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Multiple endocytic pathways of G protein-coupled receptors delineated by GIT1 sensitivity
A Claing1, S J Perry, M Achiriloaie
1The Howard Hughes Medical Institute and Departments of Medicine, Biochemistry, and Cell Biology, Box 3821, Duke University Medical Center, Durham, NC 27710, USA.
Abstract:
Recently, we identified a GTPase-activating protein for the ADP ribosylation factor family of small GTP-binding proteins that we call GIT1. This protein initially was identified as an interacting partner for the G protein-coupled receptor kinases, and its overexpression was found to affect signaling and internalization of the prototypical beta(2)-adrenergic receptor. Here, we report that GIT1 overexpression regulates internalization of numerous, but not all, G protein-coupled receptors. The specificity of the GIT1 effect is not related to the type of G protein to which a receptor couples, but rather to the endocytic route it uses. GIT1 only affects the function of G protein-coupled receptors that are internalized through the clathrin-coated pit pathway in a beta-arrestin- and dynamin-sensitive manner. Furthermore, the GIT1 effect is not limited to G protein-coupled receptors because overexpression of this protein also affects internalization of the epidermal growth factor receptor. However, constitutive agonist-independent internalization is not regulated by GIT1, because transferrin uptake is not affected by GIT1 overexpression. Thus, GIT1 is a protein involved in regulating the function of signaling receptors internalized through the clathrin pathway and can be used as a diagnostic tool for defining the endocytic pathway of a receptor.
Insights
GTPase-activating protein GIT1 regulates the internalization of G protein-coupled receptors and other signaling receptors. Its function is specific to receptors utilizing the clathrin-coated pit pathway for endocytosis.
Area of Science:
- Cell Biology
- Molecular Biology
- Signal Transduction
Background:
- GTPase-activating protein 1 (GIT1) is identified as an interacting partner for G protein-coupled receptor kinases.
- GIT1 overexpression affects signaling and internalization of the beta(2)-adrenergic receptor.
Purpose of the Study:
- To investigate the role of GIT1 in the regulation of G protein-coupled receptor (GPCR) internalization.
- To determine the specificity of GIT1's effect on GPCRs and other signaling receptors.
- To explore GIT1's potential as a diagnostic tool for endocytic pathways.
Main Methods:
- Overexpression of GIT1 in cellular systems.
- Analysis of GPCR and epidermal growth factor receptor (EGFR) internalization.
- Assessment of transferrin uptake to evaluate constitutive endocytosis.
Main Results:
- GIT1 overexpression regulates internalization of numerous GPCRs, independent of their G protein coupling.
- GIT1's effect is specific to receptors internalized via the clathrin-coated pit pathway, dependent on beta-arrestin and dynamin.
- GIT1 also affects EGFR internalization but not constitutive transferrin uptake.
Conclusions:
- GIT1 is a key regulator of signaling receptor function specifically for those internalized through the clathrin-dependent pathway.
- GIT1's specificity makes it a valuable tool for characterizing receptor endocytic routes.