Godino María del Carmen, Torres Magdalena, Sánchez-Prieto José
Departamento de Bioquímica, Facultad de Veterinaria, Universidad Complutense, Madrid, Spain.
J Neurochem. 2007 Jun;101(6):1471-82. doi: 10.1111/j.1471-4159.2006.04422.x. Epub 2007 Feb 5.
We have investigated the mechanisms by which activation of cannabinoid receptors reduces glutamate release from cerebrocortical nerve terminals. Glutamate release evoked by depolarization of nerve terminals with high KCl (30 mmol/L) involves N and P/Q type Ca(2+)channel activation. However, this release of glutamate is independent of Na(+) or K(+) channel activation as it was unaffected by blockers of these channels (tetrodotoxin -TTX- or tetraethylammonium TEA). Under these conditions in which only Ca(2+) channels contribute to pre-synaptic activity, the activation of cannabinoid receptors with WIN55,212-2 moderately reduced glutamate release (26.4 +/- 1.2%) by a mechanism that in this in vitro model is resistant to TTX and consistent with the inhibition of Ca(2+) channels. However, when nerve terminals are stimulated with low KCl concentrations (5-10 mmol/L) glutamate release is affected by both Ca(2+) antagonists and also by TTX and TEA, indicating the participation of Na(+) and K(+) channel firing in addition to Ca(2+) channel activation. Interestingly, stimulation of nerve terminals with low KCl concentrations uncovered a mechanism that further inhibited glutamate release (81.78 +/- 4.9%) and that was fully reversed by TEA. This additional mechanism is TTX-sensitive and consistent with the activation of K(+) channels. Furthermore, Ca(2+) imaging of single boutons demonstrated that the two pre-synaptic mechanisms by which cannabinoid receptors reduce glutamate release operate in distinct populations of nerve terminals.
我们研究了大麻素受体激活后减少大脑皮质神经末梢谷氨酸释放的机制。用高钾(30 mmol/L)使神经末梢去极化诱发的谷氨酸释放涉及N型和P/Q型钙通道的激活。然而,这种谷氨酸释放不依赖于钠或钾通道的激活,因为它不受这些通道阻滞剂(河豚毒素-TTX-或四乙铵-TEA)的影响。在仅钙通道参与突触前活动的这些条件下,用WIN55,212-2激活大麻素受体可通过一种在该体外模型中对TTX有抗性且与抑制钙通道一致的机制适度减少谷氨酸释放(26.4±1.2%)。然而,当用低钾浓度(5-10 mmol/L)刺激神经末梢时,谷氨酸释放受到钙拮抗剂以及TTX和TEA的影响,这表明除了钙通道激活外,钠和钾通道的放电也参与其中。有趣的是,用低钾浓度刺激神经末梢发现了一种进一步抑制谷氨酸释放的机制(81.78±4.9%),且该机制可被TEA完全逆转。这种额外的机制对TTX敏感且与钾通道的激活一致。此外,对单个突触小体的钙成像表明,大麻素受体减少谷氨酸释放的两种突触前机制在不同的神经末梢群体中起作用。