ClC channels are a family of protein molecules containing two ion-permeation pores. Although these transmembrane proteins are important for a variety of physiological functions, their molecular operations are only superficially understood. High-resolution X-ray crystallography techniques have recently revealed the structures of two bacterial ClC channels, but whether vertebrate ClC channel pores are similar to those of bacterial homologues is not clear. To study the pore architecture of the Torpedo ClC-0 channel, we employed the substituted-cysteine-accessibility method (SCAM) and used charged methane thiosulfonate (MTS) compounds to modify the introduced cysteine. Several conclusions were derived from this approach. First, the MTS modifica...
Abstract Substituted cysteine accessibility mutagenesis (SCAM) has been used widely to identify pore...
AbstractChloride intracellular channels (CLICs) are putative pore-forming glutathione-S-transferase ...
CLC proteins are a large structurally defined family of Cl- ion channels and H+/Cl- antiporters with...
ClC channels are a family of protein molecules containing two ion-permeation pores. Although these t...
ClC channels are a family of protein molecules containing two ion-permeation pores. Although these t...
The ClC channel family consists of chloride channels important for various physiological functions. ...
The ClC channel family consists of chloride channels important for various physiological functions. ...
The ClC channel family consists of chloride channels important for various physiological functions. ...
AbstractUsing the substituted-cysteine-accessibility method, we previously showed that a cysteine re...
AbstractUsing the substituted-cysteine-accessibility method, we previously showed that a cysteine re...
The ClC family of Cl(-) channels and transporters comprises membrane proteins ubiquitously present i...
The ClC family of Cl(-) channels and transporters comprises membrane proteins ubiquitously present i...
The ClC family of Cl(-) channels and transporters comprises membrane proteins ubiquitously present i...
The charge on the side chain of the internal pore residue lysine 519 (K519) of the Torpedo ClC-0 chl...
AbstractMembers of the ClC family of voltage-gated chloride channels are found from bacteria to mamm...
Abstract Substituted cysteine accessibility mutagenesis (SCAM) has been used widely to identify pore...
AbstractChloride intracellular channels (CLICs) are putative pore-forming glutathione-S-transferase ...
CLC proteins are a large structurally defined family of Cl- ion channels and H+/Cl- antiporters with...
ClC channels are a family of protein molecules containing two ion-permeation pores. Although these t...
ClC channels are a family of protein molecules containing two ion-permeation pores. Although these t...
The ClC channel family consists of chloride channels important for various physiological functions. ...
The ClC channel family consists of chloride channels important for various physiological functions. ...
The ClC channel family consists of chloride channels important for various physiological functions. ...
AbstractUsing the substituted-cysteine-accessibility method, we previously showed that a cysteine re...
AbstractUsing the substituted-cysteine-accessibility method, we previously showed that a cysteine re...
The ClC family of Cl(-) channels and transporters comprises membrane proteins ubiquitously present i...
The ClC family of Cl(-) channels and transporters comprises membrane proteins ubiquitously present i...
The ClC family of Cl(-) channels and transporters comprises membrane proteins ubiquitously present i...
The charge on the side chain of the internal pore residue lysine 519 (K519) of the Torpedo ClC-0 chl...
AbstractMembers of the ClC family of voltage-gated chloride channels are found from bacteria to mamm...
Abstract Substituted cysteine accessibility mutagenesis (SCAM) has been used widely to identify pore...
AbstractChloride intracellular channels (CLICs) are putative pore-forming glutathione-S-transferase ...
CLC proteins are a large structurally defined family of Cl- ion channels and H+/Cl- antiporters with...