Center for Cancer Cell Biology, Immunology, and Infection, Department of Cell Biology & Anatomy, Chicago Medical School, North Chicago, Illinois, 60064, USA.
School of Graduate and Postdoctoral Studies, Rosalind Franklin University, North Chicago, Illinois, 60064, USA.
Sci Rep. 2019 Jul 15;9(1):10224. doi: 10.1038/s41598-019-46615-9.
The large conductance, calcium- and voltage-activated potassium channel, known as the BK channel, is one of the central proteins that mediate alcohol intoxication and tolerance across species. Although ethanol targets BK channels through direct interaction, how ethanol-mediated BK channel activation causes behavioral intoxication is poorly understood. In. C. elegans, loss of function in SLO-1, the BK channel ortholog, confers profound ethanol resistance in movement and egg-laying behaviors. Here, we show that depletion of SLO-1 channels clustered at the active zones with no change in the overall channel expression level results in locomotory resistance to the intoxicating effect of ethanol, equivalent to that of slo-1 loss-of-function mutants. Likewise, depletion of clustered SLO-1 channels in the sarcolemma and neurons leads to ethanol-resistant egg-laying behavior. By contrast, reduction in the overall SLO-1 channel level by over 70% causes only moderate ethanol resistance in movement, and minimal, if any, resistance in egg laying. Our findings strongly suggest that behavioral ethanol sensitivity is conferred by local, but not global, depression of excitability via clustered BK channels. Given that clustered BK channels are functionally coupled to, and localize near, calcium channels, ethanol may mediate its behavioral effects by targeting BK channels and their coupled calcium channels.
大电导、钙激活和电压激活钾通道,称为 BK 通道,是介导不同物种酒精中毒和耐受的核心蛋白之一。尽管乙醇通过直接相互作用靶向 BK 通道,但乙醇介导的 BK 通道激活如何导致行为性中毒仍知之甚少。在秀丽隐杆线虫中,BK 通道的同源物 SLO-1 的功能丧失导致运动和产卵行为对乙醇的抗性显著增强。在这里,我们表明 SLO-1 通道簇在活性区的耗竭而不改变整体通道表达水平导致对乙醇致醉作用的运动抗性,相当于 slo-1 功能丧失突变体的抗性。同样,在质膜和神经元中 SLO-1 通道簇的耗竭导致产卵行为对乙醇的抗性。相比之下,整体 SLO-1 通道水平降低超过 70%仅导致运动中适度的乙醇抗性,而在产卵中几乎没有抗性。我们的研究结果强烈表明,行为性乙醇敏感性是通过簇集的 BK 通道局部而非全局降低兴奋性来赋予的。鉴于簇集的 BK 通道与钙通道功能偶联并定位于其附近,乙醇可能通过靶向 BK 通道及其偶联的钙通道来介导其行为效应。