The designed arginine-rich surfactant-like peptide R3L12(arginine3-leucine12) is shown to form a remarkable diversity of self-assembled nanostructures in aqueous solution, depending on pH, including nanotubes, mesh-like tubular networks in three-dimensions and square planar arrays in two-dimensions. These structures are built from α-helical antiparallel coiled-coil peptide dimers arranged perpendicular to the nanotube axis, in a “cross-α” nanotube structure. The aggregation behavior is rationalized based on the effects of dimensionality, and the balance of hydrophobic and electrostatic interactions. The nanotube and nanomesh structures display arginine at high density on their surfaces, which may be valuable for future applications.Peer rev...
Self-assembled structures obtained from organic molecules have shown great potential for application...
Self‐assembled structures obtained from organic molecules have shown great potential for application...
A simple chemical method to assemble peptide nanotubes and simultaneously arrange them into macrosco...
The designed arginine-rich surfactant-like peptide R3L12(arginine3-leucine12) is shown to form a rem...
A designed surfactant-like peptide is shown, using a combination of cryogenic-transmission electron ...
The surfactant-like peptide (Ala)6(Arg) is found to self-assemble into 3 nm-thick sheets in aqueous ...
Computationally designed peptides form desired antiparallel, tetrameric coiled-coil bundles that hie...
An ability to design peptide-based nanotubes (PNTs) rationally with defined and mutable internal cha...
The introduction of α-helical structure with a specific helix–helix interaction into an amphipathic ...
An ability to design peptide-based nanotubes (PNTs) rationally with defined and mutable internal cha...
Carbon nanotubes have properties potentially useful in diverse electrical and mechanical nanoscale d...
Self-assembling cyclic peptide nanotubes (SPNs) have been extensively studied due to their potential...
The self-assembly of a modified fragment of the amyloid β peptide, based on sequence Aβ(16−20), KLVF...
The trifluoroacetate (tfa) salt of the peptide (ala)(6)lys self-assembles in water into very long, h...
Nanotubular structures can form from a variety of different materials such as inorganic19–22, carbon...
Self-assembled structures obtained from organic molecules have shown great potential for application...
Self‐assembled structures obtained from organic molecules have shown great potential for application...
A simple chemical method to assemble peptide nanotubes and simultaneously arrange them into macrosco...
The designed arginine-rich surfactant-like peptide R3L12(arginine3-leucine12) is shown to form a rem...
A designed surfactant-like peptide is shown, using a combination of cryogenic-transmission electron ...
The surfactant-like peptide (Ala)6(Arg) is found to self-assemble into 3 nm-thick sheets in aqueous ...
Computationally designed peptides form desired antiparallel, tetrameric coiled-coil bundles that hie...
An ability to design peptide-based nanotubes (PNTs) rationally with defined and mutable internal cha...
The introduction of α-helical structure with a specific helix–helix interaction into an amphipathic ...
An ability to design peptide-based nanotubes (PNTs) rationally with defined and mutable internal cha...
Carbon nanotubes have properties potentially useful in diverse electrical and mechanical nanoscale d...
Self-assembling cyclic peptide nanotubes (SPNs) have been extensively studied due to their potential...
The self-assembly of a modified fragment of the amyloid β peptide, based on sequence Aβ(16−20), KLVF...
The trifluoroacetate (tfa) salt of the peptide (ala)(6)lys self-assembles in water into very long, h...
Nanotubular structures can form from a variety of different materials such as inorganic19–22, carbon...
Self-assembled structures obtained from organic molecules have shown great potential for application...
Self‐assembled structures obtained from organic molecules have shown great potential for application...
A simple chemical method to assemble peptide nanotubes and simultaneously arrange them into macrosco...