AbstractFree energy perturbation calculations are carried out to estimate the effective pKa of an arginine (Arg) sidechain as a function of its location in the dipalmitoylphosphatidylcholine bilayer. Similar to previous all-atom simulations of the voltage sensor domain of a potassium channel in the membrane with charged Arg residues, the membrane and water structures deform to stabilize the charge of the Arg analog. As a result, the computed pKa is >7 throughout the membrane although the value is very close to 7 near the center of the bilayer. With additional stabilizations from negatively charged amino acids or lipid molecules, it is reasonable to expect that Arg in membrane proteins (once in the membrane) can adopt the protonated state de...
My research focused on voltage-dependent K+ (Kv) channels. Kv channels serve many di erent functions...
Ionizable amino acid side chains play important roles in membrane protein structure and function, in...
AbstractWe have calculated the distribution in a lipid bilayer of small molecules mimicking 17 natur...
AbstractFree energy perturbation calculations are carried out to estimate the effective pKa of an ar...
AbstractCharged amino acids such as Arginine play important roles in many membrane-mediated biologic...
Abstract“Charged” amino acids play countless important roles in protein structure and function. Yet ...
The issue of ionizable protein side chains interacting with lipid membranes has been the focus of mu...
"Charged" amino acids play countless important roles in protein structure and function. Ye...
AbstractCharged amino acids are known to be important in controlling the actions of integral and per...
Biological membranes consist of bilayer arrangements of lipids forming a hydrophobic core that prese...
Biological membranes exhibit a bilayer arrangement of lipid molecules forming a hydrophobic core tha...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
AbstractIt was recently demonstrated that significant local deformations of biological membranes tak...
AbstractComputer simulations suggest that the translocation of arginine through the hydrocarbon core...
My research focused on voltage-dependent K+ (Kv) channels. Kv channels serve many di erent functions...
Ionizable amino acid side chains play important roles in membrane protein structure and function, in...
AbstractWe have calculated the distribution in a lipid bilayer of small molecules mimicking 17 natur...
AbstractFree energy perturbation calculations are carried out to estimate the effective pKa of an ar...
AbstractCharged amino acids such as Arginine play important roles in many membrane-mediated biologic...
Abstract“Charged” amino acids play countless important roles in protein structure and function. Yet ...
The issue of ionizable protein side chains interacting with lipid membranes has been the focus of mu...
"Charged" amino acids play countless important roles in protein structure and function. Ye...
AbstractCharged amino acids are known to be important in controlling the actions of integral and per...
Biological membranes consist of bilayer arrangements of lipids forming a hydrophobic core that prese...
Biological membranes exhibit a bilayer arrangement of lipid molecules forming a hydrophobic core tha...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
AbstractIt was recently demonstrated that significant local deformations of biological membranes tak...
AbstractComputer simulations suggest that the translocation of arginine through the hydrocarbon core...
My research focused on voltage-dependent K+ (Kv) channels. Kv channels serve many di erent functions...
Ionizable amino acid side chains play important roles in membrane protein structure and function, in...
AbstractWe have calculated the distribution in a lipid bilayer of small molecules mimicking 17 natur...