AbstractBiomolecular surfaces and interfaces are commonly found with apolar character. The hydrophobic effect thus plays a crucial role in processes involving association with biomolecular surfaces in the cellular environment. By computer simulation, we compared the hydrogen bonding structures and energetics of the proximal hydration shells of the monomer and dimer from a recent study of an extrinsic membrane peptide, melittin. The two peptides were studied in their amphipathic α-helical forms, which possess extended hydrophobic surfaces characterized by different topography. The topography of the peptide-water interface was found to be critical in determining the enthalpic nature of hydrophobic hydration. This topographical dependence has ...
Hydrophobic mismatch is a well-recognized principle in the interaction of transmembrane proteins wit...
We explore how two nonionic polar groups (primary amine and primary amide) influence hydrophobic int...
AbstractThe interaction of membranes with peptides and proteins is largely determined by their amphi...
AbstractBiomolecular surfaces and interfaces are commonly found with apolar character. The hydrophob...
The membrane active agent melittin has been investigated with regard to the formation of a Langmuir ...
Hydrophobicity – fear of water – drives the folding of soluble proteins into their final folded stat...
Hydrophobicity – fear of water – drives the folding of soluble proteins into their final folded stat...
AbstractTo shed light on the driving force for the hydrophobic effect that partitions amphiphilic li...
High amphiphilicity is a hallmark of interfacial helices in membrane proteins and membrane-active pe...
We performed classical molecular dynamics simulations using both fixed-charge and polarizable water ...
At physiological conditions, most proteins or peptides can fold into relatively stable structures th...
Roles of Solvent Water in the Positions of Biological Equilibria The noncovalent binding interaction...
Roles of Solvent Water in the Positions of Biological Equilibria The noncovalent binding interaction...
AbstractThe structural and energetic characteristics of the interaction between interfacially adsorb...
ABSTRACT The impact of an extensive, uniform and hydrophobic protein surface on the behavior of the ...
Hydrophobic mismatch is a well-recognized principle in the interaction of transmembrane proteins wit...
We explore how two nonionic polar groups (primary amine and primary amide) influence hydrophobic int...
AbstractThe interaction of membranes with peptides and proteins is largely determined by their amphi...
AbstractBiomolecular surfaces and interfaces are commonly found with apolar character. The hydrophob...
The membrane active agent melittin has been investigated with regard to the formation of a Langmuir ...
Hydrophobicity – fear of water – drives the folding of soluble proteins into their final folded stat...
Hydrophobicity – fear of water – drives the folding of soluble proteins into their final folded stat...
AbstractTo shed light on the driving force for the hydrophobic effect that partitions amphiphilic li...
High amphiphilicity is a hallmark of interfacial helices in membrane proteins and membrane-active pe...
We performed classical molecular dynamics simulations using both fixed-charge and polarizable water ...
At physiological conditions, most proteins or peptides can fold into relatively stable structures th...
Roles of Solvent Water in the Positions of Biological Equilibria The noncovalent binding interaction...
Roles of Solvent Water in the Positions of Biological Equilibria The noncovalent binding interaction...
AbstractThe structural and energetic characteristics of the interaction between interfacially adsorb...
ABSTRACT The impact of an extensive, uniform and hydrophobic protein surface on the behavior of the ...
Hydrophobic mismatch is a well-recognized principle in the interaction of transmembrane proteins wit...
We explore how two nonionic polar groups (primary amine and primary amide) influence hydrophobic int...
AbstractThe interaction of membranes with peptides and proteins is largely determined by their amphi...