Xiang Zixiu, Huguenard John R, Prince David A
Stanford University School of Medicine, Department of Neurology and Neurological Sciences, California 94305, USA.
J Neurophysiol. 2002 Aug;88(2):740-50. doi: 10.1152/jn.2002.88.2.740.
Properties of GABA(A) receptor-mediated unitary inhibitory postsynaptic currents (uIPSCs) in pyramidal (P) cells, evoked by fast spiking (FS) and low-threshold spike (LTS) subtypes of interneurons in layer V of rat visual cortex slices were examined using dual whole cell recordings. uIPSCs evoked by FS cells were larger and faster rising than those evoked by LTS cells, consistent with the known primary projections of FS and LTS cell axons to perisomatic and distal dendritic areas of layer V pyramidal cells, respectively, and the resulting electrotonic attenuation for LTS-P synaptic events. Unexpectedly, the decay time constants for LTS-P and FS-P uIPSCs were not significantly different. Modeling results were consistent with differences in the underlying GABA(A) receptor-mediated conductance at LTS-P and FS-P synapses. Paired-pulse depression (PPD), present at both synapses, was associated with an increase in failure rate and a decrease in coefficient of variation, indicating that presynaptic mechanisms were involved. Furthermore, the second and first uIPSC amplitudes during PPD were not inversely correlated, suggesting that PPD at both synapses is independent of previous release and might not result from depletion of the releasable pool of synaptic vesicles. Short, 20-Hz trains of action potentials in presynaptic interneurons evoked trains of uIPSCs with exponentially decreasing amplitudes at both FS-P and LTS-P synapses. FS-P uIPSC amplitudes declined more slowly than those of LTS-P uIPSCs. Thus FS and LTS cells, with their differences in firing properties, synaptic connectivity with layer V P cells, and short-term synaptic dynamics, might play distinct roles in regulating the input-output relationship of the P cells.
利用双全细胞膜片钳记录技术,研究了大鼠视觉皮层切片V层中快突触发放(FS)和低阈值发放(LTS)亚型中间神经元诱发的锥体(P)细胞中GABA(A)受体介导的单位抑制性突触后电流(uIPSCs)的特性。FS细胞诱发的uIPSCs比LTS细胞诱发的更大且上升更快,这与已知的FS和LTS细胞轴突分别向V层锥体细胞的胞体周围和远端树突区域的主要投射,以及LTS-P突触事件产生的电紧张性衰减一致。出乎意料的是,LTS-P和FS-P uIPSCs的衰减时间常数没有显著差异。建模结果与LTS-P和FS-P突触处潜在的GABA(A)受体介导的电导差异一致。两个突触处均存在的配对脉冲抑制(PPD)与失败率增加和变异系数降低相关,表明涉及突触前机制。此外,PPD期间第二个和第一个uIPSC幅度并非呈负相关,这表明两个突触处的PPD与先前的释放无关,可能不是由可释放突触小泡池的耗尽导致的。突触前中间神经元中短的20 Hz动作电位串在FS-P和LTS-P突触处均诱发了幅度呈指数下降的uIPSCs串。FS-P uIPSC幅度的下降比LTS-P uIPSCs更慢。因此,FS和LTS细胞在放电特性、与V层P细胞的突触连接以及短期突触动力学方面存在差异,可能在调节P细胞的输入-输出关系中发挥不同的作用。