Debanne D, Gähwiler B H, Thompson S M
Brain Research Institute, University of Zurich, Switzerland.
Proc Natl Acad Sci U S A. 1996 Oct 1;93(20):11225-30. doi: 10.1073/pnas.93.20.11225.
The requirement for cooperative interactions between multiple synaptic inputs in the induction of long-term potentiation (LTP) and long-term depression (LTD) has been tested at Schaffer collateral synapses with paired recordings from monosynaptically coupled CA3-CA1 cell pairs in rat hippocampal slice cultures. Tetanization of single presynaptic neurons at 50 Hz (repeated 5-7 times for 300-500 ms each) induced only a transient potentiation (< 3 min) of excitatory postsynaptic potentials (EPSPs). Persistent potentiation (> 15 min) was induced only when single presynaptic action potentials were synchronously paired with directly induced postsynaptic depolarizing pulses (repeated 50-100 times). Tetanus-induced potentiation of extracellularly evoked EPSPs lasting > 4 min could only be obtained if the EPSP was > 4 mV. Because unitary EPSP amplitudes average approximately 1 mV, we conclude that high-frequency discharge must occur synchronously] in 4-5 CA3 cells for LTP to be induced in a common postsynaptic CA1 cell. Asynchronous pairing of presynaptic action potentials with postsynaptic depolarizing current pulses (preceding each EPSP by 800 ms) depressed both naive and previously potentiated unitary EPSPs. Likewise, homosynaptic LTD of unitary EPSPs was induced when the presynaptic cell was tetanized at 3 Hz for 3 min, regardless of their amplitude (0.3-3.2 mV). Homosynaptic LTD of extracellularly evoked Schaffer collateral EPSPs < 4 mV could be induced if no inhibitory postsynaptic potential was apparent, but was prevented by eliciting a large inhibitory postsynaptic potential or by injection of hyperpolarizing current in the postsynaptic cell. We conclude that cooperative interactions among multiple excitatory inputs are not required for induction of homosynaptic LTD of unitary EPSPs.
在大鼠海马切片培养物中,通过对单突触连接的CA3-CA1细胞对进行配对记录,在Schaffer侧支突触处测试了长时程增强(LTP)和长时程抑制(LTD)诱导过程中多个突触输入之间合作相互作用的要求。以50 Hz的频率对单个突触前神经元进行强直刺激(每次重复5 - 7次,每次持续300 - 500 ms)仅诱导兴奋性突触后电位(EPSP)出现短暂增强(<3分钟)。只有当单个突触前动作电位与直接诱导的突触后去极化脉冲同步配对时(重复50 - 100次),才能诱导出持续增强(>15分钟)。只有当EPSP>4 mV时,强直刺激诱导的细胞外诱发EPSP增强持续>4分钟才能获得。由于单个EPSP幅度平均约为1 mV,我们得出结论,为了在共同的突触后CA1细胞中诱导LTP,4 - 5个CA3细胞必须同步发生高频放电。突触前动作电位与突触后去极化电流脉冲的异步配对(在每个EPSP之前800 ms)使未成熟的和先前增强的单个EPSP均降低。同样,当突触前细胞以3 Hz的频率进行3分钟的强直刺激时,无论单个EPSP的幅度如何(0.3 - 3.2 mV),都会诱导出单个EPSP的同突触LTD。如果没有明显的抑制性突触后电位,则可以诱导出细胞外诱发的Schaffer侧支EPSP<4 mV的同突触LTD,但通过引发大的抑制性突触后电位或在突触后细胞中注入超极化电流可以阻止这种情况。我们得出结论,诱导单个EPSP的同突触LTD不需要多个兴奋性输入之间的合作相互作用。