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Internalization of AMPA-type Glutamate Receptor in the MIN6 Pancreatic β-cell Line
The Mon La1, Hiroshi Yamada1, Sayaka Seiriki1
1Department of Neuroscience, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences.
Abstract:
The activity of AMPA-type glutamate receptor is involved in insulin release from pancreatic β-cells. However, the mechanism and dynamics that underlie AMPA receptor-mediated insulin release in β-cells is largely unknown. Here, we show that AMPA induces internalization of glutamate receptor 2/3 (GluR2/3), AMPA receptor subtype, in the mouse β-cell line MIN6. Immunofluorescence experiments showed that GluR2/3 appeared as fine dots that were distributed throughout MIN6 cells. Intracellular GluR2/3 co-localized with AP2 and clathrin, markers for clathrin-coated pits and vesicles. Immunoelectron microscopy revealed that GluR2/3 was also localized at plasma membrane. Surface biotinylation and immunofluorescence measurements showed that addition of AMPA caused an approximate 1.8-fold increase in GluR2/3 internalization under low-glucose conditions. Furthermore, internalized GluR2 largely co-localized with EEA1, an early endosome marker. In addition, GluR2/3 co-immunoprecipitated with cortactin, a F-actin binding protein. Depletion of cortactin by RNAi in MIN6 cells altered the intracellular distribution of GluR2/3, suggesting that cortactin is involved in internalization of GluR2/3 in MIN6 cells. Taken together, our results suggest that pancreatic β-cells adjust the amount of AMPA-type GluR2/3 on the cell surface to regulate the receptive capability of the cell for glutamate.Key words: endocytosis, GluR2, AMPA, cortactin, MIN6.
Insights
AMPA stimulation causes AMPA-type glutamate receptor 2/3 (GluR2/3) internalization in pancreatic beta cells. Cortactin protein is crucial for this GluR2/3 endocytosis, regulating cell surface receptor levels.
Area of Science:
- Neuroscience
- Cell Biology
- Endocrinology
Background:
- AMPA-type glutamate receptors influence insulin release from pancreatic beta cells.
- The precise mechanisms of AMPA receptor involvement in beta cell function remain unclear.
Purpose of the Study:
- To investigate the dynamics and mechanisms of AMPA receptor internalization in pancreatic beta cells.
- To identify proteins involved in regulating AMPA receptor surface expression.
Main Methods:
- Utilized immunofluorescence and immunoelectron microscopy in MIN6 mouse beta cells.
- Performed surface biotinylation assays to quantify receptor internalization.
- Employed RNA interference (RNAi) to deplete cortactin and assess its role.
Main Results:
- AMPA stimulation induced significant internalization of glutamate receptor 2/3 (GluR2/3) in MIN6 cells.
- Internalized GluR2/3 co-localized with endocytic markers (clathrin, AP2, EEA1).
- Cortactin depletion via RNAi disrupted GluR2/3 intracellular distribution, indicating its role in endocytosis.
Conclusions:
- Pancreatic beta cells regulate AMPA-type GluR2/3 surface expression through endocytosis.
- Cortactin is a key protein mediating GluR2/3 internalization in response to AMPA.
- This mechanism allows beta cells to modulate glutamate receptor levels and influence insulin secretion.
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