A new symmetry-based approach allowed the self-assembly of an octahedral protein nanostructure. C3 trimeric and C4 tetrameric oligomerization domains can be combined in an engineered protein to direct assembly into a desired object. This work might provide the basis for a more general and flexible strategy to control protein self-assembly
Protein structures evolved through a complex interplay of cooperative interactions, and it is still ...
Abstract Like natural viruses, manmade protein cages for drug delivery are to be ideally formed by r...
Protein self-assembly is extensively used in nature to build functional biomolecules and provides a ...
We describe a general computational method for designing proteins that self-assemble to a desired sy...
In nature, it is extremely common to find proteins that assemble into homo-oligomeric complexes from...
Designing protein molecules that self-assemble into complex architectures is an outstanding goal in ...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
Protein self-assembly is extensively used in nature to build functional biomolecules and provides a ...
In nature, the assembly of individual protein subunits into larger quaternary structures allows new ...
Strategies for self-assembly of protein-based suprastructures were developed. Recombinant protein bu...
Polypeptides and polynucleotides are natural programmable biopolymers that can self-assemble into co...
The scarcity of predictive design approaches for the rational manipulation of self-assembly, especia...
Several phenomena occurring throughout the life of living things start and end with proteins. Variou...
Recent advances in computational methods have enabled the predictive design of self-assembling prote...
ABSTRACT OF THE DISSERTATIONTheory, Design and Characterization of Protein Symmetry Combination Mate...
Protein structures evolved through a complex interplay of cooperative interactions, and it is still ...
Abstract Like natural viruses, manmade protein cages for drug delivery are to be ideally formed by r...
Protein self-assembly is extensively used in nature to build functional biomolecules and provides a ...
We describe a general computational method for designing proteins that self-assemble to a desired sy...
In nature, it is extremely common to find proteins that assemble into homo-oligomeric complexes from...
Designing protein molecules that self-assemble into complex architectures is an outstanding goal in ...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
Protein self-assembly is extensively used in nature to build functional biomolecules and provides a ...
In nature, the assembly of individual protein subunits into larger quaternary structures allows new ...
Strategies for self-assembly of protein-based suprastructures were developed. Recombinant protein bu...
Polypeptides and polynucleotides are natural programmable biopolymers that can self-assemble into co...
The scarcity of predictive design approaches for the rational manipulation of self-assembly, especia...
Several phenomena occurring throughout the life of living things start and end with proteins. Variou...
Recent advances in computational methods have enabled the predictive design of self-assembling prote...
ABSTRACT OF THE DISSERTATIONTheory, Design and Characterization of Protein Symmetry Combination Mate...
Protein structures evolved through a complex interplay of cooperative interactions, and it is still ...
Abstract Like natural viruses, manmade protein cages for drug delivery are to be ideally formed by r...
Protein self-assembly is extensively used in nature to build functional biomolecules and provides a ...