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首页> 外文期刊>Journal of Molecular Biology >Functional analysis of Kv1.2 and paddle chimera Kv channels in planar lipid bilayers.
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Functional analysis of Kv1.2 and paddle chimera Kv channels in planar lipid bilayers.

机译:平面脂质双层中Kv1.2和桨状嵌合Kv通道的功能分析。

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摘要

Voltage-dependent K(+) (Kv) channels play key roles in shaping electrical signaling in both excitable and nonexcitable cells. These channels open and close in response to the voltage changes across the cell membrane. Many studies have been carried out in order to understand the voltage-sensing mechanism. Our laboratory recently determined the atomic structures of a mammalian Kv channel Kv1.2 and a mutant of Kv1.2 named the 'paddle chimera' channel, in which the voltage sensor paddle was transferred from Kv2.1 to Kv1.2. These two structures provide atomic descriptions of voltage-dependent channels with unprecedented clarity. Until now, the functional integrity of these two channels biosynthesized in yeast cells has not been assessed. Here, we report the electrophysiological and pharmacological properties of Kv1.2 and the paddle chimera channels in planar lipid bilayers. We demonstrate that Pichia yeast produce 'normally functioning' mammalian Kv channels with qualitatively similar features to the ShakerK(+) channel in the absence of the N-terminal inactivation gate and that the paddle chimera mutant channel functions as well as Kv1.2. We find, however, that in several respects, the Kv1.2 channel exhibits functional properties that are distinct from Kv1.2 channels reported in the literature.
机译:电压依赖性K(+)(Kv)通道在塑造可激发和不可激发细胞中的电信号传导中起关键作用。这些通道响应于跨细胞膜的电压变化而打开和关闭。为了理解电压感测机制已经进行了许多研究。我们的实验室最近确定了哺乳动物Kv通道Kv1.2和Kv1.2突变体(称为“桨叶嵌合体”通道)的原子结构,其中电压传感器桨叶已从Kv2.1转移到Kv1.2。这两个结构以前所未有的清晰度提供了电压相关通道的原子描述。迄今为止,尚未评估在酵母细胞中生物合成的这两个通道的功能完整性。在这里,我们报告在平面脂质双层中Kv1.2和桨嵌合体通道的电生理和药理特性。我们证明毕赤酵母产生不具有N端灭活门的情况下与ShakerK(+)通道在质量上具有相似特征的'正常运行'哺乳动物Kv通道,并且桨嵌合体突变体通道的功能以及Kv1.2。但是,我们发现,在几个方面,Kv1.2通道都具有不同于文献报道的Kv1.2通道的功能特性。

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