Biomolecular self-assembly is an emerging bottom-up approach for the synthesis of novel nanomaterials. DNA and viruses have both been used to create scaffolds but the former lacks chemical diversity and the latter lack spatial control. To date, the use of protein scaffolds to template materials on the nanoscale has focused on amyloidogenic proteins that are known to form fibrils or two-protein systems where a second protein acts as a cross-linker. We previously developed a unique approach for self-assembly of nanomaterials based on engineering β-solenoid proteins (BSPs) to polymerize into micrometer-length fibrils. BSPs have highly regular geometries, tunable lengths, and flat surfaces that are amenable to engineering and functionalization....
Protein self-assembly offers key strategies for nature to generate high-performance and multifunctio...
Thesis (Ph.D.)--University of Washington, 2015Biological building blocks that self-assemble into pre...
International audienceProteins are the most specific yet versatile biological self-assembling agents...
International audienceOne-dimensional (1-D) nanomaterials are ideally suited for exploring a number ...
Self-assembly of biomolecules into beta-sheet structures can be applied in the creation of nano-mate...
Bioinspired and bioinorganic materials sciences offer unique opportunities to produce and manipulate...
Deigned rational assembly Of proteins promises novel properties and functionalities as well as new i...
The development towards a sustainable society requires a radical change of many of the materials we ...
Altres ajuts: Acord transformatiu CRUE-CSICWe have developed a simple, robust, and fully transversal...
While the field of synthetic biology has been historically dominated by developments on the genetic ...
Designed rational assembly of proteins promises novel properties and functionalities as well as new ...
Over the last two decades, newly emerging nanomaterials have demonstrated a great potential to overc...
There is currently intense interest in using protein scaffolds to prepare uniform nanometre-sized cl...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
Self-assembling protein templates are of increasing interest in the field of nanoscale fabrication o...
Protein self-assembly offers key strategies for nature to generate high-performance and multifunctio...
Thesis (Ph.D.)--University of Washington, 2015Biological building blocks that self-assemble into pre...
International audienceProteins are the most specific yet versatile biological self-assembling agents...
International audienceOne-dimensional (1-D) nanomaterials are ideally suited for exploring a number ...
Self-assembly of biomolecules into beta-sheet structures can be applied in the creation of nano-mate...
Bioinspired and bioinorganic materials sciences offer unique opportunities to produce and manipulate...
Deigned rational assembly Of proteins promises novel properties and functionalities as well as new i...
The development towards a sustainable society requires a radical change of many of the materials we ...
Altres ajuts: Acord transformatiu CRUE-CSICWe have developed a simple, robust, and fully transversal...
While the field of synthetic biology has been historically dominated by developments on the genetic ...
Designed rational assembly of proteins promises novel properties and functionalities as well as new ...
Over the last two decades, newly emerging nanomaterials have demonstrated a great potential to overc...
There is currently intense interest in using protein scaffolds to prepare uniform nanometre-sized cl...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
Self-assembling protein templates are of increasing interest in the field of nanoscale fabrication o...
Protein self-assembly offers key strategies for nature to generate high-performance and multifunctio...
Thesis (Ph.D.)--University of Washington, 2015Biological building blocks that self-assemble into pre...
International audienceProteins are the most specific yet versatile biological self-assembling agents...