AbstractIn addition to the annular or boundary lipids that surround the transmembrane surface of the potassium channel KcsA from Streptomyces lividans, x-ray crystallographic studies have detected one anionic lipid molecule bound at each protein-protein interface in the homotetrameric structure, at sites referred to as nonannular sites. The binding constant for phosphatidylglycerol at the nonannular sites has been determined using fluorescence quenching methods with a mutant of KcsA lacking the normal three lipid-exposed Trp residues. Binding is weak, with a binding constant of 0.42±0.06 in units of mol fraction, implying that the nonannular sites will only be ∼70% occupied in bilayers of 100% phosphatidylglycerol. However, the nonannular s...
There is increasing evidence to support the notion that membrane proteins, instead of being isolated...
AbstractIn this study, we investigated how the presence of anionic lipids influenced the stability a...
The crystal structure of the K+ channel KcsA explains many features of ion channel function. The sel...
In addition to the annular or boundary lipids that surround the transmembrane surface of the potassi...
AbstractIn addition to the annular or boundary lipids that surround the transmembrane surface of the...
In addition to the annular or boundary lipids that surround the transmembrane surface of the potassi...
AbstractLipid binding to the potassium channel KcsA from Streptomyces lividans has been studied usin...
AbstractFluorescence quenching methods have been used to study interactions of anionic phospholipids...
Lipid binding to the potassium channel KcsA from Streptomyces lividans has been studied using quench...
The potassium channel KcsA from Streptomyces lividans contains tryptophan residues in two bands arou...
AbstractMolecular dynamics (MD) simulations have been used to unmask details of specific interaction...
AbstractThe activity of the potassium channel KcsA is tightly regulated through the interactions of ...
Fluorescence quenching methods have been used to study interactions of anionic phospholipids with th...
The role of arginines R64 and R89 at non-annular lipid binding sites of KcsA, on the modulation of c...
The role of arginines R64 and R89 at non-annular lipid binding sites of KcsA, on the modulation of c...
There is increasing evidence to support the notion that membrane proteins, instead of being isolated...
AbstractIn this study, we investigated how the presence of anionic lipids influenced the stability a...
The crystal structure of the K+ channel KcsA explains many features of ion channel function. The sel...
In addition to the annular or boundary lipids that surround the transmembrane surface of the potassi...
AbstractIn addition to the annular or boundary lipids that surround the transmembrane surface of the...
In addition to the annular or boundary lipids that surround the transmembrane surface of the potassi...
AbstractLipid binding to the potassium channel KcsA from Streptomyces lividans has been studied usin...
AbstractFluorescence quenching methods have been used to study interactions of anionic phospholipids...
Lipid binding to the potassium channel KcsA from Streptomyces lividans has been studied using quench...
The potassium channel KcsA from Streptomyces lividans contains tryptophan residues in two bands arou...
AbstractMolecular dynamics (MD) simulations have been used to unmask details of specific interaction...
AbstractThe activity of the potassium channel KcsA is tightly regulated through the interactions of ...
Fluorescence quenching methods have been used to study interactions of anionic phospholipids with th...
The role of arginines R64 and R89 at non-annular lipid binding sites of KcsA, on the modulation of c...
The role of arginines R64 and R89 at non-annular lipid binding sites of KcsA, on the modulation of c...
There is increasing evidence to support the notion that membrane proteins, instead of being isolated...
AbstractIn this study, we investigated how the presence of anionic lipids influenced the stability a...
The crystal structure of the K+ channel KcsA explains many features of ion channel function. The sel...