Cell Physiology Laboratory, Department of Physiology and bioMembrane Plasticity Research Center, Seoul National University College of Medicine and Neuroscience Research Institute, Seoul National University Medical Research Center, Seoul, Republic of Korea.
J Neurophysiol. 2013 Apr;109(7):1724-34. doi: 10.1152/jn.00728.2012. Epub 2013 Jan 2.
The sensitivity of posttetanic potentiation (PTP) to high-frequency stimulation (HFS) steeply decays during the first 2 postnatal weeks. We investigated the underlying mechanisms for the developmental change of PTP induced by HFS (100 Hz, 2 s) at postnatal days 4-6 and 9-11 at the rat calyx of Held synapse. Low-concentration tetraphenylphosphonium (2 μM), an inhibitor of mitochondrial Na(+)/Ca(2+) exchanger, suppressed the amount of posttetanic residual Ca(2+) and PTP to a larger extent at the immature calyx synapse, indicating a developmental reduction of mitochondrial contribution to PTP. The higher amount of mitochondrial Ca(2+) uptake during HFS and consequent posttetanic residual Ca(2+) at the immature calyx of Held was associated with higher peak of HFS-induced Ca(2+) transients, most likely because the mitochondrial Ca(2+) uptake during HFS was supralinearly dependent on the presynaptic resting Ca(2+) level. Probing into the contribution of Na(+)/Ca(2+) exchangers to Ca(2+) clearance, we found a specific upregulation of the K(+)-dependent Na(+)/Ca(2+) exchanger (NCKX) activity in the mature calyx of Held. We conclude that the upregulation of NCKX limits the Ca(2+) buildup and inhibits mitochondrial Ca(2+) uptake during HFS, which in turn results in the reduction of posttetanic residual Ca(2+) and PTP at the mature calyx of Held synapse.
强直后增强(PTP)对高频刺激(HFS)的敏感性在出生后前 2 周内急剧下降。我们在出生后第 4-6 天和第 9-11 天,在大鼠盖氏环突触研究了由 HFS(100Hz,2s)诱导的 PTP 发育变化的潜在机制。低浓度四苯膦(2μM),一种线粒体 Na(+)/Ca(2+)交换器抑制剂,在不成熟的盖氏环突触中,对 PTP 的强直后残余 Ca(2+)和 PTP 的抑制作用更大,表明线粒体对 PTP 的贡献呈发育性降低。在不成熟的盖氏环中,HFS 期间线粒体摄取 Ca(2+)的量较高,随后强直后残余 Ca(2+)也较高,这与 HFS 诱导的 Ca(2+)瞬变的峰值较高有关,这很可能是因为 HFS 期间线粒体摄取 Ca(2+)与突触前静息 Ca(2+)水平呈超线性依赖关系。探究 Na(+)/Ca(2+)交换器对 Ca(2+)清除的贡献,我们发现成熟盖氏环中 K(+)-依赖性 Na(+)/Ca(2+)交换器(NCKX)的活性特异性上调。我们得出结论,NCKX 的上调限制了 HFS 期间 Ca(2+)的积累并抑制了线粒体 Ca(2+)摄取,这反过来又导致成熟盖氏环突触中强直后残余 Ca(2+)和 PTP 的减少。