The interaction of the cellular delivery vector penetratin with a model system consisting of negatively charged phospholipid vesicles has been studied. Above a certain peptide to lipid molar ratio, the cationic oligopeptide induces vesicle aggregation. Interestingly, the aggregation is followed by spontaneous disaggregation, which may be related to membrane translocation of the peptide. Circular dichroism (CD) measurements indicate a conformational transition, from alpha -helix to antiparallel beta -pleated sheet, which is simultaneous with the aggregation process. The potential influence of spectroscopic artifacts on CD data due to the drastically increased turbidity during aggregation is discussed
Using molecular dynamics simulations, we studied the mode of association of the cell-penetrating pep...
The cell-penetrating peptide penetratin and its analogues shuffle and penetramax have been used as c...
Although cell-penetrating peptides (CPPs), also denoted protein transduction domains (PTDs), have be...
The interaction of the cellular delivery vector penetratin with a model system consisting of negativ...
AbstractThe interaction of the cellular delivery vector penetratin with a model system consisting of...
The binding, conformation and orientation of a hydrophilic vector peptide penetratin in lipid membra...
AbstractThe most commonly studied of the cell-penetrating peptides (CPP) is “penetratin” (pAntp), wh...
<p>A) The association of penetratin with PG membranes results in the conformational change of the pe...
<p>A) LUVs aggregation was measured by turbidimetry at plateau as a function of peptide/lipid molar ...
International audienceProtein membrane transduction domains are able to translocate through cell mem...
ABSTRACT We studied the interaction of the cell-penetrating peptide penetratin with mixed dioleoylph...
AbstractWe studied the interaction of the cell-penetrating peptide penetratin with mixed dioleoylpho...
Cell-penetrating peptides (CPPs) interact with biological membranes, undergo cellular intake/uptake,...
AbstractJarrett and Lansbury's nucleation-dependent polymerization model describes the generic proce...
This work reports on the binding and conformation of a series of CPPs in the bilayer membranes of la...
Using molecular dynamics simulations, we studied the mode of association of the cell-penetrating pep...
The cell-penetrating peptide penetratin and its analogues shuffle and penetramax have been used as c...
Although cell-penetrating peptides (CPPs), also denoted protein transduction domains (PTDs), have be...
The interaction of the cellular delivery vector penetratin with a model system consisting of negativ...
AbstractThe interaction of the cellular delivery vector penetratin with a model system consisting of...
The binding, conformation and orientation of a hydrophilic vector peptide penetratin in lipid membra...
AbstractThe most commonly studied of the cell-penetrating peptides (CPP) is “penetratin” (pAntp), wh...
<p>A) The association of penetratin with PG membranes results in the conformational change of the pe...
<p>A) LUVs aggregation was measured by turbidimetry at plateau as a function of peptide/lipid molar ...
International audienceProtein membrane transduction domains are able to translocate through cell mem...
ABSTRACT We studied the interaction of the cell-penetrating peptide penetratin with mixed dioleoylph...
AbstractWe studied the interaction of the cell-penetrating peptide penetratin with mixed dioleoylpho...
Cell-penetrating peptides (CPPs) interact with biological membranes, undergo cellular intake/uptake,...
AbstractJarrett and Lansbury's nucleation-dependent polymerization model describes the generic proce...
This work reports on the binding and conformation of a series of CPPs in the bilayer membranes of la...
Using molecular dynamics simulations, we studied the mode of association of the cell-penetrating pep...
The cell-penetrating peptide penetratin and its analogues shuffle and penetramax have been used as c...
Although cell-penetrating peptides (CPPs), also denoted protein transduction domains (PTDs), have be...