Wessel R, Kristan W B, Kleinfeld D
Department of Physics, University of California at San Diego, La Jolla, California 92093, USA.
J Neurosci. 1999 Jul 15;19(14):5875-88. doi: 10.1523/JNEUROSCI.19-14-05875.1999.
Dendritic processing of glutamatergic synaptic inputs was investigated in the anterior pagoda cell of leech. We observed that below spike threshold, the amplitude of individual EPSPs decreased with hyperpolarization and that simultaneous stimulation of pairs of synaptic inputs leads to the supralinear summation of EPSPs. Voltage-clamp measurements revealed a hyperpolarization-activated, Ba(2+)-sensitive, fast, noninactivating K(+) conductance that depends on the external [K(+)]. These features are those of an "inward rectifier," Kir. Microsurgery experiments, in combination with electrophysiological measurements, revealed an inhomogeneous spatial distribution of the Kir conductance. Furthermore, on surgical removal of the neurites that contain the Kir conductance, the amplitude of EPSPs from the remaining synaptic inputs increased with hyperpolarization. A model cell, with the Kir conductance as the sole voltage-dependent conductance, reproduced qualitatively the observed voltage dependence of individual EPSPs as well as the supralinear summation of EPSP pairs.
在水蛭前塔细胞中研究了谷氨酸能突触输入的树突处理过程。我们观察到,在动作电位阈值以下,单个兴奋性突触后电位(EPSP)的幅度随着超极化而降低,并且同时刺激成对的突触输入会导致EPSP的超线性总和。电压钳测量揭示了一种超极化激活、对Ba(2+)敏感、快速、非失活的钾离子电导,其依赖于细胞外[K+]。这些特征是“内向整流器”Kir的特征。显微手术实验结合电生理测量揭示了Kir电导的不均匀空间分布。此外,在手术切除含有Kir电导的神经突后,来自其余突触输入的EPSP幅度随着超极化而增加。一个以Kir电导作为唯一电压依赖性电导的模型细胞,定性地再现了观察到的单个EPSP的电压依赖性以及EPSP对的超线性总和。