Nature uses dynamic molecular platforms for the recruitment of weakly associating proteins into higher-order assemblies to achieve spatiotemporal control of signal transduction. Nanostructures that emulate this dynamic behavior require features such as plasticity, specificity and reversibility. Here we introduce a synthetic protein recruitment platform that combines the dynamics of supramolecular polymers with the programmability offered by DNA-mediated protein recruitment. Assembly of benzene-1,3,5-tricarboxamide (BTA) derivatives functionalized with a 10-nucleotide receptor strand into μm-long supramolecular BTA polymers is remarkably robust, even with high contents of DNA-functionalized BTA monomers and associated proteins. Specific recr...
The self-organizational properties of DNA have been used to realize synthetic hosts for protein enca...
Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. ...
Self-assembly of DNA-containing molecules into biocompatible functional materials has attracted cons...
Nature uses dynamic molecular platforms for the recruitment of weakly associating proteins into high...
\u3cp\u3eDynamic DNA-based circuits represent versatile systems to perform complex computing operati...
Dynamic DNA-based circuits represent versatile systems to perform complex computing operations at th...
Biological processes rely on transient interactions that govern assembly of biomolecules into higher...
Creation of biocompatible functional materials is an important task in supramolecular chemistry. In ...
<p> In this thesis it is demonstrated that it is possible to use Protein-based Polymers (PbPs) as sy...
The unique self-recognition properties of oligonucleotides laid the foundation of modern DNA nanotec...
Nature has evolved sequence-controlled polymers, such as DNA and proteins, over its long history. Th...
A grand challenge in materials chemistry is the synthesis of macromolecules and polymers with precis...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
Life is orchestrated by biomolecules interacting in complex networks of biological circuitry with em...
Dynamic protein assembly along supramolecular columnar polymers has been achieved through the site-s...
The self-organizational properties of DNA have been used to realize synthetic hosts for protein enca...
Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. ...
Self-assembly of DNA-containing molecules into biocompatible functional materials has attracted cons...
Nature uses dynamic molecular platforms for the recruitment of weakly associating proteins into high...
\u3cp\u3eDynamic DNA-based circuits represent versatile systems to perform complex computing operati...
Dynamic DNA-based circuits represent versatile systems to perform complex computing operations at th...
Biological processes rely on transient interactions that govern assembly of biomolecules into higher...
Creation of biocompatible functional materials is an important task in supramolecular chemistry. In ...
<p> In this thesis it is demonstrated that it is possible to use Protein-based Polymers (PbPs) as sy...
The unique self-recognition properties of oligonucleotides laid the foundation of modern DNA nanotec...
Nature has evolved sequence-controlled polymers, such as DNA and proteins, over its long history. Th...
A grand challenge in materials chemistry is the synthesis of macromolecules and polymers with precis...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
Life is orchestrated by biomolecules interacting in complex networks of biological circuitry with em...
Dynamic protein assembly along supramolecular columnar polymers has been achieved through the site-s...
The self-organizational properties of DNA have been used to realize synthetic hosts for protein enca...
Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. ...
Self-assembly of DNA-containing molecules into biocompatible functional materials has attracted cons...