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Inhibition of the hERG potassium channel by phenanthrene: a polycyclic aromatic hydrocarbon pollutant.

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TLDR
In this article, the ability of phenanthrene to interact with human Ether-a-go-go -Related Gene (HERG) encoded Kv11.1 channels was investigated.
Abstract
The lipophilic polycyclic aromatic hydrocarbon (PAH) phenanthrene is relatively abundant in polluted air and water and can access and accumulate in human tissue. Phenanthrene has been reported to interact with cardiac ion channels in several fish species. This study was undertaken to investigate the ability of phenanthrene to interact with hERG (human Ether-a-go-go-Related Gene) encoded Kv11.1 K+ channels, which play a central role in human ventricular repolarization. Pharmacological inhibition of hERG can be proarrhythmic. Whole-cell patch clamp recordings of hERG current (IhERG) were made from HEK293 cells expressing wild-type (WT) and mutant hERG channels. WT IhERG1a was inhibited by phenanthrene with an IC50 of 17.6 ± 1.7 µM, whilst IhERG1a/1b exhibited an IC50 of 1.8 ± 0.3 µM. WT IhERG block showed marked voltage and time dependence, indicative of dependence of inhibition on channel gating. The inhibitory effect of phenanthrene was markedly impaired by the attenuated inactivation N588K mutation. Remarkably, mutations of S6 domain aromatic amino acids (Y652, F656) in the canonical drug binding site did not impair the inhibitory action of phenanthrene; the Y652A mutation augmented IhERG block. In contrast, the F557L (S5) and M651A (S6) mutations impaired the ability of phenanthrene to inhibit IhERG, as did the S624A mutation below the selectivity filter region. Computational docking using a cryo-EM derived hERG structure supported the mutagenesis data. Thus, phenanthrene acts as an inhibitor of the hERG K+ channel by directly interacting with the channel, binding to a distinct site in the channel pore domain.

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Journal ArticleDOI

Cardiac toxicity of phenanthrene depends on developmental stage in Atlantic cod (Gadus morhua).

TL;DR: In this article , the temporal dependence of Phenanthrene toxicity and the downstream effects of cardiac dysfunction using Atlantic cod (Gadus morhua) was clarified, and the L-type calcium channel blocker Nicardipine (Nic) was individually applied to cod embryos either during cardiogenesis (early) or after the onset of cardiac function (late).
Journal ArticleDOI

Structural analysis of hERG channel blockers and the implications for drug design.

TL;DR: In this paper , the authors used computational modeling to study the implications of hERG mutations on hERG structure and trafficking, the interactions of HERG with hERG chaperone proteins and with membrane-soluble molecules, the mechanisms of drugs that inhibit hERG trafficking and drugs that rescue hERG mutants.
Journal ArticleDOI

Lipid Profile Altered in Phenanthrene Exposed Zebrafish Embryos with Implications for Neurological Development and Early Life Nutritional Status

TL;DR: In this article , the impacts of altered yolk utilization on fish embryos using the cardiotoxic compound phenanthrene were investigated using a nontargeted approach to profile lipids in 24 and 72 hpf embryos.
References
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Journal ArticleDOI

A mechanistic link between an inherited and an acquird cardiac arrthytmia: HERG encodes the IKr potassium channel

TL;DR: The finding that HERG encodes IKr channels provides a mechanistic link between certain forms of inherited and acquired LQT, and that an additional subunit may be required for drug sensitivity.
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hERG potassium channels and cardiac arrhythmia

TL;DR: Insights gained from the crystal structures of other potassium channels have helped understanding of the block of hERG channels and the mechanisms of gating.
Journal ArticleDOI

HERG, a Human Inward Rectifier in the Voltage-Gated Potassium Channel Family

TL;DR: The properties of HERG channels are consistent with the gating properties of Eag-related and other outwardly rectifying, S4-containing potassium channels, but with the addition of an inactivation mechanism that attenuates potassium efflux during depolarization.
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A structural basis for drug-induced long QT syndrome

TL;DR: Alanine-scanning mutagenesis is used to determine the structural basis for high-affinity drug block of HERG channels by MK-499, a methanesulfonanilide antiarrhythmic drug, and suggest a possible structural explanation for how so many commonly used medications block HERG but not other Kv channels.
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Defects in cardiac function precede morphological abnormalities in fish embryos exposed to polycyclic aromatic hydrocarbons.

TL;DR: Different PAH compounds have distinct and specific effects on fish at early life history stages, and the relative toxicity of the different mixtures was directly proportional to the amount of phenanthrene, or the dibenzothiophene-phenanthrene total in the mixture.
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