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Mechanisms of blockade of glutamate receptors channels: the significance for structural and physiological investigations

机译:抑制谷氨酸受体通道的机制:结构和生理调查的重要性

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The mechanism of blocking effect of phenylcyclohexyl derivative, IEM-1925, on ionotropic glutamate receptors of the NMDA and AMPA types has been studied on the rat isolated brain neurons. The whole-cell configuration of patck clanp recording technique was used equilibrium conditions and -80 mV holding potential, the IEM-1925 manifests nonselective action on open channels of both receptors. However, the prominent differences in the mechanism of the blocking effect were revealed. Although IEM-1925 can not enter the closed channels of both types, its molecule are able to leave closed channels of the AMPA but not the NMDA receptors. Hyperpolarization reduces removal of blocker from the open channels of the NMDA receptors. Contrary to that, hyperpolarization facilitates going out of the IEM-1925 to cytozol from both open and closed channels. Evidently, the bloker can pass through the AMPA receptor channels into the cell, and the gating mechanism of these channels is located above the binding site for the blocker. The blocking action of the IEM-1925 on the NMDA and AMPA receptors was compared with its potency to weaken the tremor evoked by subcutaneous injection of arecoline to mice. The observed differences in the mechanisms of action help to explain the ambiguous effects of channel blocking drugs on experimental models of pathological processes. zhurnal imeni I.M. Sechenova / Rossi inverted question markskaia akademiia nauk.
机译:在大鼠分离的脑神经元上研究了苯基环己基衍生物,IEM-1925对NMDA和AMPA类型的离子淋谷氨酸受体的阻断效应。伙计康西克族康复记录技术的全电池配置被使用平衡条件和-80 mV保持潜力,IEM-1925表现出对两个受体的开放通道的非选择性作用。然而,揭示了阻塞效果机制的突出差异。虽然IEM-1925无法进入两种类型的闭合通道,但其分子能够留下AMPA的闭合通道,但不是NMDA受体。超极化减少了从NMDA受体的开放通道中去除阻断剂。与此相反,超极化促进了从开放和封闭渠道的IEM-1925到细胞唑。显然,发表者可以通过AMPA受体通道进入电池,并且这些通道的门控机构位于阻塞器的结合位点上方。将IEM-1925对NMDA和AMPA受体的阻断作用与其效力进行了比较,以减弱通过皮下注射葡萄啉的震颤唤醒。观察到的作用机制的差异有助于解释通道阻塞药物对病理过程实验模型的模糊效果。伊彭·伊梅尼I.M.Sehenova / Rossi倒立问题Markskaia Akademiia Nauk。

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