A set of 49 protein nanopore-lipid bilayer systems was explored by means of coarse-grained molecular-dynamics simulations to study the interactions between nanopores and the lipid bilayers in which they are embedded. The seven nanopore species investigated represent the two main structural classes of membrane proteins (alpha-helical and beta-barrel), and the seven different bilayer systems range in thickness from approximately 28 to approximately 43 A. The study focuses on the local effects of hydrophobic mismatch between the nanopore and the lipid bilayer. The effects of nanopore insertion on lipid bilayer thickness, the dependence between hydrophobic thickness and the observed nanopore tilt angle, and the local distribution of lipid types...
The increased interest in studying membrane proteins has led to the development of new membrane mimi...
Peptide-membrane interactions play an important role in a number of biological processes, such as an...
We study the interactions between lipid bilayers and rigid transmembrane proteins by Monte Carlo sim...
AbstractA set of 49 protein nanopore-lipid bilayer systems was explored by means of coarse-grained m...
A macromolecular nanopore inserted into a membrane may perturb the dynamic organization of the surro...
This Review explores the dynamic behavior of water within nanopores and biological channels in lipid...
AbstractBiological membranes are complex and highly cooperative structures. To relate biomembrane st...
ABSTRACT Biological membranes are complex and highly cooperative structures. To relate biomembrane s...
Membrane proteins perform various important and wide-ranging functions. They exist within a lipid bi...
AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membra...
To overcome resistance to antibiotics in bacteria, such as Escherichia coli, further understanding o...
We explore the effects of the peripheral and transmembrane antimicrobial peptides on the lipid bilay...
AbstractWe investigate the interactions between lipid bilayers and amphiphilic peptides using a solv...
AbstractWith the rapid development of nanotechnology and biotechnology, nanoscale structures are inc...
Cell-penetrating and antimicrobial peptides show a remarkable ability to translocate across physiolo...
The increased interest in studying membrane proteins has led to the development of new membrane mimi...
Peptide-membrane interactions play an important role in a number of biological processes, such as an...
We study the interactions between lipid bilayers and rigid transmembrane proteins by Monte Carlo sim...
AbstractA set of 49 protein nanopore-lipid bilayer systems was explored by means of coarse-grained m...
A macromolecular nanopore inserted into a membrane may perturb the dynamic organization of the surro...
This Review explores the dynamic behavior of water within nanopores and biological channels in lipid...
AbstractBiological membranes are complex and highly cooperative structures. To relate biomembrane st...
ABSTRACT Biological membranes are complex and highly cooperative structures. To relate biomembrane s...
Membrane proteins perform various important and wide-ranging functions. They exist within a lipid bi...
AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membra...
To overcome resistance to antibiotics in bacteria, such as Escherichia coli, further understanding o...
We explore the effects of the peripheral and transmembrane antimicrobial peptides on the lipid bilay...
AbstractWe investigate the interactions between lipid bilayers and amphiphilic peptides using a solv...
AbstractWith the rapid development of nanotechnology and biotechnology, nanoscale structures are inc...
Cell-penetrating and antimicrobial peptides show a remarkable ability to translocate across physiolo...
The increased interest in studying membrane proteins has led to the development of new membrane mimi...
Peptide-membrane interactions play an important role in a number of biological processes, such as an...
We study the interactions between lipid bilayers and rigid transmembrane proteins by Monte Carlo sim...