Activation of synaptic and extrasynaptic glycine receptors by taurine in preoptic hypothalamic neurons

•Taurine activated glycine receptors on preoptic hypothalamic area neurons and responses were action potential independent.•Taurine activated homo- and hetro-meric glycine receptors on preoptic hypothalamic area neurons.•At higher concentration taurine activated GABAA receptors on preoptic hypothala...

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Veröffentlicht in:Neuroscience letters 2015-11, Vol.608, p.51-56
Hauptverfasser: Bhattarai, Janardhan Prasad, Park, Soo Joung, Chun, Sang Woo, Cho, Dong Hyu, Han, Seong Kyu
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Sprache:eng
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Zusammenfassung:•Taurine activated glycine receptors on preoptic hypothalamic area neurons and responses were action potential independent.•Taurine activated homo- and hetro-meric glycine receptors on preoptic hypothalamic area neurons.•At higher concentration taurine activated GABAA receptors on preoptic hypothalamic area neurons. Taurine is an essential amino-sulfonic acid having a fundamental function in the brain, participating in both cell volume regulation and neurotransmission. Using a whole cell voltage patch clamp technique, the taurine-activated neurotransmitter receptors in the preoptic hypothalamic area (PHA) neurons were investigated. In the first set of experiments, different concentrations of taurine were applied on PHA neurons. Taurine-induced responses were concentration-dependent. Taurine-induced currents were action potential-independent and sensitive to strychnine, suggesting the involvement of glycine receptors. In addition, taurine activated not only α-homomeric, but also αβ-heteromeric glycine receptors in PHA neurons. Interestingly, a low concentration of taurine (0.5mM) activated glycine receptors, whereas a higher concentration (3mM) activated both glycine and gamma-aminobutyric acid A (GABAA) receptors in PHA neurons. These results suggest that PHA neurons are influenced by taurine and respond via glycine and GABAA receptors.
ISSN:0304-3940
1872-7972
DOI:10.1016/j.neulet.2015.10.012