Rendering the geometry of protein-based assemblies controllable remains challenging. Protein shell-like nanocages represent particularly interesting targets for designed assembly. Here, we introduce an engineering strategy<u>k</u>ey <u>s</u>ubunit <u>i</u>nterface <u>r</u>edesign (KSIR)that alters a natural subunit–subunit interface by selective deletion of a small number of “silent” amino acid residues (no participation in interfacial interactions) into one that triggers the generation of a non-native protein cage. We have applied KSIR to construct a non-native 48-mer nanocage from its native 24-mer recombinant human H-chain ferritin (rHuHF). This protein is a heteropolymer composed of equal numbers of two different subunits which are de...
In recent years, protein nanocages have been shown to be one the most promising and potential carrie...
Protein nanocages play crucial roles in sub- cellular compartmentalization and spatial control in a...
Precise manipulation of protein self-assembly by noncovalent interactions into programmed networks t...
Living systems utilize proteins as building blocks to construct a large variety of self-assembled na...
The ability to chemically control protein-protein interactions would allow the interrogation of dyna...
Investigations into protein quaternary structure can lead to deeper insight into the fundamentals go...
Members of the ferritin superfamily are multi-subunit cage-like proteins with a hollow interior cavi...
Aromatic–aromatic interactions between natural aromatic amino acids Phe, Tyr, and Trp play crucial r...
The scarcity of predictive design approaches for the rational manipulation of self-assembly, especia...
Self-assembly of protein nano-structure is an essential and ubiquitous phenomenon which plays a role...
The precise assembly of multiple biomacromolecules into well-defined structures and materials is of ...
Functional ferritins are 24-mer nanocages that self-assemble with extended contacts between pairs of...
Functional ferritins are 24-mer nanocages that self-assemble with extended contacts between pairs of...
© 2017 American Chemical Society. Cage proteins assemble into nanoscale structures with large centra...
Cage proteins, which assemble into often highly symmetric hollow nanoscale capsules, have great pote...
In recent years, protein nanocages have been shown to be one the most promising and potential carrie...
Protein nanocages play crucial roles in sub- cellular compartmentalization and spatial control in a...
Precise manipulation of protein self-assembly by noncovalent interactions into programmed networks t...
Living systems utilize proteins as building blocks to construct a large variety of self-assembled na...
The ability to chemically control protein-protein interactions would allow the interrogation of dyna...
Investigations into protein quaternary structure can lead to deeper insight into the fundamentals go...
Members of the ferritin superfamily are multi-subunit cage-like proteins with a hollow interior cavi...
Aromatic–aromatic interactions between natural aromatic amino acids Phe, Tyr, and Trp play crucial r...
The scarcity of predictive design approaches for the rational manipulation of self-assembly, especia...
Self-assembly of protein nano-structure is an essential and ubiquitous phenomenon which plays a role...
The precise assembly of multiple biomacromolecules into well-defined structures and materials is of ...
Functional ferritins are 24-mer nanocages that self-assemble with extended contacts between pairs of...
Functional ferritins are 24-mer nanocages that self-assemble with extended contacts between pairs of...
© 2017 American Chemical Society. Cage proteins assemble into nanoscale structures with large centra...
Cage proteins, which assemble into often highly symmetric hollow nanoscale capsules, have great pote...
In recent years, protein nanocages have been shown to be one the most promising and potential carrie...
Protein nanocages play crucial roles in sub- cellular compartmentalization and spatial control in a...
Precise manipulation of protein self-assembly by noncovalent interactions into programmed networks t...