Baade Carolin, Byczkowicz Niklas, Hallermann Stefan
Carl-Ludwig-Institute for Physiology, Medical Faculty, University of Leipzig, Liebigstr. 27, Leipzig, 04103, Germany.
Synapse. 2016 Jul;70(7):269-76. doi: 10.1002/syn.21898. Epub 2016 Mar 7.
Neuronal integration of high-frequency signals is important for rapid information processing. Cerebellar mossy fiber axons (MFs) can fire action potentials (APs) at frequencies of more than one kilohertz. However, it is unclear whether and how the postsynaptic cerebellar granule cells (GCs) are able to process these high-frequency MF inputs. Here, we measured AP firing in GCs during high-frequency MF stimulation and show that GC firing frequency increased non-linearly when MF stimulation frequency was increased from 100 to 750 Hz. To investigate the mechanisms enabling such high-frequency signaling, we analyzed the role of N-methyl-d-aspartate receptors (NMDARs), which have been implicated in synaptic signaling at lower frequencies. Application of D-2-amino-5-phosphonopentanoic acid (APV), a potent inhibitor of NMDARs, strongly impaired the GC firing frequency during high-frequency MF stimulation. APV had no significant effect on single excitatory postsynaptic potentials (EPSPs) or currents (EPSCs) evoked at 1 Hz at resting membrane potentials. However, the time course of EPSCs evoked at 1 Hz at depolarized potentials or following high-frequency MF stimulation was accelerated by APV. Thus, our results show that NMDAR-mediated currents amplify high-frequency MF inputs by prolonging the time courses of synaptic inputs, thereby causing greater synaptic summation of inputs. Hence, NMDARs support the integration of MF synaptic input at frequencies up to at least 750 Hz. Synapse 70:269-276, 2016. © 2016 Wiley Periodicals, Inc.
高频信号的神经元整合对于快速信息处理很重要。小脑苔藓纤维轴突(MFs)能够以超过一千赫兹的频率发放动作电位(APs)。然而,尚不清楚突触后小脑颗粒细胞(GCs)是否以及如何能够处理这些高频MF输入。在这里,我们在高频MF刺激期间测量了GCs中的AP发放,并表明当MF刺激频率从100赫兹增加到750赫兹时,GC发放频率呈非线性增加。为了研究实现这种高频信号传导的机制,我们分析了N-甲基-D-天冬氨酸受体(NMDARs)的作用,该受体在较低频率的突触信号传导中发挥作用。应用NMDARs的强效抑制剂D-2-氨基-5-磷酸戊酸(APV),在高频MF刺激期间强烈损害了GC发放频率。APV对静息膜电位下1赫兹诱发的单个兴奋性突触后电位(EPSPs)或电流(EPSCs)没有显著影响。然而,在去极化电位下或高频MF刺激后1赫兹诱发的EPSCs的时间进程被APV加速。因此,我们的结果表明,NMDAR介导的电流通过延长突触输入的时间进程来放大高频MF输入,从而导致更大的输入突触总和。因此,NMDARs支持至少高达750赫兹频率下MF突触输入的整合。突触 70:269 - 276,2016年。©2016威利期刊公司。