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Modulation of non-NMDA receptor gating by auxiliary subunits

机译:辅助亚基的非NMDA受体调制

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During the past decade, considerable evidence has accumulated that non-NMDA glutamate receptors (both AMPA and kainate subtypes) are modulated by the association of the core tetrameric receptor with auxiliary proteins that are integral components of native receptor assemblies. This short review focuses on the effect of two types of auxiliary subunits on the biophysical properties and kinetic behaviour of AMPA and kainate receptors at the level of single receptor molecules. Type I transmembrane AMPA receptor proteins increase the number of AMPA receptor openings that result from a single receptor activation as well as the proportion of openings to conductance levels above 30pS, resulting in larger peak ensemble currents that decay more slowly and bi-exponentially. Co-expression of Neto1 and 2 with pore-forming kainate receptor subunits also increases the duration of bursts and destabilizes desensitized states, resulting in a rapid component of recovery and clusters of bursts that produce a slow component in desensitization decays. The distinct gating seen in the presence of auxiliary subunits reflects slow switching between gating modes with different single-channel kinetics and open probability. At any given time, the relative proportions of receptors in each gating mode determine both the shape and the amplitude of synaptic currents.
机译:在过去十年中,相当多的证据已经积累,非NMDA型谷氨酸受体(AMPA两者和红藻氨酸亚型)通过与是天然受体组件整体部件的辅助蛋白的核心四聚体受体的关联调制。此短审查的重点两种类型的生物物理特性和AMPA的动力学行为和红藻氨酸受体辅助亚基中的单个受体分子的水平的影响。 I型跨膜AMPA受体蛋白质增加AMPA受体开口的数量,从一个单一的受体活化,以及开口,以传导水平的比例以上30PS,导致在比较慢地衰变和双指数较大峰合奏电流的结果。 Neto1的和共表达2成孔红藻氨酸盐受体亚单位也增加突发的持续时间和去稳定脱敏状态,从而导致回收和产生在脱敏衰变慢组分突发的簇的快速分量。在辅助亚基的存在下观察到的不同的选通门控反映具有不同单通道动力学和开放概率模式之间缓慢切换。在任何给定时间,受体在每个选通模式的相对比例决定两者的形状和突触电流的振幅。

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