The definitive version is available at www.blackwell-synergy.com1. In the present work we investigated the dependence on temperature of the ionic conductance and gating of human muscle ClC-1 chloride channels, transiently expressed in human embryonic kidney (HEK 293) cells. 2. At normal pH, ClC-1 currents deactivated at negative potentials with a double-exponential time course. The time constants of the exponential components, corresponding to the relaxations of the fast and slow gates, were temperature dependent with Q10 values of ≈3 and ≈4, respectively. Current amplitude increased with increasing temperature with a Q10 of ≈1.6. 3. The voltage dependence of the two gating processes was shifted towards more positive potentials with increas...
1. ClC proteins are a class of voltage-dependent Cl- channels with several members mutated in human ...
Chen MF, Jockusch H. Role of phosphorylation and physiological state in the regulation of the muscul...
Chloride fluxes are the main contributors to the resting conductance of mammalian skeletal muscle fi...
The chloride channel from the Torpedo electric organ, ClC-0, is the best studied member of a large g...
1. The influence of Cl- concentration and pH on gating of the skeletal muscle Cl- channel, ClC-1, ha...
ClC proteins are chloride channels and transporters that are found in a wide variety of prokaryotic ...
We expressed the skeletal muscle chloride channel, ClC-1, in HEK293 cells and investigated it with t...
We expressed the skeletal muscle chloride channel, ClC-1, in HEK293 cells and investigated it with t...
Voltage-dependent gating was investigated in a recombinant human skeletal muscle Cl- channel, hCIC-1...
ClC-1 protein channels facilitate rapid passage of chloride ions across cellular membranes, thereby ...
The definitive version is available at www.blackwell-synergy.com1. ClC-1 is a Cl- channel in mammali...
Electrical membrane properties of skeletal muscle fibers have been thoroughly studied over the last ...
ClC-1 protein channels facilitate rapid passage of chloride ions across cellular membranes, thereby ...
Molecular mechanisms of ion conduction in ClC-type chloride channels: Lessons from disease-causing m...
The gating of ClC-0, the voltage-dependent Cl- channel from Torpedo electric organ, is strongly infl...
1. ClC proteins are a class of voltage-dependent Cl- channels with several members mutated in human ...
Chen MF, Jockusch H. Role of phosphorylation and physiological state in the regulation of the muscul...
Chloride fluxes are the main contributors to the resting conductance of mammalian skeletal muscle fi...
The chloride channel from the Torpedo electric organ, ClC-0, is the best studied member of a large g...
1. The influence of Cl- concentration and pH on gating of the skeletal muscle Cl- channel, ClC-1, ha...
ClC proteins are chloride channels and transporters that are found in a wide variety of prokaryotic ...
We expressed the skeletal muscle chloride channel, ClC-1, in HEK293 cells and investigated it with t...
We expressed the skeletal muscle chloride channel, ClC-1, in HEK293 cells and investigated it with t...
Voltage-dependent gating was investigated in a recombinant human skeletal muscle Cl- channel, hCIC-1...
ClC-1 protein channels facilitate rapid passage of chloride ions across cellular membranes, thereby ...
The definitive version is available at www.blackwell-synergy.com1. ClC-1 is a Cl- channel in mammali...
Electrical membrane properties of skeletal muscle fibers have been thoroughly studied over the last ...
ClC-1 protein channels facilitate rapid passage of chloride ions across cellular membranes, thereby ...
Molecular mechanisms of ion conduction in ClC-type chloride channels: Lessons from disease-causing m...
The gating of ClC-0, the voltage-dependent Cl- channel from Torpedo electric organ, is strongly infl...
1. ClC proteins are a class of voltage-dependent Cl- channels with several members mutated in human ...
Chen MF, Jockusch H. Role of phosphorylation and physiological state in the regulation of the muscul...
Chloride fluxes are the main contributors to the resting conductance of mammalian skeletal muscle fi...