Several laboratories have carried out molecular dynamics (MD) simulations of arginine interactions with lipid bilayers and found that the energetic cost of placing arginine in lipid bilayers is an order of magnitude greater than observed in molecular biology experiments in which Arg-containing transmembrane helices are inserted across the endoplasmic reticulum membrane by the Sec61 translocon. We attempt here to reconcile the results of the two approaches. We first present MD simulations of guanidinium groups alone in lipid bilayers, and then, to mimic the molecular biology experiments, we present simulations of hydrophobic helices containing single Arg residues at different positions along the helix. We discuss the simulation results in th...
Structural mechanisms and underlying thermodynamic determinants of efficient internalization of char...
Abstract“Charged” amino acids play countless important roles in protein structure and function. Yet ...
In this work, the differential interaction of zwitterionic arginines with fully hydrated dimyristoyl...
Hydrophobic amino acids are abundant in transmembrane (TM) helices of membrane proteins. Charged res...
Experimental and computational studies have indicated that hydrophobicity plays a key role in drivin...
AbstractComputer simulations suggest that the translocation of arginine through the hydrocarbon core...
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...
Mechanisms and underlying thermodynamic determinants of translocation of charged cationic peptides s...
The issue of ionizable protein side chains interacting with lipid membranes has been the focus of mu...
The favorable transfer free energy for a transmembrane (TM) α-helix between the aqueous phase and li...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
ABSTRACT: Structural mechanisms and underlying thermodynamic determinants of efficient internalizati...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
The favourable transfer free energy for a transmembrane (TM) α-helix between the aqueous phase and l...
Structural mechanisms and underlying thermodynamic determinants of efficient internalization of char...
Abstract“Charged” amino acids play countless important roles in protein structure and function. Yet ...
In this work, the differential interaction of zwitterionic arginines with fully hydrated dimyristoyl...
Hydrophobic amino acids are abundant in transmembrane (TM) helices of membrane proteins. Charged res...
Experimental and computational studies have indicated that hydrophobicity plays a key role in drivin...
AbstractComputer simulations suggest that the translocation of arginine through the hydrocarbon core...
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...
Mechanisms and underlying thermodynamic determinants of translocation of charged cationic peptides s...
The issue of ionizable protein side chains interacting with lipid membranes has been the focus of mu...
The favorable transfer free energy for a transmembrane (TM) α-helix between the aqueous phase and li...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
ABSTRACT: Structural mechanisms and underlying thermodynamic determinants of efficient internalizati...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
The favourable transfer free energy for a transmembrane (TM) α-helix between the aqueous phase and l...
Structural mechanisms and underlying thermodynamic determinants of efficient internalization of char...
Abstract“Charged” amino acids play countless important roles in protein structure and function. Yet ...
In this work, the differential interaction of zwitterionic arginines with fully hydrated dimyristoyl...