首页> 外文期刊>The Journal of Physiology >Alternative splicing of KCNQ2 potassium channel transcripts contributes to the functional diversity of M-currents.
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Alternative splicing of KCNQ2 potassium channel transcripts contributes to the functional diversity of M-currents.

机译:KCNQ2钾通道转录物的可变剪接有助于M电流的功能多样性。

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摘要

The region of alternative splicing in the KCNQ2 potassium channel gene was determined by RNase protection analysis of KCNQ2 mRNA transcripts. Systematic analysis of KCNQ2 alternative splice variant expression in rat superior cervical ganglia revealed multiple variant isoforms. One class of KCNQ2 splice variants, those that contained exon 15a, was found to have significantly different kinetics to those of the other isoforms. These transcripts encoded channel subunits that, when co-expressed with the KCNQ3 subunit, activated and deactivated approximately 2.5 times more slowly than other isoforms. Deletion of exon 15a in these isoforms produced a reversion to the faster kinetics. Comparison of the kinetic properties of the cloned channel splice variants with those of the native M-current suggests that alternative splicing of the KCNQ2 gene may contribute to the variation in M-current kinetics seen in vivo.
机译:通过KCNQ2 mRNA转录本的RNase保护分析确定了KCNQ2钾通道基因中的可变剪接区域。在大鼠上颈神经节中KCNQ2替代剪接变体表达的系统分析揭示了多种变体亚型。发现一类包含外显子15a的KCNQ2剪接变体与其他同种型具有显着不同的动力学。这些转录本编码通道亚基,当与KCNQ3亚基共表达时,其激活和失活速度比其他同工型慢约2.5倍。这些同工型中外显子15a的缺失产生了向更快的动力学的回复。克隆的通道剪接变体的动力学特性与天然M-current的动力学特性的比较表明,KCNQ2基因的可变剪接可能有助于体内M-current动力学的变化。

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