Koester H J, Sakmann B
Abteilung Zellphysiologie, Max-Planck-Institut für medizinische Forschung, Jahnstrasse 29, D-69120 Heidelberg, Germany.
Proc Natl Acad Sci U S A. 1998 Aug 4;95(16):9596-601. doi: 10.1073/pnas.95.16.9596.
We compared the transient increase of Ca2+ in single spines on basal dendrites of rat neocortical layer 5 pyramidal neurons evoked by subthreshold excitatory postsynaptic potentials (EPSPs) and back-propagating action potentials (APs) by using calcium fluorescence imaging. AP-evoked Ca2+ transients were detected in both the spines and in the adjacent dendritic shaft, whereas Ca2+ transients evoked by single EPSPs were largely restricted to a single active spine head. Calcium transients elicited in the active spines by a single AP or EPSP, in spines up to 80 micro(m) for the soma, were of comparable amplitude. The Ca2+ transient in an active spine evoked by pairing an EPSP and a back-propagating AP separated by a time interval of 50 ms was larger if the AP followed the EPSP than if it preceded it. This difference reflected supra- and sublinear summation of Ca2+ transients, respectively. A comparable dependence of spinous Ca2+ transients on relative timing was observed also when short bursts of APs and EPSPs were paired. These results indicate that the amplitude of the spinous Ca2+ transients during coincident pre- and postsynaptic activity depended critically on the relative order of subthreshold EPSPs and back-propagating APs. Thus, in neocortical neurons the amplitude of spinous Ca2+ transients could encode small time differences between pre- and postsynaptic activity.
我们通过钙荧光成像技术,比较了阈下兴奋性突触后电位(EPSP)和反向传播动作电位(AP)诱发的大鼠新皮层第5层锥体神经元基底树突上单根棘突内Ca2+的瞬时增加。在棘突和相邻的树突干中均检测到AP诱发的Ca2+瞬变,而单个EPSP诱发的Ca2+瞬变主要局限于单个活跃的棘突头部。对于距离胞体80微米以内的棘突,单个AP或EPSP在活跃棘突中引发的钙瞬变幅度相当。如果AP跟随EPSP,那么由间隔50毫秒的EPSP和反向传播AP配对诱发的活跃棘突中的Ca2+瞬变,要比AP先于EPSP时更大。这种差异分别反映了Ca2+瞬变的超线性和亚线性总和。当AP和EPSP的短串脉冲配对时,也观察到了棘突Ca2+瞬变对相对时间的类似依赖性。这些结果表明,突触前和突触后活动同时发生时,棘突Ca2+瞬变的幅度关键取决于阈下EPSP和反向传播AP的相对顺序。因此,在新皮层神经元中,棘突Ca2+瞬变的幅度可以编码突触前和突触后活动之间的微小时间差异。