Title : State-dependent block of CNG channels by dequalinium - Rosenbaum_2004_J.Gen.Physiol_123_295 |
Author(s) : Rosenbaum T , Gordon-Shaag A , Islas LD , Cooper J , Munari M , Gordon SE |
Ref : Journal of General Physiology , 123 :295 , 2004 |
Abstract :
Cyclic nucleotide-gated (CNG) ion channels are nonselective cation channels with a high permeability for Ca(2+). Not surprisingly, they are blocked by a number of Ca(2+) channel blockers including tetracaine, pimozide, and diltiazem. We studied the effects of dequalinium, an extracellular blocker of the small conductance Ca(2+)-activated K(+) channel. We previously noted that dequalinium is a high-affinity blocker of CNGA1 channels from the intracellular side, with little or no state dependence at 0 mV. Here we examined block by dequalinium at a broad range of voltages in both CNGA1 and CNGA2 channels. We found that dequalinium block was mildly state dependent for both channels, with the affinity for closed channels 3-5 times higher than that for open channels. Mutations in the S4-S5 linker did not alter the affinity of open channels for dequalinium, but increased the affinity of closed channels by 10-20-fold. The state-specific effect of these mutations raises the question of whether/how the S4-S5 linker alters the binding of a blocker within the ion permeation pathway. |
PubMedSearch : Rosenbaum_2004_J.Gen.Physiol_123_295 |
PubMedID: 14981138 |
Rosenbaum T, Gordon-Shaag A, Islas LD, Cooper J, Munari M, Gordon SE (2004)
State-dependent block of CNG channels by dequalinium
Journal of General Physiology
123 :295
Rosenbaum T, Gordon-Shaag A, Islas LD, Cooper J, Munari M, Gordon SE (2004)
Journal of General Physiology
123 :295