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Evidence that heterosynaptic depolarization underlies associativity of long-term potentiation in rat hippocampus.

机译:异突触去极化是大鼠海马长期增强相关性的基础。

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摘要

1. Whole-cell patch-clamp recording has been used to study the effect of heterosynaptic depolarization on pure N-methyl-D-aspartate (NMDA) receptor-mediated synaptic transmission in the CA1 region of rat hippocampal slices. 2. In neurones voltage clamped at -60 mV, paired-pulse stimulation of one set of Schaffer collateral-commissural fibres resulted in homosynaptic paired-pulse facilitation of the NMDA receptor-mediated excitatory postsynaptic current (EPSCN). In contrast, stimulation of one set of fibres prior to stimulation of a second set of fibres (i.e. heterosynaptic paired-pulse stimulation) did not result in any heterosynaptic interactions. 3. However, under current-clamp conditions, heterosynaptic paired-pulse stimulation resulted in heterosynaptic 'paired-pulse facilitation' of the NMDA receptor-mediated excitatory postsynaptic potential (EPSPN). 4. In neurones held at -50 or -40 mV, perfusion of nominally Mg(2+)-free medium converted the response to heterosynaptic paired-pulse stimulation from 'heterosynaptic facilitation' to 'heterosynaptic depression' of EPSPN. 5. When neurones were held at potentials of between -30 and +40 mV then heterosynaptic paired-pulse stimulation, in normal Mg(2+)-containing medium, resulted in 'paired-pulse depression' of EPSPN. Under voltage-clamp conditions (tested at +40 mV) no heterosynaptic interactions were seen. 6. The time course of 'heterosynaptic facilitation' at -60 mV and of 'heterosynaptic depression' at +40 mV of EPSPN was similar to the time course of EPSCN. 7. We conclude, firstly, that the voltage clamp is able to prevent any voltage breakthrough associated with the synaptic activation of NMDA receptors from influencing neighbouring synapses. Secondly, when the neurone is not voltage clamped these same synapses are strongly influenced by the spreading depolarization generated by the synaptic activation of their neighbours. The time course and direction of this influence are compatible with the hypothesis that spreading synaptic depolarization, leading to a reduction of the voltage-dependent Mg2+ block of synaptic NMDA receptor channels, underlies the property of associativity.
机译:1.全细胞膜片钳记录已用于研究异突触去极化对大鼠海马切片CA1区纯N-甲基-D-天冬氨酸(NMDA)受体介导的突触传递的影响。 2.在电压钳位在-60 mV的神经元中,成对脉冲刺激一组Schaffer侧副连合纤维导致NMDA受体介导的兴奋性突触后电流(EPSCN)的同态突触成对脉冲促进。相反,在刺激第二组纤维之前刺激一组纤维(即异突触对脉冲刺激)不会导致任何异突触相互作用。 3.然而,在电流钳制条件下,异突触配对脉冲刺激导致NMDA受体介导的兴奋性突触后电位(EPSPN)的异突触“配对脉冲促进”。 4.在保持在-50或-40 mV的神经元中,名义上不含Mg(2+)的培养基的灌注将对EPSPN的异源突触配对脉冲刺激的反应从“异源突触促进”转变为“异源突触抑制”。 5.当神经元的电位保持在-30至+40 mV之间时,在含Mg(2+)的正常培养基中,异突触配对脉冲刺激会导致EPSPN的“配对脉冲抑制”。在电压钳制条件下(在+40 mV下测试),未观察到异突触相互作用。 6. EPSPN的-60 mV的“异族突触促进”和+40 mV的“异突触抑制”的时程与EPSCN的时程相似。 7.我们首先得出结论,电压钳能够防止与NMDA受体的突触激活相关的任何电压突破影响邻近的突触。其次,当神经元未被电压钳制时,这些相同的突触会受到其邻居的突触激活所产生的扩展去极化的强烈影响。这种影响的时间过程和方向与以下假设相吻合,即,扩散的突触去极化导致突触NMDA受体通道的电压依赖性Mg2 +阻滞的减少,这是缔合性的基础。

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