Nature presents various protein fibers that bridge the nanometer to micrometer regimes. These structures provide inspiration for the de novo design of biomimetic assemblies, both to address difficulties in studying and understanding natural systems, and to provide routes to new biomaterials with potential applications in nanotechnology and medicine. We have designed a self-assembling fiber system, the SAFs, in which two small α-helical peptides are programmed to form a dimeric coiled coil and assemble in a controlled manner. The resulting fibers are tens of nm wide and tens of μm long, and, therefore, comprise millions of peptides to give gigadalton supramolecular structures. Here, we describe the structure of the SAFs determined to approxi...
Self-assembling peptides present attractive platforms for engineering materials with controlled nano...
Understanding the rules of self-assembly in a large-scale biological structure is crucial to the des...
AbstractInterest in the design of peptide-based fibrous materials is growing because it opens possib...
Nature presents various protein fibers that bridge the nanometer to micrometer regimes. These struct...
Nature presents various protein fibers that bridge the nanometer to micrometer regimes. These struct...
We have established a designed system comprising two peptides that coassemble to form long, thickene...
This Thesis covers two separate projects linked by transmission electron microscopy (TEM) of biologi...
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 ...
Interest in the design of peptide-based fibrous materials is growing because it opens possibilities ...
Coiled-coil motifs provide simple systems for studying molecular self-assembly. We designed two 28-r...
Coiled-coil motifs provide simple systems for studying molecular self-assembly. We designed two 28-r...
Thesis (Ph.D.)--University of Washington, 2019There has been some success in designing stable peptid...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
Self-assembling peptides present attractive platforms for engineering materials with controlled nano...
Understanding the rules of self-assembly in a large-scale biological structure is crucial to the des...
AbstractInterest in the design of peptide-based fibrous materials is growing because it opens possib...
Nature presents various protein fibers that bridge the nanometer to micrometer regimes. These struct...
Nature presents various protein fibers that bridge the nanometer to micrometer regimes. These struct...
We have established a designed system comprising two peptides that coassemble to form long, thickene...
This Thesis covers two separate projects linked by transmission electron microscopy (TEM) of biologi...
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 ...
Interest in the design of peptide-based fibrous materials is growing because it opens possibilities ...
Coiled-coil motifs provide simple systems for studying molecular self-assembly. We designed two 28-r...
Coiled-coil motifs provide simple systems for studying molecular self-assembly. We designed two 28-r...
Thesis (Ph.D.)--University of Washington, 2019There has been some success in designing stable peptid...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
Self-assembling peptides present attractive platforms for engineering materials with controlled nano...
Understanding the rules of self-assembly in a large-scale biological structure is crucial to the des...
AbstractInterest in the design of peptide-based fibrous materials is growing because it opens possib...