Genre
- Journal Article
Interleukin (IL)-1beta is a pro-inflammatory cytokine involved in modulating inflammation and stress responses in the brain. Central administration of IL-1beta impairs both memory functions and long-term potentiation (LTP) induction. However, the molecular events responsible for the downstream effects of IL-1beta are not fully understood. Given the potential regulatory role of IL-1beta in LTP, we assessed whether IL-1beta influences surface expression and phosphorylation of glutamate receptors. We found that IL-1beta, but not IL-10 or tumour necrosis factor (TNF)-alpha, down-regulated the surface expression and Ser831 phosphorylation of the alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor subunit GluR1. Agents that block IL-1beta receptor activity abolished these effects. In contrast, no change in the surface expression of the N-methyl-d-aspartate (NMDA) receptor subunit NR1 was observed. The inhibition of NMDA receptor activity or depletion of extracellular calcium blocked IL-1beta effects on GluR1 phosphorylation and surface expression. NMDA-mediated calcium influx was also regulated by IL-1beta. These findings suggest that IL-1beta selectively regulates AMPA receptor phosphorylation and surface expression through extracellular calcium and an unknown mechanism involving NMDA receptor activity.
Department of Psychiatry, Neurochemical Research Unit, University of Alberta, Canada.
Netherlands
LR: 20061115; PUBM: Print-Electronic; DEP: 20060419; JID: 8109498; 0 (Interleukin-1); 0 (Protein Subunits); 0 (Receptors, AMPA); 0 (glutamate receptor ionotropic, AMPA 1); 2005/09/20 [received]; 2006/03/05 [revised]; 2006/03/06 [accepted]; 2006/04/19 [aheadofprint]; ppublish
Source type: Electronic(1)
Language
- English
Subjects
- animals
- Cells, Cultured
- Gene Expression Regulation/immunology
- Phosphorylation
- Receptors, AMPA/antagonists & inhibitors/biosynthesis
- Hippocampus/immunology/metabolism
- Protein Subunits/antagonists & inhibitors/biosynthesis
- Rats
- Rats, Wistar
- Neurons/immunology/metabolism
- Interleukin-1/physiology