assess the roles of beta-arrestin and c-Src.
- Investigated phosphorylation in various cell types (HEK293, COS-7, vascular smooth muscle cells) and receptor systems.
Main Results:
- Confirmed Y737 phosphorylation by AT1R in multiple cell types.
- Demonstrated that agonist-mediated Y737 phosphorylation is dependent on beta-arrestin and c-Src at clathrin-coated vesicles (CCVs).
- Showed that various GPCRs (beta2-adrenergic, V2, B2, PAF, ETA) and the epidermal growth factor receptor (EGFR) can induce AP-2 phosphorylation in CCVs.
Conclusions:
- Tyrosine phosphorylation of beta2-adaptin Y737 is a widespread regulatory mechanism for diverse receptors undergoing CME.
- This phosphorylation event has a broader functional significance in receptor internalization than previously understood.
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