AbstractTo understand the effects of lipid composition on membrane protein function in a mixture as complex as a biomembrane, one must know whether the lipid composition local to the protein differs from the mean lipid composition. In this study, we simulated the transmembrane domain of a β-barrel protein, OmpA, in mixtures of lipids of different tail lengths under conditions of negative hydrophobic mismatch, i.e., local bilayer thinning. We modeled the influence of OmpA on the local lipid composition both at a coarse-grained (CG) resolution using conventional molecular dynamics, and at an atomistic resolution within the semi-grand canonical ensemble using mutation moves to rapidly approach an equilibrium lateral distribution of lipids. Mod...
AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membra...
Membrane proteins interact with their lipid bilayer environment via both a transmembrane helix and j...
Theoretical studies predict hydrophobic matching between transmembrane domains of proteins and bilay...
AbstractTo understand the effects of lipid composition on membrane protein function in a mixture as ...
AbstractWe studied compositionally heterogeneous multi-component model membranes comprised of satura...
We studied compositionally heterogeneous multi-component model membranes comprised of saturated lipi...
AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membra...
We studied compositionally heterogeneous multi-component model membranes comprised of saturated lipi...
Aggregation of transmembrane proteins is important for many biological processes, such as protein so...
ABSTRACT The partitioning of lipids among different microenvironments in a bilayer is of considerabl...
We studied compositionally heterogeneous multi-component model membranes comprised of saturated lipi...
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...
Aggregation of transmembrane proteins is important for many biological processes, such as protein so...
AbstractAggregation of transmembrane proteins is important for many biological processes, such as pr...
AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membra...
Membrane proteins interact with their lipid bilayer environment via both a transmembrane helix and j...
Theoretical studies predict hydrophobic matching between transmembrane domains of proteins and bilay...
AbstractTo understand the effects of lipid composition on membrane protein function in a mixture as ...
AbstractWe studied compositionally heterogeneous multi-component model membranes comprised of satura...
We studied compositionally heterogeneous multi-component model membranes comprised of saturated lipi...
AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membra...
We studied compositionally heterogeneous multi-component model membranes comprised of saturated lipi...
Aggregation of transmembrane proteins is important for many biological processes, such as protein so...
ABSTRACT The partitioning of lipids among different microenvironments in a bilayer is of considerabl...
We studied compositionally heterogeneous multi-component model membranes comprised of saturated lipi...
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...
Aggregation of transmembrane proteins is important for many biological processes, such as protein so...
AbstractAggregation of transmembrane proteins is important for many biological processes, such as pr...
AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membra...
Membrane proteins interact with their lipid bilayer environment via both a transmembrane helix and j...
Theoretical studies predict hydrophobic matching between transmembrane domains of proteins and bilay...