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Single-channel currents from diethylpyrocarbonate-modified NMDA receptors in cultured rat brain cortical neurons

机译:焦碳酸二乙酯修饰的NMDA受体在培养的大鼠大脑皮层神经元中的单通道电流

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摘要

The role of histidine residues in the function of N-methyl-D-aspartate (NMDA)-activated channels was tested with the histidine-modifying reagent diethylpyrocarbonate (DEP) applied to cells and membrane patches from rat brain cortical neurons in culture. Channels in excised outside-out patches that were treated with 3 mM DEP for 15-30 s (pH 6.5) showed an average 3.4-fold potentiation in steady state open probability when exposed to NMDA and glycine. Analysis of the underlying alterations in channel gating revealed no changes in the numbers of kinetic states: distributions of open intervals were fitted with three exponential components, and four components described the shut intervals, in both control and DEP-modified channels. However, the distribution of shut intervals was obviously different after DEP treatment, consistent with the single-channel current record. After modification, the proportion of long shut states was decreased while the time constants were largely unaffected. Burst kinetics reflected these effects with an increase in the average number of openings/burst from 1.5 (control) to 2.2 (DEP), and a decrease in the average interburst interval from 54.1 to 38.2 ms. These effects were most likely due to histidine modification because other reagents (n- acetylimidazole and 2,4,6-trinitrobenzene 1-sulfonic acid) that are specific for residues other than histidine failed to reproduce the effects of DEP, whereas hydroxylamine could restore channel open probability to control levels. In contrast to these effects on channel gating, DEP had no effect on average single-channel conductance or reversal potential under bi-ionic (Na+:Cs+) conditions. Inhibition by zinc was also unaffected by DEP. We propose a channel gating model in which transitions between single- and multi-opening burst modes give rise to the channel activity observed under steady state conditions. When adjusted to account for the effects of DEP, this model suggests that one or more extracellular histidine residues involved in channel gating are associated with a single kinetic state.
机译:组氨酸残基在N-甲基-D-天门冬氨酸(NMDA)激活的通道的功能中的作用是通过将组氨酸修饰剂焦碳二乙酯(DEP)应用于培养的大鼠大脑皮层神经元的细胞和膜片来测试的。当暴露于NMDA和甘氨酸时,用3 mM DEP处理15-30 s(pH 6.5)的切出的外向外贴片中的通道在稳态开放可能性下显示平均3.4倍的增强。对通道门控中潜在变化的分析表明,动力学状态的数量没有变化:在控制通道和DEP修饰通道中,开放区间的分布拟合有三个指数成分,而四个成分描述了封闭区间。但是,DEP处理后关闭间隔的分布明显不同,这与单通道电流记录一致。修改后,长时间关闭状态的比例降低了,而时间常数基本上没有受到影响。爆裂动力学反映了这些影响,平均开裂/爆裂次数从1.5(控制)增加到2.2(DEP),平均爆裂间隔从54.1毫秒减少到38.2毫秒。这些作用最可能是由于组氨酸修饰引起的,因为对除组氨酸以外的残基具有特异性的其他试剂(正乙酰基咪唑和2,4,6-三硝基苯1-磺酸)无法重现DEP的作用,而羟胺可以恢复通道打开控制水平的概率。与这些对通道门控的影响相反,DEP对双离子(Na +:Cs +)条件下的平均单通道电导或反转电位没有影响。锌的抑制也不受DEP的影响。我们提出了一种通道门控模型,其中单开和多开突发模式之间的转换会引起在稳态条件下观察到的通道活动。当调整以考虑DEP的影响时,该模型表明参与通道门控的一个或多个细胞外组氨酸残基与单个动力学状态相关。

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  • 年度 1995
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