Key result
RNF207 knockdown in zebrafish prolonged ventricular action potential duration (283 vs 247 ms), while its overexpression in rabbit cardiomyocytes shortened it, indicating RNF207 regulates cardiac excitation via HERG.
Why the study?
Does RNF207 regulate cardiac action potential duration and HERG channel expression in preclinical models?
Does RNF207 regulate cardiac action potential duration and HERG channel expression in preclinical models?
Mean Difference: 36
Absolute Event Rate: 283% vs 247%
p-value: p=<0.05
RNF207 is a novel regulator of cardiac action potential duration, likely acting through the regulation of HERG channel trafficking and localization in a heat shock protein-dependent manner.
RNF207 regulates repolarization in zebrafish models; leaves open causal role in human QT variation and arrhythmia risk.
Two recent studies (Newton-Cheh, C. et al. (2009) Common variants at ten loci influence QT interval duration in the QTGEN Study. Nat. Genet. 41, 399-406 and Pfeufer, A. et al. (2009) Common variants at ten loci modulate the QT interval duration in the QTSCD Study. Nat. Genet. 41, 407-414) identified an association, with genome-wide significance, between a single nucleotide polymorphism within the gene encoding RING finger protein 207 (RNF207) and the QT interval. We sought to determine the role of RNF207 in cardiac electrophysiology. Morpholino knockdown of RNF207 in zebrafish embryos resulted in action potential duration prolongation, occasionally a 2:1 atrioventricular block, and slowing of conduction velocity. Conversely, neonatal rabbit cardiomyocytes infected with RNF207-expressing adenovirus exhibited shortened action potential duration. Using transfections of U-2 OS and HEK293 cells, Western blot analysis and immunocytochemistry data demonstrate that RNF207 and the human ether-a-go-go-related gene (HERG) potassium channel interact and colocalize. Furthermore, RNF207 overexpression significantly elevated total and membrane HERG protein and HERG-encoded current density by ∼30-50%, which was dependent on the intact N-terminal RING domain of RNF207. Finally, coexpression of RNF207 and HSP70 increased HERG expression compared with HSP70 alone. This effect was dependent on the C terminus of RNF207. Taken together, the evidence is strong that RNF207 is an important regulator of action potential duration, likely via effects on HERG trafficking and localization in a heat shock protein-dependent manner.
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Roder et al. (2014) studied Cardiac excitation and QT interval prolongation. RNF207 knockdown or overexpression vs. Wild-type or empty vector control was evaluated on Ventricular action potential duration (APD80) in zebrafish at 48 hours post-fertilization (Mean difference 36 ms, p=<0.05). RNF207 knockdown in zebrafish prolonged ventricular action potential duration (283 vs 247 ms), while its overexpression in rabbit cardiomyocytes shortened it, indicating RNF207 regulates cardiac excitation via HERG.
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