Interest in the design of peptide-based fibrous materials is growing because it opens possibilities to explore fundamental aspects of peptide self-assembly and to exploit the resulting structures—for example, as scaffolds for tissue engineering. Here we investigate the assembly pathway of self-assembling fibers, a rationally designed α-helical coiled-coil system comprising two peptides that assemble on mixing. The dimensions spanned by the peptides and final structures (nanometers to micrometers), and the timescale over which folding and assembly occur (seconds to hours), necessitate a multi-technique approach employing spectroscopy, analytical ultracentrifugation, electron and light microscopy, and protein design to produce a physical mode...
The design of bioinspired nanostructures and materials of defined size and shape is challenging as i...
Nature presents various protein fibers that bridge the nanometer to micrometer regimes. These struct...
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...
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...
Coiled-coil motifs provide simple systems for studying molecular self-assembly. We designed two 28-r...
We have established a designed system comprising two peptides that coassemble to form long, thickene...
Coiled-coil motifs provide simple systems for studying molecular self-assembly. We designed two 28-r...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2003.Includ...
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...
We describe a straightforward single-peptide design that self-assembles into extended and thickened ...
Mimicking the multistep self-assembly of the fibrillar protein collagen is an important design chall...
The helical coiled coil is a well-studied folding motif that can be used for the design of nanometer...
The design of bioinspired nanostructures and materials of defined size and shape is challenging as i...
Nature presents various protein fibers that bridge the nanometer to micrometer regimes. These struct...
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...
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...
Coiled-coil motifs provide simple systems for studying molecular self-assembly. We designed two 28-r...
We have established a designed system comprising two peptides that coassemble to form long, thickene...
Coiled-coil motifs provide simple systems for studying molecular self-assembly. We designed two 28-r...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2003.Includ...
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...
We describe a straightforward single-peptide design that self-assembles into extended and thickened ...
Mimicking the multistep self-assembly of the fibrillar protein collagen is an important design chall...
The helical coiled coil is a well-studied folding motif that can be used for the design of nanometer...
The design of bioinspired nanostructures and materials of defined size and shape is challenging as i...
Nature presents various protein fibers that bridge the nanometer to micrometer regimes. These struct...
Understanding the rules of self-assembly in a large-scale biological structure is crucial to the des...