DeVries Steven H, Li Wei, Saszik Shannon
Department of Ophthalmology, Northwestern University Feinberg School of Medicine, Chicago, Illinois 60611, USA.
Neuron. 2006 Jun 1;50(5):735-48. doi: 10.1016/j.neuron.2006.04.034.
A cone photoreceptor releases glutamate at ribbons located atop narrow membrane invaginations that empty onto a terminal base. The unique shape of the cone terminal suggests that there are two transmitter microenvironments: within invaginations, where concentrations are high and exposures are brief; and at the base, where concentrations are low and exposure is smoothed by diffusion. Using multicell voltage-clamp recording, we show that different subtypes of Off bipolar cells sample transmitter in two microenvironments. The dendrites of an AMPA receptor-containing cell insert into invaginations and sense rapid fluctuations in glutamate concentration that can lead to transient responses. The dendrites of kainate receptor-containing cells make basal contacts and respond to a smoothed flow of glutamate that produces sustained responses. Signaling at the cone to Off bipolar cell synapse illustrates how transmitter spillover and synapse architecture can combine to produce distinct signals in postsynaptic neurons.
视锥光感受器在位于狭窄膜内陷顶部的突触带释放谷氨酸,这些膜内陷通向终末基部。视锥终末的独特形状表明存在两种递质微环境:在膜内陷内,谷氨酸浓度高且暴露时间短暂;在基部,谷氨酸浓度低且通过扩散使暴露趋于平缓。利用多细胞电压钳记录,我们发现不同亚型的Off双极细胞在这两种微环境中采样递质。含有AMPA受体的细胞的树突插入膜内陷,感知谷氨酸浓度的快速波动,这可能导致瞬时反应。含有海人藻酸受体的细胞的树突进行基部接触,并对产生持续反应的平缓谷氨酸流作出反应。视锥细胞与Off双极细胞突触处的信号传递说明了递质溢出和突触结构如何结合,从而在突触后神经元中产生不同的信号。