Characterization of the Rapidly Activating Delayed Rectifier Potassium Current, IKr, in HL-1 Mouse Atrial Myocytes

被引:0
作者
Futoshi Toyoda
Wei-Guang Ding
Dimitar P. Zankov
Mariko Omatsu-Kanbe
Takahiro Isono
Minoru Horie
Hiroshi Matsuura
机构
[1] Shiga University of Medical Science,Department of Physiology
[2] Shiga University of Medical Science,Department of Cardiovascular and Respiratory Medicine
[3] Shiga University of Medical Science,Central Research Laboratory
来源
Journal of Membrane Biology | 2010年 / 235卷
关键词
Cardiac cell line; Potassium current; Potassium channel; Patch-clamp; HL-1 cell; siRNA;
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摘要
HL-1 is the adult murine cardiac cell line that can be passaged repeatedly in vitro without losing differentiated phenotype. The present study was designed to characterize the rapidly activating delayed rectifier potassium current, IKr, endogenously expressed in HL-1 cells using the whole-cell patch-clamp technique. In the presence of nisoldipine, depolarizing voltage steps applied from a holding potential of −50 mV evoked the time-dependent outward current, followed by slowly decaying outward tail current upon return to the holding potential. The amplitude of the current increased with depolarizations up to 0 mV but then progressively decreased with further depolarizations. The time-dependent outward current as well as the tail current were highly sensitive to block by E-4031 and dofetilide (IC50 of 21.1 and 15.1 nM, respectively) and almost totally abolished by micromolar concentrations of each drug, suggesting that most of the outward current in HL-1 cells was attributable to IKr. The magnitude of IKr available from HL-1 cells (18.1 ± 1.5 pA pF−1) was sufficient for reliable measurements of various gating parameters. RT-PCR and Western blot analysis revealed the expression of alternatively spliced forms of mouse ether-a-go-go-related genes (mERG1), the full-length mERG1a and the N-terminally truncated mERG1b isoforms. Knockdown of mERG1 transcripts with small interfering RNA (siRNA) dramatically reduced IKr amplitude, confirming the molecular link of mERG1 and IKr in HL-1 cells. These findings demonstrate that HL-1 cells possess IKr with properties comparable to those in native cardiac IKr and provide an experimental model suitable for studies of IKr channels.
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页码:73 / 87
页数:14
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