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海氏神经节突触前钙离子需求及强直后增强的发育调控

Presynaptic Ca2+ requirements and developmental regulation of posttetanic potentiation at the calyx of Held.

作者信息

Korogod Natalya, Lou Xuelin, Schneggenburger Ralf

机构信息

AG Synaptische Dynamik und Modulation and Abteilung Membranbiophysik, Max-Planck-Institut für Biophysikalische Chemie, D-37077 Göttingen, Germany.

出版信息

J Neurosci. 2005 May 25;25(21):5127-37. doi: 10.1523/JNEUROSCI.1295-05.2005.

Abstract

Large excitatory synapses in the auditory system, such as the calyx of Held, faithfully transmit trains of action potentials up to a frequency of a few hundred hertz, and these synapses are thought to display a limited repertoire of synaptic plasticity. Here, we show that brief trains of 100 Hz stimulation induce posttetanic potentiation (PTP) of transmitter release at the calyx of Held. In young rats [postnatal day 4 (P4) to P6], PTP could be induced with shorter 100 Hz trains compared with older age groups (P8-P10 and P12-P14), but the maximal amount of PTP was similar, with 200% of control EPSC amplitude. The size of the readily releasable pool of vesicles was not increased significantly during PTP. Bath application of the membrane-permeable Ca2+ chelator EGTA-AM suppressed PTP, indicating a role for presynaptic Ca2+ in PTP at the calyx of Held. Presynaptic Ca2+ imaging showed that the intracellular Ca2+ concentration, [Ca2+]i, was increased by 40-120 nM at the peak of PTP, and this "residual" [Ca2+]i decayed in parallel with PTP, with time constants in the range of 10-60 s. During whole-cell recording of the presynaptic calyx of Held, PTP was absent, and the decay of residual [Ca2+]i was strongly accelerated. The data show that the calyx of Held expresses a mechanism of transmitter release potentiation in which a small, sustained elevation of basal [Ca2+]i increases the transmitter release probability after trains of high-frequency stimulation.

摘要

听觉系统中的大型兴奋性突触,如 Held 壶腹,能忠实地传递高达几百赫兹频率的动作电位序列,并且这些突触被认为具有有限的突触可塑性模式。在此,我们表明 100Hz 的短刺激序列可诱导 Held 壶腹处递质释放的强直后增强(PTP)。在幼鼠[出生后第 4 天(P4)至第 6 天]中,与年龄较大的组(P8 - P10 和 P12 - P14)相比,用更短的 100Hz 刺激序列即可诱导 PTP,但 PTP 的最大幅度相似,为对照 EPSC 幅度的 200%。在 PTP 期间,易于释放的囊泡池大小没有显著增加。浴用膜通透性 Ca2 +螯合剂 EGTA - AM 可抑制 PTP,表明突触前 Ca2 +在 Held 壶腹的 PTP 中起作用。突触前 Ca2 +成像显示,在 PTP 峰值时,细胞内 Ca2 +浓度[Ca2 +]i 增加了 40 - 120 nM,并且这种“残余”[Ca2 +]i 与 PTP 平行衰减,时间常数在 10 - 60 s 范围内。在对 Held 壶腹进行全细胞记录时,不存在 PTP,并且残余[Ca2 +]i 的衰减强烈加速。数据表明,Held 壶腹表达了一种递质释放增强机制,其中基础[Ca2 +]i 的小幅度持续升高会增加高频刺激序列后的递质释放概率。

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