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SLO2通道受到所有激活SLO1钾离子通道的二价阳离子的抑制。

SLO2 Channels Are Inhibited by All Divalent Cations That Activate SLO1 K+ Channels.

作者信息

Budelli Gonzalo, Sun Qi, Ferreira Juan, Butler Alice, Santi Celia M, Salkoff Lawrence

机构信息

From the Departments of Neuroscience and National Center for Behavioral Genomics and Volen Center for Complex Systems, Department of Biology, Brandeis University, Waltham, Massachusetts 02458.

From the Departments of Neuroscience and.

出版信息

J Biol Chem. 2016 Apr 1;291(14):7347-56. doi: 10.1074/jbc.M115.709436. Epub 2016 Jan 28.

Abstract

Two members of the family of high conductance K(+)channels SLO1 and SLO2 are both activated by intracellular cations. However, SLO1 is activated by Ca(2+)and other divalent cations, while SLO2 (Slack or SLO2.2 from rat) is activated by Na(+) Curiously though, we found that SLO2.2 is inhibited by all divalent cations that activate SLO1, with Zn(2+)being the most effective inhibitor with an IC50of ∼8 μmin contrast to Mg(2+), the least effective, with an IC50of ∼ 1.5 mm Our results suggest that divalent cations are not SLO2 pore blockers, but rather inhibit channel activity by an allosteric modification of channel gating. By site-directed mutagenesis we show that a histidine residue (His-347) downstream of S6 reduces inhibition by divalent cations. An analogous His residue present in some CNG channels is an inhibitory cation binding site. To investigate whether inhibition by divalent cations is conserved in an invertebrate SLO2 channel we cloned the SLO2 channel fromDrosophila(dSLO2) and compared its properties to those of rat SLO2.2. We found that, like rat SLO2.2, dSLO2 was also activated by Na(+)and inhibited by divalent cations. Inhibition of SLO2 channels in mammals andDrosophilaby divalent cations that have second messenger functions may reflect the physiological regulation of these channels by one or more of these ions.

摘要

高电导钾离子通道家族中的两个成员SLO1和SLO2均由细胞内阳离子激活。然而,SLO1由Ca(2+)和其他二价阳离子激活,而SLO2(大鼠的Slack或SLO2.2)由Na(+)激活。不过,奇怪的是,我们发现SLO2.2被所有激活SLO1的二价阳离子抑制,其中Zn(2+)是最有效的抑制剂,IC50约为8 μM,相比之下,Mg(2+)最无效,IC50约为1.5 mM。我们的结果表明,二价阳离子不是SLO2的孔道阻断剂,而是通过对通道门控的变构修饰来抑制通道活性。通过定点诱变,我们表明S6下游的一个组氨酸残基(His-347)可降低二价阳离子的抑制作用。一些环核苷酸门控通道中存在的类似His残基是一个抑制性阳离子结合位点。为了研究二价阳离子的抑制作用在无脊椎动物SLO2通道中是否保守,我们克隆了果蝇的SLO2通道(dSLO2),并将其特性与大鼠SLO2.2的特性进行了比较。我们发现,与大鼠SLO2.2一样,dSLO2也被Na(+)激活并被二价阳离子抑制。具有第二信使功能的二价阳离子对哺乳动物和果蝇中SLO2通道的抑制作用可能反映了这些离子中的一种或多种对这些通道的生理调节。

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