Modulating the voltage sensor of a cardiac potassium channel shows antiarrhythmic effects.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 33990467.
- Also identified by DOI 10.1073/pnas.2024215118 and PMC identifier 8157969.
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Abstract
Cardiac arrhythmias are the most common cause of sudden cardiac death worldwide. Lengthening the ventricular action potential duration (APD), either congenitally or via pathologic or pharmacologic means, predisposes to a life-threatening ventricular arrhythmia, Torsade de Pointes. I<sub>Ks</sub> (KCNQ1+KCNE1), a slowly activating K<sup>+</sup> current, plays a role in action potential repolarization. In this study, we screened a chemical library in silico by docking compounds to the voltage-sensing domain (VSD) of the I<sub>Ks</sub> channel. Here, we show that C28 specifically shifted I<sub>Ks</sub> VSD activation in ventricle to more negative voltages and reversed the drug-induced lengthening of APD. At the same dosage, C28 did not cause significant changes of the normal APD in either ventricle or atrium. This study provides evidence in support of a computational prediction of I<sub>Ks</sub> VSD activation as a potential therapeutic approach for all forms of APD prolongation. This outcome could expand the therapeutic efficacy of a myriad of currently approved drugs that may trigger arrhythmias.
Medical subject headings
- Action Potentials
- KCNQ1 Potassium Channel
- Myocytes, Cardiac
- Small Molecule Libraries