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Open Na+ channel blockade: multiple rest states revealed by channel interactions with disopyramide and quinidine.

Publication ,  Journal Article
Zilberter, YI; Starmer, CF; Grant, AO
Published in: Am J Physiol
May 1994

In voltage-clamp studies of atrial myocytes exposed to disopyramide or quinidine, pulse-train stimulation revealed use-dependent block that increased with increased pulse amplitude. Use-dependent block also became negligible at hyperpolarized holding potentials (< -150 mV), consistent with either rapid unbinding at the holding potential or trapping of the drug in a drug-complexed rest conformation followed by rapid unbinding during the next channel opening event. To explore the unbinding properties of hypothetically different rest-blocked conformations, we exposed cells to a postdepolarization "conditioning" potential after channels had become fully inactivated so as to vary the transition to different hypothetical rest-blocked channels. Pulse-train stimulation from -130 to -30 mV generated only a small amount of use-dependent block. Inserting a 120-ms subthreshold (e.g., -100 mV) postdepolarization conditioning potential before return to -130 mV increased use-dependent block. The fraction of steady-state block exhibited a bell-shaped dependence on the conditioning potential. These results are consistent with the existence of a mixture of rest-blocked channel conformations, each having direct access to the blocked-inactivated state. These intermediate rest conformations display radically different drug unbinding rates.

Duke Scholars

Published In

Am J Physiol

DOI

ISSN

0002-9513

Publication Date

May 1994

Volume

266

Issue

5 Pt 2

Start / End Page

H2007 / H2017

Location

United States

Related Subject Headings

  • Sodium Channels
  • Sodium Channel Blockers
  • Rabbits
  • Quinidine
  • Membrane Potentials
  • Mathematics
  • Kinetics
  • Ion Channel Gating
  • In Vitro Techniques
  • Heart
 

Citation

APA
Chicago
ICMJE
MLA
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Zilberter, Y. I., Starmer, C. F., & Grant, A. O. (1994). Open Na+ channel blockade: multiple rest states revealed by channel interactions with disopyramide and quinidine. Am J Physiol, 266(5 Pt 2), H2007–H2017. https://doi.org/10.1152/ajpheart.1994.266.5.H2007
Zilberter, Y. I., C. F. Starmer, and A. O. Grant. “Open Na+ channel blockade: multiple rest states revealed by channel interactions with disopyramide and quinidine.Am J Physiol 266, no. 5 Pt 2 (May 1994): H2007–17. https://doi.org/10.1152/ajpheart.1994.266.5.H2007.
Zilberter YI, Starmer CF, Grant AO. Open Na+ channel blockade: multiple rest states revealed by channel interactions with disopyramide and quinidine. Am J Physiol. 1994 May;266(5 Pt 2):H2007–17.
Zilberter, Y. I., et al. “Open Na+ channel blockade: multiple rest states revealed by channel interactions with disopyramide and quinidine.Am J Physiol, vol. 266, no. 5 Pt 2, May 1994, pp. H2007–17. Pubmed, doi:10.1152/ajpheart.1994.266.5.H2007.
Zilberter YI, Starmer CF, Grant AO. Open Na+ channel blockade: multiple rest states revealed by channel interactions with disopyramide and quinidine. Am J Physiol. 1994 May;266(5 Pt 2):H2007–H2017.

Published In

Am J Physiol

DOI

ISSN

0002-9513

Publication Date

May 1994

Volume

266

Issue

5 Pt 2

Start / End Page

H2007 / H2017

Location

United States

Related Subject Headings

  • Sodium Channels
  • Sodium Channel Blockers
  • Rabbits
  • Quinidine
  • Membrane Potentials
  • Mathematics
  • Kinetics
  • Ion Channel Gating
  • In Vitro Techniques
  • Heart