Kullmann D M, Min M Y, Asztely F, Rusakov D A
University Department of Clinical Neurology, Institute of Neurology, London, UK.
Philos Trans R Soc Lond B Biol Sci. 1999 Feb 28;354(1381):395-402. doi: 10.1098/rstb.1999.0392.
Following exocytosis at excitatory synapses in the brain, glutamate binds to several subtypes of postsynaptic receptors. The degree of occupancy of AMPA and NMDA receptors at hippocampal synapses is, however, not known. One approach to estimate receptor occupancy is to examine quantal amplitude fluctuations of postsynaptic signals in hippocampal neurons studied in vitro. The results of such experiments suggest that NMDA receptors at CA1 synapses are activated not only by glutamate released from the immediately apposed presynaptic terminals, but also by glutamate spillover from neighbouring terminals. Numerical simulations point to the extracellular diffusion coefficient as a critical parameter that determines the extent of activation of receptors positioned at different distances from the release site. We have shown that raising the viscosity of the extracellular medium can modulate the diffusion coefficient, providing an experimental tool to investigate the role of diffusion in activation of synaptic and extrasynaptic receptors. Whether intersynaptic cross-talk mediated by NMDA receptors occurs in vivo remains to be determined. The theoretical and experimental approaches described here also promise to shed light on the roles of metabotropic and kainate receptors, which often occur in an extrasynaptic distribution, and are therefore positioned to sense glutamate escaping from the synaptic cleft.
在大脑兴奋性突触发生胞吐作用后,谷氨酸与几种突触后受体亚型结合。然而,海马突触处AMPA和NMDA受体的占据程度尚不清楚。估计受体占据情况的一种方法是检测体外研究的海马神经元中突触后信号的量子幅度波动。此类实验结果表明,CA1突触处的NMDA受体不仅被紧邻的突触前终末释放的谷氨酸激活,还被邻近终末溢出的谷氨酸激活。数值模拟指出细胞外扩散系数是一个关键参数,它决定了位于距释放位点不同距离处的受体的激活程度。我们已经表明,提高细胞外介质的粘度可以调节扩散系数,这为研究扩散在突触和突触外受体激活中的作用提供了一种实验工具。NMDA受体介导的突触间串扰在体内是否发生仍有待确定。这里描述的理论和实验方法也有望阐明代谢型受体和海人藻酸受体的作用,这些受体通常以突触外分布形式存在,因此能够感知从突触间隙逸出的谷氨酸。