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联芳基磺酰胺基通过激活电压传感器上调或下调离子通道活性。

Biaryl sulfonamide motifs up- or down-regulate ion channel activity by activating voltage sensors.

机构信息

Department of Clinical and Experimental Medicine, Linköping University, Linköping, Sweden.

Department of Physics, Chemistry and Biology, Linköping University, Linköping, Sweden.

出版信息

J Gen Physiol. 2018 Aug 6;150(8):1215-1230. doi: 10.1085/jgp.201711942. Epub 2018 Jul 12.

Abstract

Voltage-gated ion channels are key molecules for the generation of cellular electrical excitability. Many pharmaceutical drugs target these channels by blocking their ion-conducting pore, but in many cases, channel-opening compounds would be more beneficial. Here, to search for new channel-opening compounds, we screen 18,000 compounds with high-throughput patch-clamp technology and find several potassium-channel openers that share a distinct biaryl-sulfonamide motif. Our data suggest that the negatively charged variants of these compounds bind to the top of the voltage-sensor domain, between transmembrane segments 3 and 4, to open the channel. Although we show here that biaryl-sulfonamide compounds open a potassium channel, they have also been reported to block sodium and calcium channels. However, because they inactivate voltage-gated sodium channels by promoting activation of one voltage sensor, we suggest that, despite different effects on the channel gates, the biaryl-sulfonamide motif is a general ion-channel activator motif. Because these compounds block action potential-generating sodium and calcium channels and open an action potential-dampening potassium channel, they should have a high propensity to reduce excitability. This opens up the possibility to build new excitability-reducing pharmaceutical drugs from the biaryl-sulfonamide scaffold.

摘要

电压门控离子通道是产生细胞电兴奋性的关键分子。许多药物通过阻断其离子通道来靶向这些通道,但在许多情况下,通道开放化合物将更有益。在这里,为了寻找新的通道开放化合物,我们使用高通量膜片钳技术筛选了 18000 种化合物,发现了几种具有独特的联苯磺酰胺基序的钾通道开放剂。我们的数据表明,这些化合物的带负电荷的变体结合在电压传感器结构域的顶部,在跨膜片段 3 和 4 之间,以打开通道。虽然我们在这里表明联苯磺酰胺化合物可以打开钾通道,但它们也被报道可以阻断钠和钙通道。然而,由于它们通过促进一个电压传感器的激活来失活电压门控钠通道,我们认为,尽管对通道门有不同的影响,但联苯磺酰胺基序是一种通用的离子通道激活基序。由于这些化合物阻断产生动作电位的钠和钙通道,并打开动作电位衰减的钾通道,它们应该具有降低兴奋性的高倾向。这为从联苯磺酰胺支架构建新的降低兴奋性的药物开辟了可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b38/6080886/6f915fe9ea68/JGP_201711942_Fig1.jpg

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