Development of protein cages for encapsulation of active enzyme cargoes and their subsequent arrangement into a controllable three-dimensional array is highly desirable. However, cargo capture is typically challenging because of difficulties in achieving reversible assembly/disassembly of protein cages in mild conditions. Herein we show that by using an unusual ferritin cage protein that undergoes triggerable assembly under mild conditions, we can achieve reversible filling with protein cargoes including an active enzyme. We demonstrate that these filled cages can be arrayed in three-dimensional crystal lattices and have an additional chaperone-like effect, increasing both thermostability and enzymatic activity of the encapsulated enzyme.Pe...
Symmetrical protein cages have evolved to fulfil diverse roles in nature, including compartmentaliza...
The ability to chemically control protein-protein interactions would allow the interrogation of dyna...
Artificial protein cages have great potential in a number of areas including cargo capture and deliv...
Development of protein cages for encapsulation of active enzyme cargoes and their subsequent arrange...
Protein cages are hollow protein shells with a nanometric cavity that can be filled with useful mate...
Versatile methods to organize proteins in space are required to enable complex biomaterials, enginee...
Cage proteins, which assemble into often highly symmetric hollow nanoscale capsules, have great pote...
Using a newly discovered encapsulin from Mycolicibacterium hassiacum, several biocatalysts were pack...
© 2017 American Chemical Society. Cage proteins assemble into nanoscale structures with large centra...
Engineered protein cages are promising tools that can be customized for applications in medicine and...
Members of the ferritin superfamily are multi-subunit cage-like proteins with a hollow interior cavi...
We demonstrate temperature-controlled encapsulation and release of the enzyme horseradish peroxidase...
We demonstrate temperature-controlled encapsulation and release of the enzyme horseradish peroxidase...
Self-assembling protein cages are useful as nanoscale molecular containers for diverse applications ...
The assembly of individual molecules into hierarchical structures is a promising strategy for develo...
Symmetrical protein cages have evolved to fulfil diverse roles in nature, including compartmentaliza...
The ability to chemically control protein-protein interactions would allow the interrogation of dyna...
Artificial protein cages have great potential in a number of areas including cargo capture and deliv...
Development of protein cages for encapsulation of active enzyme cargoes and their subsequent arrange...
Protein cages are hollow protein shells with a nanometric cavity that can be filled with useful mate...
Versatile methods to organize proteins in space are required to enable complex biomaterials, enginee...
Cage proteins, which assemble into often highly symmetric hollow nanoscale capsules, have great pote...
Using a newly discovered encapsulin from Mycolicibacterium hassiacum, several biocatalysts were pack...
© 2017 American Chemical Society. Cage proteins assemble into nanoscale structures with large centra...
Engineered protein cages are promising tools that can be customized for applications in medicine and...
Members of the ferritin superfamily are multi-subunit cage-like proteins with a hollow interior cavi...
We demonstrate temperature-controlled encapsulation and release of the enzyme horseradish peroxidase...
We demonstrate temperature-controlled encapsulation and release of the enzyme horseradish peroxidase...
Self-assembling protein cages are useful as nanoscale molecular containers for diverse applications ...
The assembly of individual molecules into hierarchical structures is a promising strategy for develo...
Symmetrical protein cages have evolved to fulfil diverse roles in nature, including compartmentaliza...
The ability to chemically control protein-protein interactions would allow the interrogation of dyna...
Artificial protein cages have great potential in a number of areas including cargo capture and deliv...