Turecek R, Trussell L O
Oregon Hearing Research Center and Vollum Institute, Portland 97201, USA.
Nature. 2001 May 31;411(6837):587-90. doi: 10.1038/35079084.
Glycine and GABAA (gamma-aminobutyric acid A) receptors are inhibitory neurotransmitter-gated Cl- channels localized in postsynaptic membranes. In some cases, GABAA receptors are also found presynaptically, but they retain their inhibitory effect as their activation reduces excitatory transmitter release. Here we report evidence for presynaptic ionotropic glycine receptors, using pre- and postsynaptic recordings of a calyceal synapse in the medial nucleus of the trapezoid body (MNTB). Unlike the classical action of glycine, presynaptic glycine receptors triggered a weakly depolarizing Cl- current in the nerve terminal. The depolarization enhanced transmitter release by activating Ca2+ channels and increasing resting intraterminal Ca2+ concentrations. Repetitive activation of glycinergic synapses on MNTB neurons also enhanced glutamatergic synaptic currents, indicating that presynaptic glycine receptors are activated by glycine spillover. These results reveal a novel site of action of the transmitter glycine, and indicate that under certain conditions presynaptic Cl- channels may increase transmitter release.
甘氨酸和GABAA(γ-氨基丁酸A)受体是位于突触后膜的抑制性神经递质门控氯离子通道。在某些情况下,GABAA受体也存在于突触前,但由于其激活会减少兴奋性递质释放,所以仍保持抑制作用。在此,我们利用对脑桥被盖网状核内侧核(MNTB)中一个杯状突触的突触前和突触后记录,报告了突触前离子型甘氨酸受体的证据。与甘氨酸的经典作用不同,突触前甘氨酸受体在神经末梢触发了微弱的去极化氯离子电流。这种去极化通过激活钙离子通道并增加静息时末梢内钙离子浓度来增强递质释放。对MNTB神经元上甘氨酸能突触的重复激活也增强了谷氨酸能突触电流,表明突触前甘氨酸受体是由甘氨酸外溢激活的。这些结果揭示了递质甘氨酸的一个新作用位点,并表明在某些条件下突触前氯离子通道可能会增加递质释放。