External stimuli are powerful tools that naturally control protein assemblies and functions. For example, during viral entry and exit changes in pH are known to trigger large protein conformational changes. However, the molecular features stabilizing the higher pH structures remain unclear. Here we elucidate the conformational change of a self-assembling peptide that forms either small or large nanotubes dependent on the pH. The sub-angstrom high-pH peptide structure reveals a globular conformation stabilized through a strong histidine-serine H-bond and a tight histidine-aromatic packing. Lowering the pH induces histidine protonation, disrupts these interactions and triggers a large change to an extended ?-sheet-based conformation. Re-visit...
During the fusion of the influenza virus to the host cell, bending of the HA2 chain of hemagglutinin...
Several de novo designed ionic peptides that are able to undergo conformational change under the inf...
We report the design, simulation, synthesis, and reversible self-assembly of nanofibrils using polyh...
External stimuli are powerful tools that naturally control protein assemblies and functions. For exa...
External stimuli are powerful tools that naturally control protein assemblies and functions. For exa...
International audienceExternal stimuli are powerful tools that naturally control protein assemblies ...
International audienceExternal stimuli are powerful tools that naturally control protein assemblies ...
International audienceExternal stimuli are powerful tools that naturally control protein assemblies ...
International audienceExternal stimuli are powerful tools that naturally control protein assemblies ...
The ability of naturally occurring proteins to change conformation in response to environmental chan...
Inter-amino acid residues electrostatic interactions contribute to the conformational stability of p...
AbstractDuring the fusion of the influenza virus to the host cell, bending of the HA2 chain of hemag...
AbstractCationic amphipathic histidine rich peptides demonstrate differential nucleic acid binding c...
Controlling the hierarchical organization of self-assembling peptide amphiphiles into supramolecular...
pH-Responsive molecular assemblies with a variation in morphology ranging from a twisted ribbon, a h...
During the fusion of the influenza virus to the host cell, bending of the HA2 chain of hemagglutinin...
Several de novo designed ionic peptides that are able to undergo conformational change under the inf...
We report the design, simulation, synthesis, and reversible self-assembly of nanofibrils using polyh...
External stimuli are powerful tools that naturally control protein assemblies and functions. For exa...
External stimuli are powerful tools that naturally control protein assemblies and functions. For exa...
International audienceExternal stimuli are powerful tools that naturally control protein assemblies ...
International audienceExternal stimuli are powerful tools that naturally control protein assemblies ...
International audienceExternal stimuli are powerful tools that naturally control protein assemblies ...
International audienceExternal stimuli are powerful tools that naturally control protein assemblies ...
The ability of naturally occurring proteins to change conformation in response to environmental chan...
Inter-amino acid residues electrostatic interactions contribute to the conformational stability of p...
AbstractDuring the fusion of the influenza virus to the host cell, bending of the HA2 chain of hemag...
AbstractCationic amphipathic histidine rich peptides demonstrate differential nucleic acid binding c...
Controlling the hierarchical organization of self-assembling peptide amphiphiles into supramolecular...
pH-Responsive molecular assemblies with a variation in morphology ranging from a twisted ribbon, a h...
During the fusion of the influenza virus to the host cell, bending of the HA2 chain of hemagglutinin...
Several de novo designed ionic peptides that are able to undergo conformational change under the inf...
We report the design, simulation, synthesis, and reversible self-assembly of nanofibrils using polyh...