The ability to assemble molecules into supramolecular architectures of controllable size and symmetry is a long sought after goal of nanotechnology and material engineering. Proteins are particularly attractive for molecular assembly due to their inherent molecular recognition and selfassembly capabilities. Advances in the computational prediction of protein folding and quaternary assembly have enabled the design of proteins that self-assemble into complex yet predictable shapes. These protein nanostructures are opening new possibilities in biomaterials, metabolic engineering, molecular delivery, tissue engineering, and a plethora of nanomaterials. Images of protein constructs assembled from simpler structures draw comparison to characters ...
Biological processes often depend on the harmonious interplay of multiple macromolecules. Biotechnol...
Abstract Like natural viruses, manmade protein cages for drug delivery are to be ideally formed by r...
Recent advances in computational methods have enabled the predictive design of self-assembling prote...
Over the last two decades, newly emerging nanomaterials have demonstrated a great potential to overc...
Nanotechnology realizes the advantages of naturally occurring biological macromolecules and their bu...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
Currently there is increasing interest in nanostructures and their design. Nanostructure design invo...
The use of proteins and peptides as nanoscale components to generate new-to-nature physical entities...
Several phenomena occurring throughout the life of living things start and end with proteins. Variou...
In nature, assembled protein structures offer the most complex functional structures. The understand...
Strategies for self-assembly of protein-based suprastructures were developed. Recombinant protein bu...
This chapter will focus on the description of protein-based nanostructures. How proteins can be used...
In recent years, protein nanocages have been shown to be one the most promising and potential carrie...
Thesis (Ph.D.)--University of Washington, 2015Biological building blocks that self-assemble into pre...
Polymers and their self-assembled structures constitute an essential part of life: Advances in synth...
Biological processes often depend on the harmonious interplay of multiple macromolecules. Biotechnol...
Abstract Like natural viruses, manmade protein cages for drug delivery are to be ideally formed by r...
Recent advances in computational methods have enabled the predictive design of self-assembling prote...
Over the last two decades, newly emerging nanomaterials have demonstrated a great potential to overc...
Nanotechnology realizes the advantages of naturally occurring biological macromolecules and their bu...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
Currently there is increasing interest in nanostructures and their design. Nanostructure design invo...
The use of proteins and peptides as nanoscale components to generate new-to-nature physical entities...
Several phenomena occurring throughout the life of living things start and end with proteins. Variou...
In nature, assembled protein structures offer the most complex functional structures. The understand...
Strategies for self-assembly of protein-based suprastructures were developed. Recombinant protein bu...
This chapter will focus on the description of protein-based nanostructures. How proteins can be used...
In recent years, protein nanocages have been shown to be one the most promising and potential carrie...
Thesis (Ph.D.)--University of Washington, 2015Biological building blocks that self-assemble into pre...
Polymers and their self-assembled structures constitute an essential part of life: Advances in synth...
Biological processes often depend on the harmonious interplay of multiple macromolecules. Biotechnol...
Abstract Like natural viruses, manmade protein cages for drug delivery are to be ideally formed by r...
Recent advances in computational methods have enabled the predictive design of self-assembling prote...