We demonstrate an approach that allows attachment of single-stranded DNA (ssDNA) to a defined residue in a protein of interest (POI) so as to provide optimal and well-defined multicomponent assemblies. Using an expanded genetic code system, azido-phenylalanine (azF) was incorporated at defined residue positions in each POI; copper-free click chemistry was used to attach exactly one ssDNA at precisely defined residues. By choosing an appropriate residue, ssDNA conjugation had minimal impact on protein function, even when attached close to active sites. The protein-ssDNA conjugates were used to (i) assemble double-stranded DNA systems with optimal communication (energy transfer) between normally separate groups and (ii) generate multicomponen...
DNA-binding proteins are promising reagents for the sequence-specific modification of DNA-based nano...
Thermodynamic instability is a problem when assembling and purifying complex DNA nanostructures form...
Three-dimensional (3D) cages are one of the most important targets for nanotechnology. Both proteins...
We demonstrate an approach that allows attachment of single-stranded DNA (ssDNA) to a defined residu...
We demonstrate an approach that allows attachment of single-stranded DNA (ssDNA) to a defined residu...
abstract: Nature is a master at organizing biomolecules in all intracellular processes, and research...
Current gene synthesis methods are driven by enzymatic reactions. Here we report the one-pot synthes...
We present an efficient and readily applicable strategy for the covalent ligation of proteins to DNA...
The ability to create assemblies of proteins with spacing on the nanometer scale has important impli...
The programmed self-assembly of nanostructures from well-defined units is an important aim in nanosc...
Proteins are Nature’s fundamental multitools, fulfilling crucial roles in catalyzing complex chemica...
Combining structural DNA nanotechnology with the virtually unlimited variety of enzymes offers uniqu...
This thesis demonstrates bottom-up fabrication of a fully addressable non-repetitive network on the ...
A photocrosslinkable protein G variant was used as an adapter protein to covalently and site-specifi...
DNA-based self-assembly has been developed as an ideal means to create precisely controllable and hi...
DNA-binding proteins are promising reagents for the sequence-specific modification of DNA-based nano...
Thermodynamic instability is a problem when assembling and purifying complex DNA nanostructures form...
Three-dimensional (3D) cages are one of the most important targets for nanotechnology. Both proteins...
We demonstrate an approach that allows attachment of single-stranded DNA (ssDNA) to a defined residu...
We demonstrate an approach that allows attachment of single-stranded DNA (ssDNA) to a defined residu...
abstract: Nature is a master at organizing biomolecules in all intracellular processes, and research...
Current gene synthesis methods are driven by enzymatic reactions. Here we report the one-pot synthes...
We present an efficient and readily applicable strategy for the covalent ligation of proteins to DNA...
The ability to create assemblies of proteins with spacing on the nanometer scale has important impli...
The programmed self-assembly of nanostructures from well-defined units is an important aim in nanosc...
Proteins are Nature’s fundamental multitools, fulfilling crucial roles in catalyzing complex chemica...
Combining structural DNA nanotechnology with the virtually unlimited variety of enzymes offers uniqu...
This thesis demonstrates bottom-up fabrication of a fully addressable non-repetitive network on the ...
A photocrosslinkable protein G variant was used as an adapter protein to covalently and site-specifi...
DNA-based self-assembly has been developed as an ideal means to create precisely controllable and hi...
DNA-binding proteins are promising reagents for the sequence-specific modification of DNA-based nano...
Thermodynamic instability is a problem when assembling and purifying complex DNA nanostructures form...
Three-dimensional (3D) cages are one of the most important targets for nanotechnology. Both proteins...