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Two blocking sites of amino-adamantane derivatives in open N-methyl-D-aspartate channels.

机译:N-甲基-D-天门冬氨酸开放通道中的氨基金刚烷衍生物的两个封闭位点。

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摘要

Using whole-cell patch-clamp techniques, we studied the blockade of open N-methyl-D-aspartate (NMDA) channels by amino-adamantane derivatives (AADs) in rat hippocampal neurons acutely isolated by the vibrodissociation method. The rapid concentration-jump technique was used to replace superfusion solutions. A kinetic analysis of the interaction of AAD with open NMDA channels revealed fast and slow components of their blockade and recovery. Mathematical modeling showed that these kinetic components are evidence for two distinct blocking sites of AADs in open NMDA channels. A comparative analysis of different simplest models led us to conclude that these AAD blocking sites can be simultaneously occupied by two blocker molecules. The voltage dependence of the AAD block suggested that both sites were located deep in the channel pore.
机译:使用全细胞膜片钳技术,我们研究了通过振动解离方法急性分离的大鼠海马神经元中氨基-金刚烷衍生物(AAD)对N-甲基-D-天冬氨酸(NMDA)开放通道的阻断。快速浓缩-跳跃技术用于替代超融合溶液。动力学分析AAD与开放的NMDA通道的相互作用揭示了其阻断和恢复的快慢成分。数学模型表明,这些动力学成分是在开放的NMDA通道中AAD的两个截然不同的阻断位点的证据。对不同最简单模型的比较分析使我们得出结论,这些AAD阻断位点可以同时被两个阻断剂分子占据。 AAD块的电压依赖性表明两个位点都位于通道孔的深处。

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