Kampa Björn M, Letzkus Johannes J, Stuart Greg J
Division of Neuroscience, John Curtin School of Medical Research, Australian National University, Canberra, Australia.
J Physiol. 2006 Jul 1;574(Pt 1):283-90. doi: 10.1113/jphysiol.2006.111062. Epub 2006 May 4.
Spike-timing-dependent synaptic plasticity (STDP) by definition requires the temporal association of pre- and postsynaptic action potentials (APs). Yet, in cortical pyramidal neurons pairing unitary EPSPs with single APs at low frequencies is ineffective at generating plasticity. Using recordings from synaptically coupled layer 5 pyramidal neurons, we show here that high-frequency (200 Hz) postsynaptic AP bursts, rather than single APs, are required for both long-term potentiation (LTP) induction and NMDA channel activation during EPSP-AP pairing at low frequencies. Furthermore, we find that AP bursts can lead to LTP induction and NMDA channel activation during EPSP-AP pairing at both positive and negative times. High-frequency AP bursts generated supralinear calcium signals in basal dendrites suggesting the generation of dendritic calcium spikes, as has been observed previously in apical dendrites during AP burst firing at frequencies greater than 100 Hz. Consistent with a role of these dendritic calcium spikes in LTP induction, pairing EPSPs with low frequency (50 Hz) AP bursts was ineffective in generating LTP. Furthermore, supralinear calcium signals in basal dendrites during AP bursts were blocked by low concentrations of the T- and R-type calcium channel antagonist nickel, which also blocked LTP and NMDA channel activation. These data suggest an important role of dendritic calcium spikes during AP bursts in determining both the efficacy and time window for STDP induction.
根据定义,尖峰时间依赖性突触可塑性(STDP)需要突触前和突触后动作电位(AP)的时间关联。然而,在皮质锥体神经元中,低频下将单一兴奋性突触后电位(EPSP)与单个AP配对在产生可塑性方面是无效的。利用突触耦合的第5层锥体神经元的记录,我们在此表明,在低频EPSP-AP配对期间,长期增强(LTP)诱导和NMDA通道激活都需要高频(200 Hz)突触后AP爆发,而不是单个AP。此外,我们发现,在正、负时间的EPSP-AP配对期间,AP爆发均可导致LTP诱导和NMDA通道激活。高频AP爆发在基底树突中产生超线性钙信号,提示树突钙峰的产生,正如之前在频率大于100 Hz的AP爆发放电期间在顶端树突中所观察到的那样。与这些树突钙峰在LTP诱导中的作用一致,将EPSP与低频(50 Hz)AP爆发配对在产生LTP方面是无效的。此外,AP爆发期间基底树突中的超线性钙信号被低浓度的T型和R型钙通道拮抗剂镍阻断,镍也阻断了LTP和NMDA通道激活。这些数据表明,AP爆发期间树突钙峰在确定STDP诱导的效能和时间窗口方面起着重要作用。