Obtaining three-dimensional (3D) protein and peptide crystals on demand requires a precisely orchestrated hierarchical assembly of biopolymer building blocks. In this work, we disclose a metal-ion-mediated strategy to assemble trimeric coiled-coil peptides in a head-to-tail fashion into linear strands with interstrand interactions. This design led to hexagonal 3D peptide crystal formation within 30 min in the presence of divalent metal ions. The crystal morphology could be controlled by varying the metal ion/peptide ratio, resulting in hexagonal discs to rods. Diffraction studies elucidated the head-to-tail arrangement of the coiled-coil linear strands and their hexagonal, antiparallel packing within the crystal. Unsatisfied ligands at the ...
Here we report on using small unnatural helical beta peptides to form higher order geometries. These...
Protein complexes perform a diversity of functions in natural biological systems. While computationa...
AbstractBackground: The α-helical coiled coil structures formed by 25–50 residues long peptides are ...
Peptide biomaterials have drawn great attention in recent decades owing to their tunability and bioc...
One possible route to develop new synthetic-biological systems is to assemble discrete nanoscale obj...
Designing peptides that fold and assemble in response to metal ions tests our understanding of how p...
The rational design of peptides that fold to form discrete nanoscale objects, and/or self-assemble i...
The work presented in this dissertation demonstrates how de-novo designed peptides having the double...
The successful integration of 2D nanomaterials into functional devices hinges on developing fabricat...
Here we report the hierarchical self-assembly of a cross-linkable coiled-coil peptide containing an ...
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...
Protein-protein interactions are ubiquitous throughout nature at many length and time scales—from tr...
Coiled-coil (CC) dimers are versatile, customizable building modules for the design of diverse prote...
Here we report on using small unnatural helical beta peptides to form higher order geometries. These...
Protein complexes perform a diversity of functions in natural biological systems. While computationa...
AbstractBackground: The α-helical coiled coil structures formed by 25–50 residues long peptides are ...
Peptide biomaterials have drawn great attention in recent decades owing to their tunability and bioc...
One possible route to develop new synthetic-biological systems is to assemble discrete nanoscale obj...
Designing peptides that fold and assemble in response to metal ions tests our understanding of how p...
The rational design of peptides that fold to form discrete nanoscale objects, and/or self-assemble i...
The work presented in this dissertation demonstrates how de-novo designed peptides having the double...
The successful integration of 2D nanomaterials into functional devices hinges on developing fabricat...
Here we report the hierarchical self-assembly of a cross-linkable coiled-coil peptide containing an ...
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...
Protein-protein interactions are ubiquitous throughout nature at many length and time scales—from tr...
Coiled-coil (CC) dimers are versatile, customizable building modules for the design of diverse prote...
Here we report on using small unnatural helical beta peptides to form higher order geometries. These...
Protein complexes perform a diversity of functions in natural biological systems. While computationa...
AbstractBackground: The α-helical coiled coil structures formed by 25–50 residues long peptides are ...