Kew J N, Richards J G, Mutel V, Kemp J A
Pharma Division, Preclinical CNS Research, F. Hoffmann-La Roche Ltd., CH-4070 Basel, Switzerland.
J Neurosci. 1998 Mar 15;18(6):1935-43. doi: 10.1523/JNEUROSCI.18-06-01935.1998.
Previous work with recombinant receptors has shown that the identity of the NMDA NR2 subunit influences receptor affinity for both glutamate and glycine. We have investigated the developmental change in NMDA receptor affinity for both glutamate and glycine in acutely dissociated parietal cortex neurons of the rat, together with the expression during ontogeny of NR2A and NR2B mRNA and protein. Whereas there is little change in NMDA receptor glutamate affinity with age, a population of NMDA receptors emerges in 14- and 28-d-old animals with a markedly reduced affinity for glycine (mKD = approximately 800 nM) and a reduced sensitivity to the NR2B subunit-selective NMDA antagonist ifenprodil. These changes are paralleled by a developmental increase in the expression of NR2A. Thus, in mature animals a population of NMDA receptors appears with a lower affinity for glycine that might not be saturated under normal physiological conditions. Ifenprodil (10 microM) inhibits virtually all of the NMDA receptor-evoked current in very young neurons that contain a single population of receptors exhibiting a high affinity for glycine (mKD = approximately 20 nM). In older neurons, which contain NMDA receptors with both high and low affinities for glycine, ifenprodil (10 microM) inhibits both the high-affinity population and a significant proportion of the low-affinity component, thus revealing three pharmacologically distinct populations of NMDA receptors in single neurons. Moreover, these observations suggest that ifenprodil might bind with high affinity to NMDA receptors containing both NR2A and NR2B subunits as well as those containing only NR2B.
先前对重组受体的研究表明,NMDA NR2亚基的身份会影响受体对谷氨酸和甘氨酸的亲和力。我们研究了大鼠急性解离的顶叶皮质神经元中,NMDA受体对谷氨酸和甘氨酸亲和力的发育变化,以及NR2A和NR2B mRNA及蛋白质在个体发育过程中的表达。虽然NMDA受体对谷氨酸的亲和力随年龄变化不大,但在14日龄和28日龄的动物中出现了一群对甘氨酸亲和力明显降低(mKD约为800 nM)且对NR2B亚基选择性NMDA拮抗剂ifenprodil敏感性降低的NMDA受体。这些变化与NR2A表达的发育性增加平行。因此,在成熟动物中出现了一群对甘氨酸亲和力较低的NMDA受体,在正常生理条件下可能不饱和。ifenprodil(10 μM)几乎抑制了所有在非常年轻的神经元中由NMDA受体诱发的电流,这些神经元含有一群对甘氨酸具有高亲和力(mKD约为20 nM)的受体。在含有对甘氨酸具有高亲和力和低亲和力的NMDA受体的较老神经元中,ifenprodil(10 μM)抑制了高亲和力群体以及相当一部分低亲和力成分,从而在单个神经元中揭示了三个药理学上不同的NMDA受体群体。此外,这些观察结果表明ifenprodil可能与同时含有NR2A和NR2B亚基以及仅含有NR2B的NMDA受体具有高亲和力结合。