首页> 美国卫生研究院文献>The Journal of Biological Chemistry >RNA Editing in the Central Cavity as a Mechanism to Regulate Surface Expression of the Voltage-gated Potassium Channel Kv1.1
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RNA Editing in the Central Cavity as a Mechanism to Regulate Surface Expression of the Voltage-gated Potassium Channel Kv1.1

机译:在中央腔中的RNA编辑作为调节电压门控钾通道Kv1.1的表面表达的机制。

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摘要

Voltage-gated potassium (Kv) 1.1 channels undergo a specific enzymatic RNA deamination, generating a channel with a single amino acid exchange located in the inner pore cavity (Kv1.1I400V). We studied I400V-edited Kv1.1 channels in more detail and found that Kv1.1I400V gave rise to much smaller whole-cell currents than Kv1.1. To elucidate the mechanism behind this current reduction, we conducted electrophysiological recordings on single-channel level and did not find any differences. Next we examined channel surface expression in Xenopus oocytes and HeLa cells using a chemiluminescence assay and found the edited channels to be less readily expressed at the surface membrane. This reduction in surface expression was verified by fluorescence imaging experiments. Western blot analysis for comparison of protein abundances and glycosylation patterns did not show any difference between Kv1.1 and Kv1.1I400V, further indicating that changed trafficking of Kv1.1I400V is causing the current reduction. Block of endocytosis by dynasore or AP180C did not abolish the differences in current amplitudes between Kv1.1 and Kv1.1I400V, suggesting that backward trafficking is not affected. Therefore, our data suggest that I400V RNA editing of Kv1.1 leads to a reduced current size by a decreased forward trafficking of the channel to the surface membrane. This effect is specific for Kv1.1 because coexpression of Kv1.4 channel subunits with Kv1.1I400V abolishes these trafficking effects. Taken together, we identified RNA editing as a novel mechanism to regulate homomeric Kv1.1 channel trafficking. Fine-tuning of Kv1.1 surface expression by RNA editing might contribute to the complexity of neuronal Kv channel regulation.
机译:电压门控钾(Kv)1.1通道经过特定的酶RNA脱氨作用,生成位于内部孔腔(Kv1.1 I400V )中具有单个氨基酸交换的通道。我们更详细地研究了I400V编辑的Kv1.1通道,发现Kv1.1 I400V 产生的全细胞电流比Kv1.1小得多。为了阐明这种电流减少的机制,我们在单通道水平上进行了电生理记录,未发现任何差异。接下来,我们使用化学发光分析检查了非洲爪蟾卵母细胞和HeLa细胞中的通道表面表达,发现编辑的通道在表面膜上较不容易表达。通过荧光成像实验证实了表面表达的降低。用于比较蛋白质丰度和糖基化模式的蛋白质印迹分析表明,Kv1.1和Kv1.1 I400V 之间没有任何差异,进一步表明Kv1.1 I400V 的运输发生了变化导致电流减少。 dynasore或AP180C阻止内吞作用并没有消除Kv1.1和Kv1.1 I400V 之间的电流幅度差异,这表明向后贩运不受影响。因此,我们的数据表明,Kv1.1的I400V RNA编辑可通过减少通道向表面膜的前向运输来降低电流大小。此效果是针对Kv1.1的,因为Kv1.4通道亚基与Kv1.1 I400V 的共表达消除了这些贩运效应。综上所述,我们确定RNA编辑为调节同源Kv1.1通道运输的新机制。通过RNA编辑对Kv1.1表面表达进行微调可能会导致神经元Kv通道调节的复杂性。

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