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Uncoupling and endocytosis of 5-hydroxytryptamine 4 receptors. Distinct molecular events with different GRK2
Gaël Barthet1, Florence Gaven, Bérénice Framery
1CNRS UMR5203, Montpellier, F-34094, France.
Abstract:
The 5-hydroxytryptamine type 4 receptors (5-HT4Rs) are involved in memory, cognition, feeding, respiratory control, and gastrointestinal motility through activation of a G(s)/cAMP pathway. We have shown that 5-HT4R undergoes rapid and profound homologous uncoupling in neurons. However, no significant uncoupling was observed in COS-7 or HEK293 cells, which expressed either no or a weak concentration of GRK2, respectively. High expression of GRK2 in neurons is likely to be the reason for this difference because overexpression of GRK2 in COS-7 and HEK293 cells reproduced rapid and profound uncoupling of 5-HT4R. We have also shown, for the first time, that GRK2 requirements for uncoupling and endocytosis were very different. Indeed, beta-arrestin/dynamin-dependent endocytosis was observed in HEK293 cells without any need of GRK2 overexpression. In addition to this difference, uncoupling and beta-arrestin/dynamin-dependent endocytosis were mediated through distinct mechanisms. Neither uncoupling nor beta-arrestin/dynamin-dependent endocytosis required the serine and threonine residues localized within the specific C-terminal domains of the 5-HT4R splice variants. In contrast, a cluster of serines and threonines, common to all variants, was an absolute requirement for beta-arrestin/dynamin-dependent receptor endocytosis, but not for receptor uncoupling. Furthermore, beta-arrestin/dynamin-dependent endocytosis and uncoupling were dependent on and independent of GRK2 kinase activity, respectively. These results clearly demonstrate that the uncoupling and endocytosis of 5-HT4R require different GRK2 concentrations and involve distinct molecular events.
Insights
G protein-coupled receptor kinase 2 (GRK2) mediates the uncoupling of serotonin 4 receptors (5-HT4Rs) in neurons. Distinct molecular mechanisms and GRK2 concentrations regulate 5-HT4R uncoupling and endocytosis.
Area of Science:
- Neuroscience
- Molecular Pharmacology
- Cell Biology
Background:
- 5-hydroxytryptamine type 4 receptors (5-HT4Rs) regulate critical physiological processes including memory, cognition, and gastrointestinal motility via G(s)/cAMP signaling.
- Rapid homologous uncoupling of 5-HT4Rs has been observed in neurons, but not in cell lines with low G protein-coupled receptor kinase 2 (GRK2) expression.
Purpose of the Study:
- To investigate the role of GRK2 in the uncoupling and endocytosis of 5-HT4Rs.
- To elucidate the distinct molecular mechanisms underlying 5-HT4R uncoupling and endocytosis.
Main Methods:
- Comparative analysis of 5-HT4R uncoupling and endocytosis in neuronal cells versus HEK293 and COS-7 cells with varying GRK2 expression levels.
- Overexpression of GRK2 in cell lines to mimic neuronal conditions.
- Investigation of the role of specific serine and threonine residues in receptor trafficking.
Main Results:
- High GRK2 expression in neurons is responsible for the observed rapid and profound uncoupling of 5-HT4Rs.
- Overexpression of GRK2 in cell lines reproduced 5-HT4R uncoupling.
- Beta-arrestin/dynamin-dependent endocytosis of 5-HT4Rs can occur independently of GRK2 overexpression.
- Distinct molecular events and GRK2 concentration requirements govern 5-HT4R uncoupling and endocytosis.
Conclusions:
- GRK2 plays a critical role in neuronal 5-HT4R uncoupling.
- 5-HT4R uncoupling and beta-arrestin/dynamin-dependent endocytosis are distinct processes mediated by different molecular mechanisms and GRK2 requirements.
- Specific serine/threonine clusters in the receptor C-terminus are crucial for endocytosis but not uncoupling.
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