Despite the vast body of literature that has accumulated on tilted peptides in the past decade, direct information on the forces that drive their interaction with lipid membranes is lacking. Here, we attempted to use atomic force microscopy (AFM) to explore the interaction forces between the Simian immunodeficiency virus peptide and phase-separated supported bilayers composed of various lipids, i.e. dipalmitoylphosphatidylcholine, dioleoylphosphatidylcholine, dioleoylphosphatidic acid and dipalmitoylphosphatidylethanolamine. Histidine-tagged peptides were attached onto AFM tips terminated with nitrilotriacetate and tri(ethylene glycol) groups, an approach expected to ensure opti...
The binding of peptides and proteins to lipid membrane surfaces is of fundamental importance for man...
AbstractAn atomic force microscope (AFM) was used to visualize CWALP1923 peptides (+H3N-ACAGAWWLALAL...
Understanding the molecular bases of biomembrane fusion events is a challenging issue in current bio...
Atomic force microscopy (AFM) has become a powerful addition to the range of instruments available t...
Atomic force microscopy (AFM) has become a powerful addition to the range of instruments available t...
Biological membranes are highly complex molecular systems, with a backbone that consist of a variety...
Biological membranes are highly complex molecular systems, with a backbone that consist of a variety...
Interaction forces and topography of mixed phospholipid-glycolipid bilayers were investigated by ato...
AbstractTo measure the interaction between two lipid bilayers with an atomic force microscope one so...
Antimicrobial peptides (AMPs) and lipopeptides (LPs) represent very promising molecules to fight res...
Antimicrobial peptides (AMPs) and lipopeptides (LPs) represent very promising molecules to fight res...
Tilted peptides are known to insert in lipid bilayers with an oblique orientation, thereby destabili...
Elucidation of the molecular mechanism leading to biomembrane fusion is a challenging issue i...
Elucidation of the molecular mechanism leading to biomembrane fusion is a challenging issue in curre...
Tilted peptides are known to insert in lipid bilayers with an oblique orientation, thereby de...
The binding of peptides and proteins to lipid membrane surfaces is of fundamental importance for man...
AbstractAn atomic force microscope (AFM) was used to visualize CWALP1923 peptides (+H3N-ACAGAWWLALAL...
Understanding the molecular bases of biomembrane fusion events is a challenging issue in current bio...
Atomic force microscopy (AFM) has become a powerful addition to the range of instruments available t...
Atomic force microscopy (AFM) has become a powerful addition to the range of instruments available t...
Biological membranes are highly complex molecular systems, with a backbone that consist of a variety...
Biological membranes are highly complex molecular systems, with a backbone that consist of a variety...
Interaction forces and topography of mixed phospholipid-glycolipid bilayers were investigated by ato...
AbstractTo measure the interaction between two lipid bilayers with an atomic force microscope one so...
Antimicrobial peptides (AMPs) and lipopeptides (LPs) represent very promising molecules to fight res...
Antimicrobial peptides (AMPs) and lipopeptides (LPs) represent very promising molecules to fight res...
Tilted peptides are known to insert in lipid bilayers with an oblique orientation, thereby destabili...
Elucidation of the molecular mechanism leading to biomembrane fusion is a challenging issue i...
Elucidation of the molecular mechanism leading to biomembrane fusion is a challenging issue in curre...
Tilted peptides are known to insert in lipid bilayers with an oblique orientation, thereby de...
The binding of peptides and proteins to lipid membrane surfaces is of fundamental importance for man...
AbstractAn atomic force microscope (AFM) was used to visualize CWALP1923 peptides (+H3N-ACAGAWWLALAL...
Understanding the molecular bases of biomembrane fusion events is a challenging issue in current bio...