Glycine enhances microglial intracellular calcium signaling. A role for sodium-coupled neutral amino acid transporters

被引:0
|
作者
Jimmy Van den Eynden
Kristof Notelaers
Bert Brône
Daniel Janssen
Katherine Nelissen
Sheen SahebAli
Inge Smolders
Niels Hellings
Paul Steels
Jean-Michel Rigo
机构
[1] Hasselt University and Transnationale Universiteit Limburg,Institute of Biomedical Research
来源
Pflügers Archiv - European Journal of Physiology | 2011年 / 461卷
关键词
Glycine; Calcium; Transporter; Microglia; Amino acid transport;
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学科分类号
摘要
The inhibitory neurotransmitter glycine is known to enhance microglial nitric oxide production. However, up to now, the mechanism is undocumented. Since calcium is an important second messenger in both immune and glial cells, we studied the effects of glycine on intracellular calcium signaling. We found that millimolar concentrations of glycine enhance microglial intracellular calcium transients induced by 100 μM ATP or by 500 nM thapsigargin. This modulation was unaffected by the glycine receptor antagonist strychnine and could not be mimicked by glycine receptor agonists such as taurine or β-alanine, indicating glycine receptor independency. The modulation of calcium responses could be mimicked by several structurally related amino acids (e.g., serine, alanine, or glutamine) and was inhibited in the presence of the neutral amino acid transporter substrate α-aminoisobutyric acid (AIB). We correlated these findings to immunofluorescence glycine uptake experiments which showed a clear glycine uptake which was inhibited by AIB. Furthermore, all amino acids that were shown to modulate calcium responses also evoked AIB-sensitive inward currents, mainly carried by sodium, as demonstrated by patch clamp experiments. Based on these findings, we propose that sodium-coupled neutral amino acid transporters are responsible for the observed glycine modulation of intracellular calcium responses.
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页码:481 / 491
页数:10
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