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Alternative Splicing in the Pore-Forming Region of shakerPotassium Channels

机译:振动筛孔隙形成区域的替代剪接

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摘要

We have cloned cDNAs for the shaker potassium channel gene from the spiny lobster Panulirus interruptus. As previously found in Drosophila, there is alternative splicing at the 5′ and 3′ ends of the coding region. However, in Panulirus shaker, alternative splicing also occurs within the pore-forming region of the protein. Three different splice variants were found within the P region, two of which bestow unique electrophysiological characteristics to channel function. Pore I and pore II variants differ in voltage dependence for activation, kinetics of inactivation, current rectification, and drug resistance. The pore 0 variant lacks a P region exon and does not produce a functional channel. This is the first example of alternative splicing within the pore-forming region of a voltage-dependent ion channel. We used a recently identified potassium channel blocker, κ-conotoxin PVIIA, to study the physiological role of the two pore forms. The toxin selectively blocked one pore form, whereas the other form, heteromers between the two pore forms, and Panulirus shal were not blocked. When it was tested in thePanulirus stomatogastric ganglion, the toxin produced no effects on transient K+ currents or synaptic transmission between neurons.
机译:我们已经从多刺龙虾Panulirus interruptus的振动钾通道基因中克隆了cDNA。如先前在果蝇中发现的,在编码区的5'和3'端存在选择性剪接。但是,在Panulirus振荡器中,蛋白质的孔形成区域内也会发生其他剪接。在P区域内发现了三个不同的剪接变体,其中两个赋予通道功能独特的电生理特性。孔I和孔II的变体在激活的电压依赖性,灭活的动力学,电流整流和药物抗性方面有所不同。孔0变体缺少P区外显子并且不产生功能性通道。这是在依赖电压的离子通道的孔形成区域内进行选择性剪接的第一个例子。我们使用了最近发现的钾通道阻滞剂κ-芋螺毒素PVIIA,来研究这两种孔形式的生理作用。毒素选择性地阻断了一种孔形式,而另一种形式,两种孔形式之间的异聚体和Panulirus shal没有被阻断。当在花生空肠胃神经节中进行测试时,该毒素对瞬时K + 电流或神经元之间的突触传递没有影响。

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