Baptista Vander, Varanda Wamberto Antonio
Department of Physiology, School of Medicine of Ribeirão Preto/University of São Paolo, Av. Bandeirantes 3900, 14049-900 Ribeirão Preto/SP, Brazil.
J Neurophysiol. 2005 Jul;94(1):147-52. doi: 10.1152/jn.00927.2004. Epub 2005 Mar 2.
The nucleus of the tractus solitarius (NTS) plays an important role in the control of several autonomic reflex functions and has glutamate and GABA as main neurotransmitters. In this work, we used patch-clamp recordings in transverse slice preparations from rats to study whether the glycine binding site of the N-methyl-D-aspartate (NMDA) receptor is saturated or not in neurons of the subpostremal NTS. Except at hyperpolarized voltages and close to the reversal potential, glycine potentiated the NMDA responses in a concentration-dependent manner. The total charge transferred by glutamatergic currents was enhanced by glycine (500 microM; from 28 +/- 13 to 42 +/- 18 pC at +50 mV, n = 7, P < 0.05). Glycine increased the conductance of the postsynaptic membrane, without altering its reversal potential, both in the presence (from 2.4 +/- 0.06 to 3.4 +/- 0.09 nS; n = 7) and absence (from 3.1 +/- 0.06 to 4.4 +/- 0.10 nS; n = 8) of Mg2+ in the bathing solution. d-serine, in the presence of strychnine, also increased the amplitude of the NMDA component (by 68 +/- 19%, P < 0.05, n = 5). The membrane potential was hyperpolarized (16 +/- 6 mV, n = 8) by glycine, suggesting the presence of inhibitory glycinergic receptors. Our results indicate that the glycine site of the NMDA receptor in neurons of the subpostremal NTS is not saturated and that glycine may act as a modulator of the NMDA transmission in this nucleus.
孤束核(NTS)在多种自主神经反射功能的控制中发挥着重要作用,其主要神经递质为谷氨酸和γ-氨基丁酸(GABA)。在本研究中,我们采用大鼠横切片标本进行膜片钳记录,以研究尾端孤束核(subpostremal NTS)神经元中N-甲基-D-天冬氨酸(NMDA)受体的甘氨酸结合位点是否饱和。除了在超极化电压下且接近反转电位时,甘氨酸以浓度依赖的方式增强了NMDA反应。甘氨酸增强了谷氨酸能电流转移的总电荷量(500 μM;在+50 mV时,从28±13 pC增加到42±18 pC,n = 7,P < 0.05)。无论是在浴液中存在Mg2+(从2.4±0.06 nS增加到3.4±0.09 nS;n = 7)还是不存在Mg2+(从3.1±0.06 nS增加到4.4±0.10 nS;n = 8)的情况下,甘氨酸均增加了突触后膜的电导,且未改变其反转电位。在存在士的宁的情况下,D-丝氨酸也增加了NMDA成分的幅度(增加了68±19%,P < 0.05,n = 5)。甘氨酸使膜电位超极化(16±6 mV,n = 8),提示存在抑制性甘氨酸能受体。我们的结果表明,尾端孤束核神经元中NMDA受体的甘氨酸位点不饱和,且甘氨酸可能作为该核团中NMDA传递的调节剂。