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An allosteric interaction between the NMDA receptor polyamine and ifenprodil sites in rat cultured cortical neurones

机译:NMDA受体多胺与艾芬地尔在大鼠培养的皮质神经元中的位点之间的变构相互作用

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class="enumerated" style="list-style-type:decimal">The atypical NR2B subunit-selective NMDA receptor antagonist ifenprodil was originally believed to act as a competitive antagonist at the polyamine binding site of the NMDA receptor. However, a number of studies have suggested that ifenprodil might bind to a distinct site.Using whole-cell voltage clamp recordings, we have studied the interaction of spermine with both ifenprodil and the related NR2B selective antagonist Ro 8–4304 at the NMDA receptor in rat cultured cortical neurones in the presence of saturating concentrations of glycine.Ifenprodil and Ro 8-4304 inhibited steady-state currents evoked by 100 μm NMDA in the absence of spermine with IC50 values of 0.3 and 0.6 μm, respectively. In the presence of 1 and 3 mm spermine, IC50 values for ifenprodil were 1.4 and 1.8 μm and for Ro 8-4304 they were 3.0 and 7.5 μm, respectively.In the presence of spermine, the on-time constant of receptor blockade by both antagonists was significantly slower than control and the off-time constant of recovery from receptor blockade following removal of Ro 8-4304 was significantly faster.Fast application of spermine during an NMDA steady-state current in the continuous presence of a subsaturating concentration of either antagonist resulted in a biphasic increase in the current, consistent with a fast increase upon spermine binding and a slow increase resultant from dissociation of antagonist due to spermine binding-induced allosteric reduction in receptor antagonist affinity. In agreement with this, at higher, saturating concentrations of antagonist, the slow increase in current amplitude was markedly reduced or absent.These observations are consistent with a non-competitive, allosteric interaction between spermine and the antagonists, such that spermine binding to the NMDA receptor results in a reduction in receptor affinity for the antagonists and vice versa.The effects of Mg2+ on the NMDA-evoked currents and its interaction with ifenprodil were similar to those of spermine, supporting the suggestion that Mg2+ might be the physiological ligand acting at the spermine site mediating glycine-independent stimulation.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 最初认为非典型的NR2B亚基选择性NMDA受体拮抗剂艾芬地尔在NMDA受体的多胺结合位点起竞争性拮抗剂的作用。但是,许多研究表明,艾芬地尔可能与一个不同的部位结合。 使用全细胞电压钳记录,我们研究了精胺与艾芬地尔和相关的NR2B选择性拮抗剂Ro 8的相互作用。在饱和浓度的甘氨酸存在下,大鼠培养的皮质神经元的NMDA受体处为–4304。 Ifenprodil和Ro 8-4304抑制了在不存在具有IC50的精胺的情况下100μmNMDA引起的稳态电流。分别为0.3和0.6μm。在存在1毫米和3毫米精胺的情况下,艾芬地尔的IC50值分别为1.4和1.8μm,对于Ro 8-4304的IC50值分别为3.0和7.5μm。 在存在精胺的情况下,两种拮抗剂阻断受体的时间常数明显慢于对照,去除Ro 8-4304后从受体阻断恢复的关闭时间常数显着更快。 在NMDA稳定期间快速施用精胺持续存在亚饱和浓度的任一种拮抗剂时的稳态电流导致电流的两相增加,这与精胺结合后的快速增加和由于精胺结合引起的受体的变构还原导致的拮抗剂解离而导致的缓慢增加相一致拮抗剂亲和力。与此相符的是,在较高的饱和浓度的拮抗剂下,电流幅度的缓慢增加明显减小或不存在。 这些观察结果与精胺和拮抗剂之间的非竞争性变构相互作用相符,因此,精胺与NMDA受体的结合会导致受体对拮抗剂的亲和力降低,反之亦然。 Mg 2 + 对NMDA诱发的电流及其影响与ifenprodil的相互作用与精胺相似,支持了Mg 2 + 可能是在精胺部位介导甘氨酸非依赖性刺激的生理配体。

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