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Updated: Jun 6, 2026

High-throughput Screening for Chemical Modulators of Post-transcriptionally Regulated Genes
Published on: March 3, 2015
Identification of human Ether-à-go-go related gene modulators by three screening platforms in an academic
Xi-Ping Huang1, Thomas Mangano, Sandy Hufeisen
1Department of Pharmacology, University of North Carolina at Chapel Hill, USA.
Insights
Drug interactions with the human Ether-à-go-go related gene (hERG) potassium channel can cause dangerous heart rhythm problems. This study compared drug screening methods to assess hERG channel activity and potential cardiac risks.
Area of Science:
- Cardiovascular Pharmacology
- Ion Channel Biology
- Drug Safety Assessment
Background:
- The human Ether-à-go-go related gene (hERG) potassium channel is crucial for cardiac repolarization.
- hERG channel inhibition by drugs can lead to QT prolongation, ventricular arrhythmias, and sudden cardiac death.
- FDA guidelines mandate evaluation of drug candidates for hERG activity.
Purpose of the Study:
- To characterize the hERG channel activity of 49 drugs using multiple screening platforms.
- To compare the potency of hERG inhibitors across different assay types.
- To develop and validate novel assays for hERG drug interaction studies.
Main Methods:
- Automated planar patch clamp (APPC)
- High-throughput fluorescent thallium (Tl+) flux assays
- [³H]dofetilide competition binding assays
- Utilized a consistent HEK293-hERG cell line for all assays.
Main Results:
- hERG inhibitors showed highest potency in APPC, intermediate in binding assays, and lowest in Tl+ flux assays.
- Binding affinity and Tl+ flux potencies correlated well with APPC results.
- Inhibitory potencies in APPC assays largely matched literature values.
- A novel fluorescent Tl+ flux assay was developed to assess drug effects on hERG trafficking and surface expression.
Conclusions:
- APPC, binding, and Tl+ flux assays provide comparable data for hERG activity assessment.
- The developed fluorescent Tl+ flux assay offers a valuable tool for evaluating drug effects on hERG channel function and expression.
- Comprehensive drug screening for hERG activity is essential for ensuring cardiac safety.
Abstract:
The human Ether-à-go-go related gene (hERG) potassium channel is responsible for the rapid delayed rectifier potassium current that plays a critical role in the repolarization of cardiomyocytes during the cardiac action potential. In humans, inhibition of hERG by drugs can prolong the electrocardiographic QT interval, which, in rare instance, leads to ventricular arrhythmia and sudden cardiac death. As such, several medications that block hERG channels in vitro have been withdrawn from the market due to QT prolongation and arrhythmias. The current FDA guidelines recommend that drug candidates destined for human use be evaluated for potential hERG activity ( www.fda.gov/downloads/Drugs/GuidanceComplianceRegulatoryInformation/Guidances/ucm074963.pdf ). Here, we employed automated planar patch clamp (APPC), high-throughput fluorescent Tl(+) flux, and moderate-throughput [³H]dofetilide competition binding assays to characterize a panel of 49 drugs for their activities at the hERG channel. Notably, we used the same HEK293-hERG cell line for all assays, facilitating comparisons of hERG potencies across screening platforms. In general, hERG inhibitors were most potent in APPC assays, intermediate potent in [³H]dofetilide binding assays, and least potent in Tl(+) flux assays. Binding affinity constants (pK(i) values) and Tl(+) flux potencies (pEC₅₀ values) correlated well with APPC pEC₅₀ values. Further, the inhibitory potencies of many known hERG inhibitors in APPC matched literature values from manual and/or automated patch clamp systems. We also developed a novel fluorescent Tl(+) flux assays to measure the effects of drugs that modulate hERG trafficking and surface expression.
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