1995
DOI: 10.1007/bf00234151
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pH- and voltage-dependent conductances in toad skin

Abstract: The present study focuses on two closely related topics on ion conductance in toad skins: (i) the interaction of apical protons with the apical voltage-dependent Cl(-)-activated channels of the mitochondria-rich cells, and (ii) the description and characterization of a novel subject, a voltage-dependent H(+)-activated conductance. The Cl- conductance (GCl) is activated by tissue hyperpolarization (which leads to apical membrane depolarization) and the presence of Cl- ions in the apical solution. Increasing api… Show more

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Cited by 2 publications
(1 citation statement)
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“…pH Dependence of SKC1 actiVity. Proton-gated channels have been described in a number of preparations, including plant guard cells (21), toad epithelial cells (22), and sensory neurons (23), and their pH-dependent gating properties are generally compatible with single-protonation reactions with pK a for activation usually at pH ∼6. Figure 4 shows the pH dependence of SKC1 activation, studied from uptake experiments and from single-channel measurements in planar lipid bilayers.…”
Section: Resultsmentioning
confidence: 99%
“…pH Dependence of SKC1 actiVity. Proton-gated channels have been described in a number of preparations, including plant guard cells (21), toad epithelial cells (22), and sensory neurons (23), and their pH-dependent gating properties are generally compatible with single-protonation reactions with pK a for activation usually at pH ∼6. Figure 4 shows the pH dependence of SKC1 activation, studied from uptake experiments and from single-channel measurements in planar lipid bilayers.…”
Section: Resultsmentioning
confidence: 99%