Cull-Candy S G, Usowicz M M
Nature. 1987;325(6104):525-8. doi: 10.1038/325525a0.
In the mammalian central nervous system amino acids such as L-glutamate and L-aspartate are thought to act as fast synaptic transmitters. It has been suggested that at least three pharmacologically-distinguishable types of glutamate receptor occur in central neurons and that these are selectively activated by the glutamate analogues N-methyl-D-aspartate (NMDA), quisqualate and kainate. These three receptor types would be expected to open ion channels with different conductances. Hence if agonists produce similar channel conductances this would suggest they are acting on the same receptor. Another possibility is suggested by experiments on spinal neurons, where GABA (gamma-amino butyric acid) and glycine appear to open different sub-conductance levels of one class of channel while acting on different receptors. By analogy, several types of glutamate receptor could also be linked to a single type of channel with several sub-conductance states. We have examined these possibilities in cerebellar neurons by analysing the single-channel currents activated by L-glutamate, L-aspartate, NMDA, quisqualate and kainate in excised membrane patches. All of these agonists are capable of opening channels with at least five different conductance levels, the largest being about 45-50 pS. NMDA predominantly activated conductance levels above 30 pS while quisqualate and kainate mainly activated ones below 20 pS. The presence of clear transitions between levels favours the idea that the five main levels are all sub-states of the same type of channel.
在哺乳动物的中枢神经系统中,诸如L-谷氨酸和L-天冬氨酸之类的氨基酸被认为起着快速突触传递递质的作用。有人提出,中枢神经元中至少存在三种药理学上可区分的谷氨酸受体类型,并且这些受体被谷氨酸类似物N-甲基-D-天冬氨酸(NMDA)、quisqualate和海人藻酸选择性激活。预计这三种受体类型会打开具有不同电导的离子通道。因此,如果激动剂产生相似的通道电导,这将表明它们作用于同一受体。对脊髓神经元的实验提出了另一种可能性,在脊髓神经元中,γ-氨基丁酸(GABA)和甘氨酸在作用于不同受体时,似乎会打开一类通道的不同亚电导水平。以此类推,几种类型的谷氨酸受体也可能与具有几种亚电导状态的单一类型通道相联系。我们通过分析在分离的膜片中由L-谷氨酸、L-天冬氨酸、NMDA、quisqualate和海人藻酸激活的单通道电流,研究了小脑神经元中的这些可能性。所有这些激动剂都能够打开至少具有五种不同电导水平的通道,最大的约为45 - 50皮西门子。NMDA主要激活30皮西门子以上的电导水平,而quisqualate和海人藻酸主要激活20皮西门子以下的电导水平。不同水平之间存在明显的转变,这支持了五个主要水平都是同一类型通道的亚状态这一观点。