AbstractUnbiased molecular simulation is a powerful tool to study the atomic details driving functional structural changes or folding pathways of highly fluid systems, which present great challenges experimentally. Here we apply unbiased long-timescale molecular dynamics simulation to study the ab initio folding and partitioning of melittin, a template amphiphilic membrane active peptide. The simulations reveal that the peptide binds strongly to the lipid bilayer in an unstructured configuration. Interfacial folding results in a localized bilayer deformation. Akin to purely hydrophobic transmembrane segments the surface bound native helical conformer is highly resistant against thermal denaturation. Circular dichroism spectroscopy experimen...
The folding and partitioning of WALP peptides into lipid bilayers is characterized using atomic deta...
An important step in a phospholipid membrane pore formation by melittin antimicrobial peptide is a r...
An important step in a phospholipid membrane pore formation by melittin antimicrobial peptide is a r...
AbstractUnbiased molecular simulation is a powerful tool to study the atomic details driving functio...
AbstractThe distribution of peptide conformations in the membrane interface is central to partitioni...
AbstractMolecular dynamics trajectories of melittin in an explicit dimyristoyl phosphatidylcholine (...
AbstractWe performed, using an all-atom force field, molecular dynamics computer simulations to stud...
AbstractA molecular dynamics simulation of melittin in a hydrated dipalmitoylphosphatidylcholine (DP...
To study the interaction between melittin peptides and lipid bilayer, we performed coarse-grained si...
AbstractA molecular dynamics simulation of melittin in a hydrated dipalmitoylphosphatidylcholine (DP...
AbstractWe have examined the kinetics of the adsorption of melittin, a secondary amphipathic peptide...
AbstractWe have investigated the configuration and the stability of a single membrane pore bound by ...
The prototypical antimicrobial peptide, melittin, is well-known for its ability to induce pores in z...
The prototypical antimicrobial peptide, melittin, is well-known for its ability to induce pores in z...
AbstractA three-dimensional structure of a model decapeptide is obtained by performing molecular dyn...
The folding and partitioning of WALP peptides into lipid bilayers is characterized using atomic deta...
An important step in a phospholipid membrane pore formation by melittin antimicrobial peptide is a r...
An important step in a phospholipid membrane pore formation by melittin antimicrobial peptide is a r...
AbstractUnbiased molecular simulation is a powerful tool to study the atomic details driving functio...
AbstractThe distribution of peptide conformations in the membrane interface is central to partitioni...
AbstractMolecular dynamics trajectories of melittin in an explicit dimyristoyl phosphatidylcholine (...
AbstractWe performed, using an all-atom force field, molecular dynamics computer simulations to stud...
AbstractA molecular dynamics simulation of melittin in a hydrated dipalmitoylphosphatidylcholine (DP...
To study the interaction between melittin peptides and lipid bilayer, we performed coarse-grained si...
AbstractA molecular dynamics simulation of melittin in a hydrated dipalmitoylphosphatidylcholine (DP...
AbstractWe have examined the kinetics of the adsorption of melittin, a secondary amphipathic peptide...
AbstractWe have investigated the configuration and the stability of a single membrane pore bound by ...
The prototypical antimicrobial peptide, melittin, is well-known for its ability to induce pores in z...
The prototypical antimicrobial peptide, melittin, is well-known for its ability to induce pores in z...
AbstractA three-dimensional structure of a model decapeptide is obtained by performing molecular dyn...
The folding and partitioning of WALP peptides into lipid bilayers is characterized using atomic deta...
An important step in a phospholipid membrane pore formation by melittin antimicrobial peptide is a r...
An important step in a phospholipid membrane pore formation by melittin antimicrobial peptide is a r...