Pankratov Yuri V, Lalo Ulyana V, Krishtal Oleg A
Department of Cellular Membranology, Bogomoletz Institute of Physiology, 01024 Kiev, Ukraine.
J Neurosci. 2002 Oct 1;22(19):8363-9. doi: 10.1523/JNEUROSCI.22-19-08363.2002.
ATP receptors participate in synaptic transmission and intracellular calcium signaling in the hippocampus by providing a component of the excitatory input to CA1 pyramidal neurons. The activation of P2X purinoreceptors generates calcium influx that does not require cell depolarization, but this response desensitizes at increased rates of stimulation. Here we show that inhibition of P2X receptors dramatically facilitates the induction of long-term potentiation (LTP). High-frequency stimulation (HFS) (1 sec) induced LTP in CA1, whereas brief HFS (0.2 sec) caused only short-term potentiation. However, when P2X receptors were inhibited by PPADS (pyridoxal phosphate-6-azophenyl-2'-4'-disulphonic acid) or desensitized by the nonhydrolyzable ATP analog alpha,beta-methyleneATP, brief HFS reliably induced LTP. Inhibition of P2X receptors had no facilitatory effect on LTP when NMDA receptors were blocked. We hypothesized that P2X receptors affect the threshold for LTP by altering Ca2+-dependent inactivation of NMDA receptors. In isolated pyramidal CA1 neurons and hippocampal slices, activation of P2X receptors did cause inhibition of NMDA receptor-mediated current. We suggest that, by controlling the background calcium and thus the activity of NMDA receptors at low firing frequencies, P2X receptors act as a dynamic low-frequency filter so that weak stimuli do not induce LTP.
ATP 受体通过为 CA1 锥体神经元提供兴奋性输入的一个组成部分,参与海马体中的突触传递和细胞内钙信号传导。P2X 嘌呤受体的激活会产生钙内流,这种内流不需要细胞去极化,但这种反应在刺激频率增加时会发生脱敏。在这里,我们表明抑制 P2X 受体可显著促进长时程增强(LTP)的诱导。高频刺激(HFS)(1 秒)在 CA1 中诱导出 LTP,而短暂的 HFS(0.2 秒)仅引起短时程增强。然而,当 P2X 受体被 PPADS(磷酸吡哆醛 -6- 偶氮苯基 -2'-4'- 二磺酸)抑制或被不可水解的 ATP 类似物 α,β- 亚甲基 ATP 脱敏时,短暂的 HFS 能可靠地诱导出 LTP。当 NMDA 受体被阻断时,抑制 P2X 受体对 LTP 没有促进作用。我们推测 P2X 受体通过改变 NMDA 受体的钙依赖性失活来影响 LTP 的阈值。在分离的 CA1 锥体神经元和海马切片中,P2X 受体的激活确实会抑制 NMDA 受体介导的电流。我们认为,通过控制背景钙从而控制低频放电时 NMDA 受体的活性,P2X 受体起到动态低频滤波器的作用,使得弱刺激不会诱导 LTP。