Novel cell-free high-throughput screening method for pharmacological tools targeting K+ channels

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Abstract

K+ channels, a superfamily of ∼80 members, control cell excitability, ion homeostasis, and many forms of cell signaling. Their malfunctions cause numerous diseases including neuronal disorders, cardiac arrhythmia, diabetes, and asthma. Here we present a novel liposome flux assay (LFA) that is applicable to most K+ channels. It is robust, low cost, and high throughput. Using LFA, we performed small molecule screens on three different K+ channels and identified new activators and inhibitors for biological research on channel function and for medicinal development. We further engineered a hERG (human ether-à-go-go-related gene) channel, which, when used in LFA, provides a highly sensitive (zero false negatives on 50 hERG-sensitive drugs) and highly specific (zero false positives on 50 hERG-insensitive drugs), low-cost hERG safety assay.

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Su, Z., Brown, E. C., Wang, W., & MacKinnon, R. (2016). Novel cell-free high-throughput screening method for pharmacological tools targeting K+ channels. Proceedings of the National Academy of Sciences of the United States of America, 113(20), 5748–5753. https://doi.org/10.1073/pnas.1602815113

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