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长链正烷醇对 Kv7.2/7.3 通道的双重调节。

Dual regulation of Kv7.2/7.3 channels by long-chain n-alcohols.

机构信息

Department of Brain Sciences, Daegu Gyeongbuk Institute of Science and Technology, Daegu, Republic of Korea.

出版信息

J Gen Physiol. 2023 Feb 6;155(2). doi: 10.1085/jgp.202213191. Epub 2022 Dec 19.

Abstract

Normal alcohols (n-alcohols) can induce anesthetic effects by acting on neuronal ion channels. Recent studies have revealed the effects of n-alcohols on various ion channels; however, the underlying molecular mechanisms remain unclear. Here, we provide evidence that long-chain n-alcohols have dual effects on Kv7.2/7.3 channels, resulting in channel activation as the net effect. Using heterologous expression systems, we found that n-alcohols could differentially regulate the Kv7.2/7.3 channel depending on their chain length. Treatment with short-chain ethanol and propanol diminished Kv7.2/7.3 currents, whereas treatment with long-chain hexanol and octanol enhanced the currents. However, the long-chain alcohols failed to potentiate Kv7.2 currents pre-activated by retigabine. Instead, they inhibited the currents, similar to short-chain ethanol. The stimulatory effect of the long-chain n-alcohols was also converted into an inhibitory one in the mutant Kv7.2(W236L) channels, while the inhibitory effect of ethanol did not differ between wild-type Kv7.2 and mutant Kv7.2(W236L). The inhibition of currents by n-alcohols was also seen in Kv7.1 channel which does not have the tryptophan (W) residue in S5. These findings suggest that long-chain n-alcohols exhibit dual effects through independent working sites on the Kv7.2 channel. Finally, we confirmed that the hydroxyl group with a negative electrostatic potential surface is essential for the dual actions of n-alcohol. Together, our data suggest that long-chain n-alcohols regulate Kv7.2/7.3 channels by interacting with both stimulatory and inhibitory sites and that their stimulatory action depends on the conserved tryptophan 236 residue in S5 and could be important for triggering their anesthetic effects.

摘要

正常醇(n-醇)可通过作用于神经元离子通道而产生麻醉作用。最近的研究揭示了 n-醇对各种离子通道的影响;然而,其潜在的分子机制尚不清楚。在这里,我们提供的证据表明,长链 n-醇对 Kv7.2/7.3 通道具有双重作用,导致通道激活作为净效应。使用异源表达系统,我们发现 n-醇可以根据其链长来区分调节 Kv7.2/7.3 通道。用短链乙醇和丙醇处理会减弱 Kv7.2/7.3 电流,而用长链己醇和辛醇处理则会增强电流。然而,长链醇未能增强由 retigabine 预先激活的 Kv7.2 电流。相反,它们抑制电流,类似于短链乙醇。长链 n-醇的刺激作用在突变体 Kv7.2(W236L)通道中也转换为抑制作用,而乙醇的抑制作用在野生型 Kv7.2 和突变体 Kv7.2(W236L)之间没有差异。n-醇对电流的抑制作用也见于 Kv7.1 通道,该通道在 S5 中没有色氨酸(W)残基。这些发现表明,长链 n-醇通过 Kv7.2 通道上独立的工作位点表现出双重作用。最后,我们证实带负静电表面的羟基是 n-醇双重作用所必需的。总之,我们的数据表明,长链 n-醇通过与刺激和抑制位点相互作用来调节 Kv7.2/7.3 通道,并且其刺激作用取决于 S5 中保守的色氨酸 236 残基,这对于触发其麻醉作用可能很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a19e/9767652/4cfe98fcd934/JGP_202213191_Fig1.jpg

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