The properties of voltage-dependent Na channels modified by veratridine (VTD) were studied in voltage-clamped nodes of Ranvier of the frog Rana pipiens. Two modes of gating of VTD-modified channels are described. The first, occurring on a time scale of milliseconds, is shown to be the transition of channels between a modified resting state and a modified open state. There are important qualitative and quantitative differences of this gating process in nerve compared with that in muscle (Leibowitz et al., 1986). A second gating process occurring on a time scale of seconds, was originally described as a modified activation process (Ulbricht, 1969). This process is further analyzed here, and a model is presented in which the slow process represents the gating of VTD-modified channels between open and inactivated states. An expanded model is a step in the direction of unifying the known rapid and slow physiologic processes of Na channels modified by VTD and related alkaloid neurotoxins.
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1 January 1989
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January 01 1989
Rapid and slow gating of veratridine-modified sodium channels in frog myelinated nerve.
T A Rando
T A Rando
Department of Anesthesia Research Laboratories, Brigham and Women's Hospital, Boston, Massachusetts.
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T A Rando
Department of Anesthesia Research Laboratories, Brigham and Women's Hospital, Boston, Massachusetts.
Online ISSN: 1540-7748
Print ISSN: 0022-1295
J Gen Physiol (1989) 93 (1): 43–65.
Citation
T A Rando; Rapid and slow gating of veratridine-modified sodium channels in frog myelinated nerve.. J Gen Physiol 1 January 1989; 93 (1): 43–65. doi: https://doi.org/10.1085/jgp.93.1.43
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