Hydrophobic amino acids are abundant in transmembrane (TM) helices of membrane proteins. Charged residues are sparse, apparently due to the unfavorable energetic cost of partitioning charges into nonpolar phases. Nevertheless, conserved arginine residues within TM helices regulate vital functions, such as ion channel voltage gating and integrin receptor inactivation. The energetic cost of arginine in various positions along hydrophobic helices has been controversial. Potential of mean force (PMF) calculations from atomistic molecular dynamics simulations predict very large energetic penalties, while in vitro experiments with Sec61 translocons indicate much smaller penalties, even for arginine in the center of hydrophobic TM helices. Re...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
AbstractCharged amino acids are known to be important in controlling the actions of integral and per...
The favorable transfer free energy for a transmembrane (TM) α-helix between the aqueous phase and li...
Several laboratories have carried out molecular dynamics (MD) simulations of arginine interactions w...
Biological membranes consist of bilayer arrangements of lipids forming a hydrophobic core that prese...
"Charged" amino acids play countless important roles in protein structure and function. Ye...
Abstract“Charged” amino acids play countless important roles in protein structure and function. Yet ...
Experimental and computational studies have indicated that hydrophobicity plays a key role in drivin...
Biological membranes exhibit a bilayer arrangement of lipid molecules forming a hydrophobic core tha...
AbstractComputer simulations suggest that the translocation of arginine through the hydrocarbon core...
(A) Amino acid insertion energies for 17 residues calculated using our membrane-bending model (green...
Knowledge about the insertion and stabilization of membrane proteins is a key step towards understan...
The issue of ionizable protein side chains interacting with lipid membranes has been the focus of mu...
AbstractUnderstanding the solvation of amino acids in biomembranes is an important step to better ex...
Most membrane proteins contain a transmembrane (TM) domain made up of a bundle of lipid-bilayer-span...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
AbstractCharged amino acids are known to be important in controlling the actions of integral and per...
The favorable transfer free energy for a transmembrane (TM) α-helix between the aqueous phase and li...
Several laboratories have carried out molecular dynamics (MD) simulations of arginine interactions w...
Biological membranes consist of bilayer arrangements of lipids forming a hydrophobic core that prese...
"Charged" amino acids play countless important roles in protein structure and function. Ye...
Abstract“Charged” amino acids play countless important roles in protein structure and function. Yet ...
Experimental and computational studies have indicated that hydrophobicity plays a key role in drivin...
Biological membranes exhibit a bilayer arrangement of lipid molecules forming a hydrophobic core tha...
AbstractComputer simulations suggest that the translocation of arginine through the hydrocarbon core...
(A) Amino acid insertion energies for 17 residues calculated using our membrane-bending model (green...
Knowledge about the insertion and stabilization of membrane proteins is a key step towards understan...
The issue of ionizable protein side chains interacting with lipid membranes has been the focus of mu...
AbstractUnderstanding the solvation of amino acids in biomembranes is an important step to better ex...
Most membrane proteins contain a transmembrane (TM) domain made up of a bundle of lipid-bilayer-span...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
AbstractCharged amino acids are known to be important in controlling the actions of integral and per...
The favorable transfer free energy for a transmembrane (TM) α-helix between the aqueous phase and li...