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首页> 外文期刊>The Journal of Physiology >Kinetics of Mg2+ unblock of NMDA receptors: implications for spike-timing dependent synaptic plasticity.
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Kinetics of Mg2+ unblock of NMDA receptors: implications for spike-timing dependent synaptic plasticity.

机译:NMDA受体的Mg2 +释放动力学:依赖于尖峰时间的突触可塑性。

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摘要

The time course of Mg(2+) block and unblock of NMDA receptors (NMDARs) determines the extent they are activated by depolarization. Here, we directly measure the rate of NMDAR channel opening in response to depolarizations at different times after brief (1 ms) and sustained (4.6 s) applications of glutamate to nucleated patches from neocortical pyramidal neurons. The kinetics of Mg(2+) unblock were found to be non-instantaneous and complex, consisting of a prominent fast component (time constant approximately 100 micros) and slower components (time constants 4 and approximately 300 ms), the relative amplitudes of which depended on the timing of the depolarizing pulse. Fitting a kinetic model to these data indicated that Mg(2+) not only blocks the NMDAR channel, but reduces both the open probability and affinity for glutamate, while enhancing desensitization. These effects slow the rate of NMDAR channel opening in response to depolarization in a time-dependent manner such that the slower components of Mg(2+) unblock are enhanced during depolarizations at later times after glutamate application. One physiological consequence of this is that brief depolarizations occurring earlier in time after glutamate application are better able to open NMDAR channels. This finding has important implications for spike-timing-dependent synaptic plasticity (STDP), where the precise (millisecond) timing of action potentials relative to synaptic inputs determines the magnitude and sign of changes in synaptic strength. Indeed, we find that STDP timing curves of NMDAR channel activation elicited by realistic dendritic action potential waveforms are narrower than expected assuming instantaneous Mg(2+) unblock, indicating that slow Mg(2+) unblock of NMDAR channels makes the STDP timing window more precise.
机译:Mg(2+)阻断和NMDA受体(NMDARs)解除阻断的时间过程决定了它们被去极化激活的程度。在这里,我们直接测量了谷氨酸对新皮层锥体神经元的成核斑块的短暂(1 ms)和持续(4.6 s)应用后,在不同时间响应去极化的NMDAR通道打开速率。 Mg(2+)畅通的动力学被发现是非瞬时且复杂的,包括一个突出的快速分量(时间常数约为100微米)和较慢的分量(时间常数分别为4和300 ms),其相对振幅取决于去极化脉冲的时间。对这些数据拟合动力学模型表明,Mg(2+)不仅会阻断NMDAR通道,而且会降低打开概率和对谷氨酸的亲和力,同时增强脱敏性。这些影响减慢了响应时间以去极化方式响应去极化的NMDAR通道打开的速率,从而使谷氨酸应用后的去极化过程中增强了Mg(2+)的较慢成分的解阻作用。这样做的一个生理学结果是,在应用谷氨酸盐后的较早时间发生短暂的去极化能更好地打开NMDAR通道。这一发现对依赖于尖峰时机的突触可塑性(STDP)具有重要的意义,在这种情况下,动作电位相对于突触输入的精确(毫秒)时间决定了突触强度变化的幅度和信号。确实,我们发现由实际树突状动作电位波形引起的NMDAR通道激活的STDP时序曲线比假定瞬时Mg(2+)解除阻塞的预期要窄,这表明NMDAR通道的Mg(2+)缓慢的解除阻塞使STDP时序窗口更加精确。

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