AbstractThe aquaporin-1 water channel was modeled in a palmitoyl-oleoyl-phosphatidyl-choline lipid bilayer, by means of molecular dynamics simulations. Interaction of the protein with the membrane and inter-monomer interactions were analyzed. Structural features of the channel important for its biological function, including the Asn-Pro-Ala (NPA) motifs, and the diffusion of water molecules into the channels, were investigated. Simulations revealed the formation of single file water inside the channels for certain relative positions of the NPA motifs
AbstractDespite sharing overall sequence and structural similarities, water channel aquaporin 0 (AQP...
In this study, we analyzed the effects of lipid composition on the permeability of aquaporin , using...
Present knowledge obtained by molecular dynamics (MD) simulation studies regarding the dynamics of w...
AbstractThe aquaporin-1 water channel was modeled in a palmitoyl-oleoyl-phosphatidyl-choline lipid b...
AbstractMolecular dynamics simulations of aquaporin-1 embedded in a solvated lipid bilayer were carr...
AbstractMolecular dynamics simulations were performed for four members of the aquaporin family (AQP1...
SummaryInteractions of membrane proteins with lipid molecules are central to their stability and fun...
In this study, we analyzed the effects of lipid composition on the permeability of aquaporin , using...
AbstractA refined structure of the human water channel aquaporin-1 is presented. The model rests on ...
Aquaporins are protein channels located across the cell membrane with the role of conducting water o...
Aquaporins are protein channels located across the cell membrane with the role of conducting water o...
Aquaporins are protein channels located across the cell membrane with the role of conducting water o...
AbstractWater permeation and electrostatic interactions between water and channel are investigated i...
In this study, we analyzed the effects of lipid composition on the permeability of aquaporin , using...
<div><p>Aquaporins are protein channels located across the cell membrane with the role of conducting...
AbstractDespite sharing overall sequence and structural similarities, water channel aquaporin 0 (AQP...
In this study, we analyzed the effects of lipid composition on the permeability of aquaporin , using...
Present knowledge obtained by molecular dynamics (MD) simulation studies regarding the dynamics of w...
AbstractThe aquaporin-1 water channel was modeled in a palmitoyl-oleoyl-phosphatidyl-choline lipid b...
AbstractMolecular dynamics simulations of aquaporin-1 embedded in a solvated lipid bilayer were carr...
AbstractMolecular dynamics simulations were performed for four members of the aquaporin family (AQP1...
SummaryInteractions of membrane proteins with lipid molecules are central to their stability and fun...
In this study, we analyzed the effects of lipid composition on the permeability of aquaporin , using...
AbstractA refined structure of the human water channel aquaporin-1 is presented. The model rests on ...
Aquaporins are protein channels located across the cell membrane with the role of conducting water o...
Aquaporins are protein channels located across the cell membrane with the role of conducting water o...
Aquaporins are protein channels located across the cell membrane with the role of conducting water o...
AbstractWater permeation and electrostatic interactions between water and channel are investigated i...
In this study, we analyzed the effects of lipid composition on the permeability of aquaporin , using...
<div><p>Aquaporins are protein channels located across the cell membrane with the role of conducting...
AbstractDespite sharing overall sequence and structural similarities, water channel aquaporin 0 (AQP...
In this study, we analyzed the effects of lipid composition on the permeability of aquaporin , using...
Present knowledge obtained by molecular dynamics (MD) simulation studies regarding the dynamics of w...