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首页> 外文期刊>Experimental Physiology >Effect of extracellular cations on the inward rectifying K+ channels Kir2.1 and Kir3.1/Kir3.4.
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Effect of extracellular cations on the inward rectifying K+ channels Kir2.1 and Kir3.1/Kir3.4.

机译:细胞外阳离子对内向整流K +通道Kir2.1和Kir3.1 / Kir3.4的影响。

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摘要

The effects of Ba2+, Mg2+, Ca2+ and Na+ as blocking ions were investigated in 90 and 10 mM extracellular K+ solutions on the cloned inward rectifying K+ channel Kir2.1 expressed in Xenopus oocytes. Some data were also obtained using another inward rectifying K+ channel Kir3.1/Kir3.4. The addition of Ba2+ caused a concentration-, voltage- and time-dependent block of both channels. Decreasing the extracellular K+ concentration augmented the block. The data suggest that Ba2+ blocks the channels by binding to a site within the channel pore and that the electrical binding distance, delta, of the site is significantly different for Kir2.1 and Kir3. 1/Kir3.4 (0.38 and 0.22, respectively). Mg2+ and Ca2+ caused an instantaneous concentration- and voltage-dependent block of both channels. With Kir2.1, decreasing the K+ concentration augmented the block. The voltage dependence of the block was less than that of Ba2+ ([delta], 0.1), indicating a more superficial binding site for these ions within the channel pore. The affinity of the channels for Mg2+ and Ca2+ was 1000-fold lower than that for Ba2+. Addition of Na+ resulted in a concentration-, voltage- and time-dependent block of Kir2.1, similar to that observed with Ba2+. The competition between the blocking cations (for Kir2.1: Ba2+, Mg2+, Ca2+; for Kir3. 1/Kir3.4: Ba2+) and extracellular K+ suggests that the binding sites for the blocking cations may be sites to which K+ binds as part of the normal passage of K+ through the channels. It is possible that under normal physiological conditions naturally occurring extracellular cations may partly block the two inward rectifying K+ channels.
机译:在90和10 mM细胞外K +溶液中研究了Ba2 +,Mg2 +,Ca2 +和Na +作为封闭离子对非洲爪蟾卵母细胞中表达的克隆的内向整流K +通道Kir2.1的影响。还使用另一个向内整流的K +通道Kir3.1 / Kir3.4获得了一些数据。 Ba 2+的添加导致两个通道的浓度,电压和时间依赖性块。降低细胞外K +浓度可增强阻断作用。数据表明,Ba2 +通过与通道孔内的位点结合来阻断通道,并且对于Kir2.1和Kir3,该位点的电结合距离delta显着不同。 1 / Kir3.4(分别为0.38和0.22)。 Mg2 +和Ca2 +引起两个通道的瞬时浓度和电压依赖性块。使用Kir2.1时,降低K +浓度会增加阻断作用。嵌段的电压依赖性小于Ba 2+(δ,0.1),这表明这些离子在通道孔内具有更浅的结合位点。通道对Mg2 +和Ca2 +的亲和力比Ba2 +低1000倍。 Na +的添加导致Kir2.1的浓度,电压和时间依赖性阻滞,与用Ba2 +观察到的类似。封闭阳离子(对于Kir2.1:Ba2 +,Mg2 +,Ca2 +;对于Kir3.1 / Kir3.4:Ba2 +)与胞外K +之间的竞争表明,封闭阳离子的结合位点可能是K +部分结合的位点K +通过通道的正常通过在正常生理条件下,天然存在的细胞外阳离子可能会部分阻断两个向内整流的K +通道。

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