Shiells R A, Falk G
Department of Physiology, University College, London, UK.
Vis Neurosci. 1994 Nov-Dec;11(6):1175-83. doi: 10.1017/s0952523800006970.
Rod on-bipolar cell light responses are mediated by a class of metabotropic glutamate receptor which is coupled via a G-protein to the control of a cGMP cascade, with cGMP acting to open cation channels, whilst off-bipolar cells possess ionotropic glutamate receptors. Whole-cell voltage-clamp recordings were obtained from on- and off-bipolar cells of dark-adapted dogfish retinal slices, identified by their light responses. Isolated cells were exposed to concentration-jumps of glutamate. At negative voltage-clamp potentials, on-bipolar cells responded to glutamate with outward currents with a mean delay of 10.8 ms, whilst off-bipolar cells responded with inward currents without any delay. Neither cell type showed desensitization to applied steps of glutamate. The dose-response relation for on-bipolar cells showed no gradual saturation, but increased linearly with a sharp cutoff above 200 microM glutamate. This dose-response relation could be fitted with a theoretical expression assuming Michaelis-Menten kinetics for the action of glutamate on receptors and a linear relation between the concentration of receptors bound to glutamate and the fall in cGMP this induces. The dose-response relation of off-bipolar cells showed saturation with a limiting slope of 2 at low glutamate concentrations, suggesting that two molecules of glutamate are required to open each channel by a cooperative mechanism. The glutamate receptor coupled cGMP cascade of rod on-bipolar cells can account for high synaptic voltage gain.
视杆双极细胞的光反应由一类代谢型谷氨酸受体介导,该受体通过G蛋白与cGMP级联反应的控制相偶联,cGMP作用于打开阳离子通道,而给光双极细胞则具有离子型谷氨酸受体。通过对暗适应的鲨鱼视网膜切片上的给光和撤光双极细胞进行光反应鉴定后,获得了全细胞电压钳记录。将分离的细胞暴露于谷氨酸浓度的阶跃变化中。在负电压钳制电位下,给光双极细胞对谷氨酸的反应是外向电流,平均延迟为10.8毫秒,而撤光双极细胞的反应是内向电流,没有任何延迟。两种细胞类型对施加的谷氨酸阶跃均未表现出脱敏现象。给光双极细胞的剂量反应关系没有逐渐饱和,而是在谷氨酸浓度高于200微摩尔时急剧截止并呈线性增加。这种剂量反应关系可以用一个理论表达式来拟合,该表达式假设谷氨酸对受体的作用符合米氏动力学,并且与谷氨酸结合的受体浓度和由此诱导的cGMP下降之间呈线性关系。撤光双极细胞的剂量反应关系在低谷氨酸浓度下呈现饱和,极限斜率为2,这表明通过协同机制打开每个通道需要两个谷氨酸分子。视杆双极细胞的谷氨酸受体偶联cGMP级联反应可以解释高突触电压增益。