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More Gating Charges are Needed to Open a Shaker K+ Channel than are Needed to Open an rBIIA Na+ Channel

机译:打开Shaker K +通道所需的门控费用比打开rBIIA Na +通道所需的门控费用更多

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摘要

This study presents what is, to our knowledge, a novel technique by means of which the ratio of the single gating charges of voltage-gated rat brain IIA (rBIIA) sodium and Shaker potassium ion channels was estimated. In the experiment, multiple tandems of enhanced green fluorescent protein were constructed and inserted into the C-terminals of Na+ and K+ ion channels. cRNA of Na+ and K+ ion channels was injected and expressed in Xenopus laevis oocytes. The two electrode voltage-clamp technique allowed us to determine the total gating charge of sodium and potassium ion channels, while a relative measure of the amount of expressed channels could be established on the basis of the quantification of the fluorescence intensity of membrane-bound channels marked by enhanced green fluorescent proteins. As a result, gating charge and fluorescence intensity were found to be positively correlated. A relative comparison of the single gating charges of voltage-gated sodium and potassium ion channels could thus be established: the ratio of the single gating charges of the Shaker potassium channel and the rBIIA sodium channel was found to be 2.5 ± 0.4. Assuming the single channel gating charge of the Shaker K+ channel to be ∼13 elementary charges (well supported by other studies), this leads to approximately six elementary charges for the rBIIA sodium channel, which includes a fraction of gating charge that is missed during inactivation.
机译:这项研究表明,据我们所知,是一种新技术,通过该技术可以估算电压门控大鼠脑IIA(rBIIA)钠和摇床钾离子通道的单门控电荷之比。在该实验中,构建了多个增强的绿色荧光蛋白鞣剂,并将其插入Na + 和K + 离子通道的C端。注射Na + 和K + 离子通道的cRNA并在非洲爪蟾卵母细胞中表达。两电极电压钳技术使我们能够确定钠离子通道和钾离子通道的总门控电荷,同时可以基于膜结合通道的荧光强度的定量确定表达通道数量的相对量度。以增强的绿色荧光蛋白为标志。结果,发现门控电荷和荧光强度呈正相关。因此,可以建立电压门控钠离子通道和钾离子通道单门控电荷的相对比较:摇床钾离子通道和rBIIA钠离子通道的单门控电荷之比为2.5±0.4。假设Shaker K + 通道的单通道门控电荷约为13个基本电荷(其他研究充分支持),这将为rBIIA钠通道产生大约6个基本电荷,其中包括一小部分灭活期间丢失的门控电荷的数量。

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