Biological membranes consist of bilayer arrangements of lipids forming a hydrophobic core that presents a physical barrier to all polar and charged molecules. This long-held notion has recently been challenged by biological translocon-based experiments that report small apparent free energies to insert charged side chains near the center of a transmembrane (TM) helix. We have carried out fully atomistic simulations to provide the free-energy profile for moving a TM helix containing a protonated Arg side chain across a lipid bilayer. Our results reveal the fundamental thermodynamics governing the stability of charged side chains in membranes and the microscopic interactions involved. Despite local membrane deformations, where large amounts o...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
AbstractFree energy perturbation calculations are carried out to estimate the effective pKa of an ar...
AbstractUnderstanding the forces that stabilize membrane proteins in their native states is one of t...
Biological membranes exhibit a bilayer arrangement of lipid molecules forming a hydrophobic core tha...
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...
Abstract“Charged” amino acids play countless important roles in protein structure and function. Yet ...
Hydrophobic amino acids are abundant in transmembrane (TM) helices of membrane proteins. Charged res...
Several laboratories have carried out molecular dynamics (MD) simulations of arginine interactions w...
AbstractCharged amino acids are known to be important in controlling the actions of integral and per...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
Experimental and computational studies have indicated that hydrophobicity plays a key role in drivin...
AbstractThe energetic cost of burying charged groups in the hydrophobic core of lipid bilayers has b...
Most membrane proteins contain a transmembrane (TM) domain made up of a bundle of lipid-bilayer-span...
Knowledge about the insertion and stabilization of membrane proteins is a key step towards understan...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
AbstractFree energy perturbation calculations are carried out to estimate the effective pKa of an ar...
AbstractUnderstanding the forces that stabilize membrane proteins in their native states is one of t...
Biological membranes exhibit a bilayer arrangement of lipid molecules forming a hydrophobic core tha...
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...
Abstract“Charged” amino acids play countless important roles in protein structure and function. Yet ...
Hydrophobic amino acids are abundant in transmembrane (TM) helices of membrane proteins. Charged res...
Several laboratories have carried out molecular dynamics (MD) simulations of arginine interactions w...
AbstractCharged amino acids are known to be important in controlling the actions of integral and per...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
Experimental and computational studies have indicated that hydrophobicity plays a key role in drivin...
AbstractThe energetic cost of burying charged groups in the hydrophobic core of lipid bilayers has b...
Most membrane proteins contain a transmembrane (TM) domain made up of a bundle of lipid-bilayer-span...
Knowledge about the insertion and stabilization of membrane proteins is a key step towards understan...
The basic amino acids lysine (Lys) and arginine (Arg) play important roles in membrane protein activ...
AbstractFree energy perturbation calculations are carried out to estimate the effective pKa of an ar...
AbstractUnderstanding the forces that stabilize membrane proteins in their native states is one of t...