Werling L L, Doman K A, Nadler J V
J Neurochem. 1983 Aug;41(2):586-93. doi: 10.1111/j.1471-4159.1983.tb04779.x.
The excitatory glutamate analogs quisqualate and ibotenate were employed to distinguish multiple binding sites for L-[3H]glutamate on freshly prepared hippocampal synaptic membranes. The fraction of bound radioligand that was displaceable by 5 microM quisqualate was termed GLU A binding. That which persisted in the presence of 5 microM quisqualate, but was displaceable by 100 microM ibotenate, was termed GLU B binding. GLU A binding equilibrated within 5 min and remained unchanged for up to 80 min. GLU B binding appeared to equilibrate at least as rapidly, but incubation with ligand unmasked latent binding sites. Saturation binding curves were best fitted by single exponentials, which yielded KD values of about 200 nM (GLU A) and 1 microM (GLU B). On the average, GLU B binding sites were about twice as abundant in these membranes as were GLU A sites. Rapid freezing of the membranes, followed by storage at -26 degrees C and rapid thawing markedly diminished GLU A binding, but nearly tripled GLU B binding. Both site bound L-glutamate with 10-30 times the affinity of D-glutamate. The GLU A site also bound L-glutamate with about 10 times the affinity of L-aspartate and discriminated poorly between L- and D-aspartate. In contrast, the GLU B site bound L-aspartate with an affinity similar to that for L-glutamate, and with an order-of-magnitude greater affinity than D-aspartate. The structural specificities of the GLU A and GLU B binding sites suggest that these sites may correspond to receptors on hippocampal pyramidal cell dendrites that are activated by iontophoretically applied L-glutamate.
兴奋性谷氨酸类似物喹啉酸和鹅膏蕈氨酸被用于区分新鲜制备的海马突触膜上L-[3H]谷氨酸的多个结合位点。可被5微摩尔喹啉酸置换的结合放射性配体部分被称为GLU A结合。在5微摩尔喹啉酸存在下仍保留,但可被100微摩尔鹅膏蕈氨酸置换的部分被称为GLU B结合。GLU A结合在5分钟内达到平衡,并在长达80分钟内保持不变。GLU B结合似乎至少同样迅速地达到平衡,但与配体孵育会暴露潜在的结合位点。饱和结合曲线用单指数函数拟合最佳,得到的KD值约为200纳摩尔(GLU A)和1微摩尔(GLU B)。平均而言,这些膜中GLU B结合位点的丰度约为GLU A位点的两倍。膜的快速冷冻,随后在-26摄氏度下储存并快速解冻,显著降低了GLU A结合,但使GLU B结合增加了近两倍。两个位点结合L-谷氨酸的亲和力是D-谷氨酸的10 - 30倍。GLU A位点结合L-谷氨酸的亲和力约为L-天冬氨酸的10倍,对L-和D-天冬氨酸的区分能力较差。相比之下,GLU B位点结合L-天冬氨酸的亲和力与结合L-谷氨酸的相似,且对D-天冬氨酸的亲和力比对L-天冬氨酸大一个数量级。GLU A和GLU B结合位点的结构特异性表明,这些位点可能对应于海马锥体细胞树突上被离子导入施加的L-谷氨酸激活的受体。