Tour O, Parnas H, Parnas I
The Otto Loewi Center for Cellular and Molecular Neurobiology and the Department of Neurobiology, the Hebrew University, Jerusalem 91904, Israel.
J Neurophysiol. 2000 Jul;84(1):1-10. doi: 10.1152/jn.2000.84.1.1.
Desensitization of crayfish glutamate channels was studied in outside-out patches employing an improved fast drug-application technique. Low concentrations of glutamate produced substantial desensitization without correlation with the detected number of open channels. The desensitization time constant (tau(D)) was found to be independent of glutamate concentration (0.3-20 mM). These results suggest that in addition to desensitization from a state of fully liganded channels, a substantial fraction of desensitization occurs also from channels in a partly-liganded state. A kinetic model was developed. The model accounts for the multifaceted behavior of desensitization as well as for resensitization.
采用一种改进的快速药物施加技术,在细胞外侧向外膜片上研究了小龙虾谷氨酸通道的脱敏作用。低浓度的谷氨酸会产生显著的脱敏作用,且与检测到的开放通道数量无关。发现脱敏时间常数(tau(D))与谷氨酸浓度(0.3 - 20 mM)无关。这些结果表明,除了从完全配体化通道状态发生脱敏外,相当一部分脱敏也发生在部分配体化状态的通道上。建立了一个动力学模型。该模型解释了脱敏的多方面行为以及再敏化现象。