In an earlier investigation, we demonstrated that the likelihood of interaction of a positively charged ryanoid, 21-amino-9α-hydroxyryanodine, with the sarcoplasmic reticulum Ca2+-release channel (ryanodine receptor, RyR) is dependent on holding potential (Tanna, B., W. Welch, L. Ruest, J.L. Sutko, and A.J. Williams. 1998. J. Gen. Physiol. 112:55–69) and suggested that voltage dependence could result from either the translocation of the charged ligand to a site within the voltage drop across the channel or a voltage-driven alteration in receptor affinity. We now report experiments that allow us to assess the validity of these alternate mechanisms. Ryanodol is a neutral ryanoid that binds to RyR and induces modification of channel function. By determining the influence of transmembrane potential on the probability of channel modification by ryanodol and the rate constants of ryanodol association and dissociation, we demonstrate that the influence of voltage is qualitatively the same for both the neutral and positively charged ryanoids. These experiments establish that most, if not all, of the modification of ryanoid interaction with RyR by transmembrane holding potential results from a voltage-driven alteration in receptor affinity.
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1 July 2000
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July 01 2000
The Interaction of a Neutral Ryanoid with the Ryanodine Receptor Channel Provides Insights into the Mechanisms by Which Ryanoid Binding Is Modulated by Voltage
Bhavna Tanna,
Bhavna Tanna
aDepartment of Cardiac Medicine, National Heart & Lung Institute, Imperial College of Science, Technology & Medicine, London SW3 6LY, United Kingdom
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William Welch,
William Welch
bDepartment of Biochemistry, University of Nevada School of Medicine, Reno, Nevada 89557
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Luc Ruest,
Luc Ruest
dDepartment of Chemistry, University of Sherbrooke, Sherbrooke, Quebec, JK1 2R1, Canada
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John L. Sutko,
John L. Sutko
cDepartment of Pharmacology, University of Nevada School of Medicine, Reno, Nevada 89557
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Alan J. Williams
Alan J. Williams
aDepartment of Cardiac Medicine, National Heart & Lung Institute, Imperial College of Science, Technology & Medicine, London SW3 6LY, United Kingdom
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Bhavna Tanna
aDepartment of Cardiac Medicine, National Heart & Lung Institute, Imperial College of Science, Technology & Medicine, London SW3 6LY, United Kingdom
William Welch
bDepartment of Biochemistry, University of Nevada School of Medicine, Reno, Nevada 89557
Luc Ruest
dDepartment of Chemistry, University of Sherbrooke, Sherbrooke, Quebec, JK1 2R1, Canada
John L. Sutko
cDepartment of Pharmacology, University of Nevada School of Medicine, Reno, Nevada 89557
Alan J. Williams
aDepartment of Cardiac Medicine, National Heart & Lung Institute, Imperial College of Science, Technology & Medicine, London SW3 6LY, United Kingdom
Abbreviation used in this paper: RyR, ryanodine receptor.
Received:
December 20 1999
Revision Requested:
April 12 2000
Accepted:
May 08 2000
Online ISSN: 1540-7748
Print ISSN: 0022-1295
© 2000 The Rockefeller University Press
2000
The Rockefeller University Press
J Gen Physiol (2000) 116 (1): 1–10.
Article history
Received:
December 20 1999
Revision Requested:
April 12 2000
Accepted:
May 08 2000
Citation
Bhavna Tanna, William Welch, Luc Ruest, John L. Sutko, Alan J. Williams; The Interaction of a Neutral Ryanoid with the Ryanodine Receptor Channel Provides Insights into the Mechanisms by Which Ryanoid Binding Is Modulated by Voltage. J Gen Physiol 1 July 2000; 116 (1): 1–10. doi: https://doi.org/10.1085/jgp.116.1.1
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