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. 2004 Jun;24(3):317-30.
doi: 10.1023/b:cemn.0000022765.52109.26.

Intramembrane charge movement associated with endogenous K+ channel activity in HEK-293 cells

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Intramembrane charge movement associated with endogenous K+ channel activity in HEK-293 cells

Guillermo Avila et al. Cell Mol Neurobiol. 2004 Jun.

Abstract

1. The use of molecular biology in combination with electrophysiology in the HEK-293 cell line has given fascinating insights into neuronal ion channel function. Nevertheless, to fully understand the properties of channels exogenously expressed in these cells, a detailed evaluation of endogenous channels is indispensable. 2. Previous studies have shown the expression of endogenous voltage-gated K+, Ca2+, and Cl- channels and this predicts that changes in membrane potential will cause intramembrane charge movement, though this gating charge translocation remain undefined. Here, we confirm this prediction by performing patch-clamp experiments to record ionic and gating currents. Our data show that HEK-293 cells express at least two types of K+-selective endogenous channels which sustain the majority of the ionic current, and exclude a significant contribution from Ca2+ and Cl- channels to the whole-cell current. 3. Gating currents were unambiguously resolved after ionic current blockade enabling this first report of intramembrane charge movement in HEK-293 cells arising entirely from endogenous K+ channel activity, and providing valuable information concerning the activation mechanism of voltage-gated K+ channels in these cells.

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References

    1. Armstrong, C. M., and Bezanilla, F. (1973). Currents related to the movement of the gating particles of the sodium channels. Nature242:459-461. - PubMed
    1. Avila, G., and Dirksen, R. T. (2000). Functional impact of the ryanodine receptor on the skeletal muscle L-type Ca2 channel. J. Gen. Physiol. 115:467-480. - PMC - PubMed
    1. Bangalore, R., Mehrke, G., Gingrich, K., Hofmann, F., and Kass, R. S. (1996). Influence of L-type Ca2 channel α2δ-subunit on ionic and gating current in transiently transfected HEK 293 cells. Am. J. Physiol.270:H1521-H1528. - PubMed
    1. Berjukow, S., Doring, F., Froschmayr, M., Grabner, M., Glossmann, H., and Hering, S. (1996). Endogenous calcium channels in human embryonic kidney (HEK293) cells. Br. J. Pharmacol. 118:748-754. - PMC - PubMed
    1. Bezanilla, F., Perozo, E., and Stefani, E. (1994). Gating of Shaker K+ channels. II. The components of gating currents and a model of channel activation. Biophys. J.66:1011-1021. - PMC - PubMed

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