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海马体CA3锥体神经元中两种解剖学上不同的兴奋性突触的动力学特性。

Kinetic properties of two anatomically distinct excitatory synapses in hippocampal CA3 pyramidal neurons.

作者信息

Williams S H, Johnston D

机构信息

Department of Neurology, Baylor College of Medicine, Houston, Texas 77030.

出版信息

J Neurophysiol. 1991 Sep;66(3):1010-20. doi: 10.1152/jn.1991.66.3.1010.

Abstract
  1. We have investigated the kinetic properties of pharmacologically isolated excitatory synaptic currents in hippocampal CA3 neurons. Two distinct anatomic pathways, the commissural/associational (C/A) and the mossy fiber inputs, were compared to test the hypothesis derived from cable theory that distal inputs have slower kinetics than proximal inputs when measured at the soma. 2. Intracellular recordings were made from adult rat hippocampal slices using a single-electrode voltage clamp and low-resistance microelectrodes. A mixture of 10 microM picrotoxin and 10 microM bicuculine was used to block completely fast GABAergic inhibition. The slow inhibitory input was blocked by intracellular cesium. 3. The mean reversal potential of mossy fiber synaptic currents, -2.8 mV, was not significantly different from that of the C/A synaptic current, -1.4 mV. The mean 10-90% rise time of the mossy-fiber synaptic current [1.7 +/- 0.08 (SE) ms], however, was significantly faster than the C/A synaptic current (3.2 +/- 0.16 ms). Both mossy fiber and C/A synaptic-current decays were fit with a single exponential. The decay time constant of mossy fiber synaptic currents was also faster than that of the C/A excitatory postsynaptic current, 6.5 +/- 0.4 versus 10.1 +/- 0.8 ms. The mossy fiber synaptic current decay time constant showed little voltage dependence. 4. A modified shape index plot of synaptic current rise time versus decay time constant, normalized to membrane time constant, yielded a good linear relation for C/A synapses. A poorer correlation was observed for mossy fiber synapses. 5. Both synaptic currents could be fit by alpha functions. A representative value of alpha for the mossy fiber synapse was 295/s, and for the C/A was 172/s. 6. The rise time of the mossy fiber synaptic potential was significantly faster (5.3 ms) than the C/A (7.5 ms). The decay of both mossy fiber and C/A synaptic potentials was slower than the membrane time constant, suggesting that active currents may contribute to their falling phases. This prolongation was voltage dependent but insensitive to 2-amino-5-phosphonovaleric acid. 7. Our data provide a quantitative comparison of a proximal and a more distal synaptic input to CA3 hippocampal neurons. Distal inputs show slower kinetics than proximal synapses, as predicted. However, the voltage dependence of synaptic potential decays suggests that synaptic integration may be affected by active dendritic conductances.
摘要
  1. 我们研究了海马CA3神经元中经药理学分离的兴奋性突触电流的动力学特性。比较了两条不同的解剖学通路,即联合/联合(C/A)通路和苔藓纤维输入,以检验从电缆理论得出的假设,即在胞体处测量时,远端输入的动力学比近端输入慢。2. 使用单电极电压钳和低电阻微电极从成年大鼠海马切片进行细胞内记录。使用10微摩尔苦味毒和10微摩尔荷包牡丹碱的混合物完全阻断快速GABA能抑制。缓慢的抑制性输入通过细胞内铯阻断。3. 苔藓纤维突触电流的平均反转电位为-2.8毫伏,与C/A突触电流的平均反转电位-1.4毫伏无显著差异。然而,苔藓纤维突触电流的平均10-90%上升时间[1.7±0.08(标准误)毫秒]明显快于C/A突触电流(3.2±0.16毫秒)。苔藓纤维和C/A突触电流的衰减均符合单指数函数。苔藓纤维突触电流的衰减时间常数也快于C/A兴奋性突触后电流,分别为6.5±0.4毫秒和10.1±0.8毫秒。苔藓纤维突触电流衰减时间常数几乎没有电压依赖性。4. 将突触电流上升时间与衰减时间常数的修正形状指数图归一化为膜时间常数,C/A突触呈现出良好的线性关系。苔藓纤维突触的相关性较差。5. 两种突触电流都可以用α函数拟合。苔藓纤维突触的α代表性值为295/秒,C/A突触为172/秒。6. 苔藓纤维突触电位的上升时间(5.3毫秒)明显快于C/A突触电位(7.5毫秒)。苔藓纤维和C/A突触电位的衰减均慢于膜时间常数,表明有源电流可能对其下降相有贡献。这种延长是电压依赖性的,但对2-氨基-5-膦酸戊酸不敏感。7. 我们的数据对海马CA3神经元的近端和更远端突触输入进行了定量比较。如预期的那样,远端输入的动力学比近端突触慢。然而,突触电位衰减的电压依赖性表明突触整合可能受有源树突电导的影响。

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