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哺乳动物中枢突触前膜 K+ 电流的活动依赖性调节

Activity-dependent modulation of K+ currents at presynaptic terminals of mammalian central synapses.

作者信息

Qian J, Saggau P

机构信息

Division of Neuroscience, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

J Physiol. 1999 Sep 1;519 Pt 2(Pt 2):427-37. doi: 10.1111/j.1469-7793.1999.0427m.x.

Abstract
  1. The activity-dependent regulation of presynaptic K+ currents at the CA3-CA1 synapse in the rat hippocampus was investigated during a train of evoked afferent action potentials. The waveforms of presynaptic compound action potentials (cAPs) and presynaptic Ca2+ transients ([Ca2+]pre,t) were measured with fluorescent voltage-sensitive and Ca2+-sensitive indicators in rat brain slices. 2. Under control conditions, presynaptic cAPs and the accompanying [Ca2+]pre,t displayed similar amplitudes for each stimulus, suggesting that there was no cumulative change of K+ and Ca2+ currents during the test train. However, when a subgroup of presynaptic K+ channels was blocked by a low concentration of 4-aminopyridine (4-AP, 40 microM), a significant facilitation of the [Ca2+]pre,t was observed. 3. This phenomenon was not due to a direct action of 4-AP on presynaptic Ca2+ channels, but to cumulative suppression of the K+ conductance as indicated by the corresponding change in waveforms of the cAP and presynaptic fibre volley. The observed facilitation was not an artifact by virtue of increased fibre recruitment, nor was it related to the accumulation of extracellular K+; rather, it was dependent on Ca2+ influx and stimulation frequency. The time course of recovery from facilitation was closely related to the decay of the intracellular Ca2+ concentration. 4. The facilitation was not blocked by a saturating concentration of 4-AP (8 mM) but was reduced during the application of the K+ channel blocker tetraethylammonium (TEA, 10 mM), implicating the involvement of TEA-sensitive K+ channels. Such activity-dependent suppression of presynaptic K+ conductance could lead to excessive transmitter release and might explain the hippocampal epileptiform activity that can be induced by application of 4-AP.
摘要
  1. 在一系列诱发的传入动作电位期间,研究了大鼠海马体中CA3 - CA1突触处突触前钾离子电流的活动依赖性调节。使用荧光电压敏感和钙离子敏感指示剂,在大鼠脑片中测量突触前复合动作电位(cAPs)和突触前钙离子瞬变([Ca2+]pre,t)的波形。2. 在对照条件下,每次刺激时突触前cAPs和伴随的[Ca2+]pre,t显示出相似的幅度,这表明在测试序列期间钾离子和钙离子电流没有累积变化。然而,当突触前钾离子通道的一个亚组被低浓度的4 - 氨基吡啶(4 - AP,40 microM)阻断时,观察到[Ca2+]pre,t有显著的促进作用。3. 这种现象不是由于4 - AP对突触前钙离子通道的直接作用,而是由于cAP和突触前纤维群峰电位波形的相应变化所表明的钾离子电导的累积抑制。观察到的促进作用不是由于纤维募集增加导致的假象,也与细胞外钾离子的积累无关;相反,它依赖于钙离子内流和刺激频率。促进作用恢复的时间进程与细胞内钙离子浓度的衰减密切相关。4. 促进作用未被饱和浓度的4 - AP(8 mM)阻断,但在应用钾离子通道阻滞剂四乙铵(TEA,10 mM)期间有所降低,这表明TEA敏感的钾离子通道参与其中。这种对突触前钾离子电导的活动依赖性抑制可能导致递质过度释放,并可能解释应用4 - AP可诱发的海马体癫痫样活动。

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本文引用的文献

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Modulation of transmitter release by action potential duration at the hippocampal CA3-CA1 synapse.
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