The assembly of individual molecules into hierarchical structures is a promising strategy for developing three-dimensional materials with properties arising from interaction between the individual building blocks. Virus capsids are elegant examples of biomolecular nanostructures, which are themselves hierarchically assembled from a limited number of protein subunits. Here, we demonstrate the bio-inspired modular construction of materials with two levels of hierarchy: the formation of catalytically active individual virus-like particles (VLPs) through directed self-assembly of capsid subunits with enzyme encapsulation, and the assembly of these VLP building blocks into three-dimensional arrays. The structure of the assembled arrays was succe...
The design and engineering of biological building blocks that self-assemble into\ud highly ordered, ...
Bottom-up construction of mesoscale materials using biologically derived nanoscale building blocks e...
Abstract Like natural viruses, manmade protein cages for drug delivery are to be ideally formed by r...
Protein capsids are specialized and versatile natural macromolecules with exceptional properties. Th...
Protein capsids are specialized and versatile natural macromolecules with exceptional properties. Th...
In biology, there are an abundant number of self-assembled structures organized according to hierarc...
Strategies for self-assembly of protein-based suprastructures were developed. Recombinant protein bu...
Self-assembly of regular protein surfaces around nanoparticle templates provides a new class of hybr...
Engineered variants of the capsid-forming enzyme lumazine synthase can exploit electrostatic interac...
Hierarchical organization of macromolecules through self-assembly is a prominent feature in biologic...
We have developed virus-based protein cage functional materials for catalysis and optical coatings. ...
Hierarchical organization of macromolecules through self-assembly is a prominent feature in biologic...
The simultaneous expression in Escherichia coli cells of the Qβ virus-like particle (VLP) capsid pro...
Multicomponent crystals and nanoparticle superlattices are a powerful approach to integrate differen...
Protein cages, such as viruses, are well-defined biological nanostructures which are highly symmetri...
The design and engineering of biological building blocks that self-assemble into\ud highly ordered, ...
Bottom-up construction of mesoscale materials using biologically derived nanoscale building blocks e...
Abstract Like natural viruses, manmade protein cages for drug delivery are to be ideally formed by r...
Protein capsids are specialized and versatile natural macromolecules with exceptional properties. Th...
Protein capsids are specialized and versatile natural macromolecules with exceptional properties. Th...
In biology, there are an abundant number of self-assembled structures organized according to hierarc...
Strategies for self-assembly of protein-based suprastructures were developed. Recombinant protein bu...
Self-assembly of regular protein surfaces around nanoparticle templates provides a new class of hybr...
Engineered variants of the capsid-forming enzyme lumazine synthase can exploit electrostatic interac...
Hierarchical organization of macromolecules through self-assembly is a prominent feature in biologic...
We have developed virus-based protein cage functional materials for catalysis and optical coatings. ...
Hierarchical organization of macromolecules through self-assembly is a prominent feature in biologic...
The simultaneous expression in Escherichia coli cells of the Qβ virus-like particle (VLP) capsid pro...
Multicomponent crystals and nanoparticle superlattices are a powerful approach to integrate differen...
Protein cages, such as viruses, are well-defined biological nanostructures which are highly symmetri...
The design and engineering of biological building blocks that self-assemble into\ud highly ordered, ...
Bottom-up construction of mesoscale materials using biologically derived nanoscale building blocks e...
Abstract Like natural viruses, manmade protein cages for drug delivery are to be ideally formed by r...