The design of bioinspired nanostructures and materials of defined size and shape is challenging as it pushes our understanding of biomolecular assembly to its limits. In such endeavors, DNA is the current building block of choice because of its predictable and programmable self-assembly. The use of peptide- and protein-based systems, however, has potential advantages due to their more-varied chemistries, structures and functions, and the prospects for recombinant production through gene synthesis and expression. Here, we present the design and characterization of two complementary peptides programmed to form a parallel heterodimeric coiled coil, which we use as the building blocks for larger, supramolecular assemblies. To achieve the latter...
Nature uses proteins and nucleic acids to form a wide array of structural motifs. Chemists have appl...
Nature uses proteins and nucleic acids to form a wide array of functional architectures, and scienti...
Nature uses proteins and nucleic acids to form a wide array of structural motifs. Chemists have appl...
The design of bioinspired nanostructures and materials of defined size and shape is challenging as i...
The design of bioinspired nanostructures and materials of defined size and shape is challenging as i...
The rational design of peptides that fold to form discrete nanoscale objects, and/or self-assemble i...
We have established a designed system comprising two peptides that coassemble to form long, thickene...
The rational design of peptides that fold to form discrete nanoscale objects, and/or self-assemble i...
We describe the co-assembly of two different building units: collagen-mimetic peptides and DNA origa...
One possible route to develop new synthetic-biological systems is to assemble discrete nanoscale obj...
One possible route to develop new synthetic-biological systems is to assemble discrete nanoscale obj...
Here we report on using small unnatural helical beta peptides to form higher order geometries. These...
Interest in the design of peptide-based fibrous materials is growing because it opens possibilities ...
AbstractInterest in the design of peptide-based fibrous materials is growing because it opens possib...
Interest in the design of peptide-based fibrous materials is growing because it opens possibilities ...
Nature uses proteins and nucleic acids to form a wide array of structural motifs. Chemists have appl...
Nature uses proteins and nucleic acids to form a wide array of functional architectures, and scienti...
Nature uses proteins and nucleic acids to form a wide array of structural motifs. Chemists have appl...
The design of bioinspired nanostructures and materials of defined size and shape is challenging as i...
The design of bioinspired nanostructures and materials of defined size and shape is challenging as i...
The rational design of peptides that fold to form discrete nanoscale objects, and/or self-assemble i...
We have established a designed system comprising two peptides that coassemble to form long, thickene...
The rational design of peptides that fold to form discrete nanoscale objects, and/or self-assemble i...
We describe the co-assembly of two different building units: collagen-mimetic peptides and DNA origa...
One possible route to develop new synthetic-biological systems is to assemble discrete nanoscale obj...
One possible route to develop new synthetic-biological systems is to assemble discrete nanoscale obj...
Here we report on using small unnatural helical beta peptides to form higher order geometries. These...
Interest in the design of peptide-based fibrous materials is growing because it opens possibilities ...
AbstractInterest in the design of peptide-based fibrous materials is growing because it opens possib...
Interest in the design of peptide-based fibrous materials is growing because it opens possibilities ...
Nature uses proteins and nucleic acids to form a wide array of structural motifs. Chemists have appl...
Nature uses proteins and nucleic acids to form a wide array of functional architectures, and scienti...
Nature uses proteins and nucleic acids to form a wide array of structural motifs. Chemists have appl...