Three-dimensional (3D) cages are one of the most important targets for nanotechnology. Both proteins and DNA have been used as building blocks to create tunable nanoscale cages for a wide range of applications, but each molecular type has its own limitations. Here, we report a cage constructed from both protein and DNA building blocks through the use of covalent protein–DNA conjugates. We modified a homotrimeric protein (KDPG aldolase) with three identical single-stranded DNA handles by functionalizing a reactive cysteine residue introduced via site-directed mutagenesis. This protein–DNA building block was coassembled with a triangular DNA structure bearing three complementary arms to the handles, resulting in tetrahedral cages comprising s...
DNA-based self-assembly has been developed as an ideal means to create precisely controllable and hi...
We demonstrate an approach that allows attachment of single-stranded DNA (ssDNA) to a defined residu...
Complex function arises in biology from the proximity and relations amongst different functional uni...
In bionanotechnology, DNA has been shown as a superb molecular system in self-assembly towards botto...
abstract: Nature is a master at organizing biomolecules in all intracellular processes, and research...
High-precision nanomaterials to entrap DNA-binding molecules are sought after for applications such ...
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of com...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
Molecular self-assembly offers a ‘bottom-up ’ route to fabrication with subnanometre precision of co...
Here, we introduce a 3D-DNA construction method that assembles a minimum number of DNA strands in qu...
Proteins are Nature’s fundamental multitools, fulfilling crucial roles in catalyzing complex chemica...
The field of DNA nanotechnology, which utilizes synthetic DNA strands as build-blocks for nanostruct...
DNA has been utilized to engineer the novel functionalized and networked nanostructures in this diss...
DNA nanotechnology makes use of the exquisite self-recognition of DNA in order to build on a molecul...
DNA-based self-assembly has been developed as an ideal means to create precisely controllable and hi...
We demonstrate an approach that allows attachment of single-stranded DNA (ssDNA) to a defined residu...
Complex function arises in biology from the proximity and relations amongst different functional uni...
In bionanotechnology, DNA has been shown as a superb molecular system in self-assembly towards botto...
abstract: Nature is a master at organizing biomolecules in all intracellular processes, and research...
High-precision nanomaterials to entrap DNA-binding molecules are sought after for applications such ...
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of com...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
Molecular self-assembly offers a ‘bottom-up ’ route to fabrication with subnanometre precision of co...
Here, we introduce a 3D-DNA construction method that assembles a minimum number of DNA strands in qu...
Proteins are Nature’s fundamental multitools, fulfilling crucial roles in catalyzing complex chemica...
The field of DNA nanotechnology, which utilizes synthetic DNA strands as build-blocks for nanostruct...
DNA has been utilized to engineer the novel functionalized and networked nanostructures in this diss...
DNA nanotechnology makes use of the exquisite self-recognition of DNA in order to build on a molecul...
DNA-based self-assembly has been developed as an ideal means to create precisely controllable and hi...
We demonstrate an approach that allows attachment of single-stranded DNA (ssDNA) to a defined residu...
Complex function arises in biology from the proximity and relations amongst different functional uni...