International audienceThe recent development of biohybrid catalytic systems has allowed synthetic chemists to reach high levels of selectivity on a wide variety of valuable synthetic transformations. In this context, DNA-based catalysts have emerged as particularly appealing tools. Interestingly, while long RNA sequences (ribozymes) are known to catalyse specific biochemical reactions with remarkable efficiencies, RNA-based catalysts involving a catalytically active metal complex interacting in a non-covalent fashion with short sequences have never been evaluated to date. We report here our results, which have led to the first example involving a short RNA-based catalyst
To study DNAs and RNAs it is often necessary to chemically modify them. Nature's strategy for nuclei...
Our current understanding of biology suggests that early life relied predominantly on RNA for both c...
Ribozymes are widespread, and catalyze some extremely important reactions in the cell. Mechanistical...
International audienceThe recent development of biohybrid catalytic systems has allowed synthetic ch...
By harnessing the chirality of the DNA double helix, chemists have been able to obtain new, reliable...
The biological importance of nucleic acids for the storage, expression and regulation of genetic inf...
The discovery of catalytic RNA (ribozymes) more than 30 years ago significantly widened the horizon ...
Here we report the discovery of a Au(I)-DNA hybrid catalyst that is compatible with biological media...
Ribozymes, just like protein enzymes, catalyze diverse chemical reactions. The first goal of this di...
Scientists thought of RNA as passive messenger molecules until the discovery of catalytic RNA (riboz...
AbstractThe recent selection of a complex ribozyme capable of general polymerization on a template i...
At some point in the origin of life, life likely went through a stage where RNA acted as genome and ...
The union of transition metal catalysis with native biochemistry presents a powerful opportunity to ...
The union of transition metal catalysis with native biochemistry presents a powerful opportunity to ...
Ribozymes are widespread, and catalyze some extremely important reactions in the cell. Mechanistical...
To study DNAs and RNAs it is often necessary to chemically modify them. Nature's strategy for nuclei...
Our current understanding of biology suggests that early life relied predominantly on RNA for both c...
Ribozymes are widespread, and catalyze some extremely important reactions in the cell. Mechanistical...
International audienceThe recent development of biohybrid catalytic systems has allowed synthetic ch...
By harnessing the chirality of the DNA double helix, chemists have been able to obtain new, reliable...
The biological importance of nucleic acids for the storage, expression and regulation of genetic inf...
The discovery of catalytic RNA (ribozymes) more than 30 years ago significantly widened the horizon ...
Here we report the discovery of a Au(I)-DNA hybrid catalyst that is compatible with biological media...
Ribozymes, just like protein enzymes, catalyze diverse chemical reactions. The first goal of this di...
Scientists thought of RNA as passive messenger molecules until the discovery of catalytic RNA (riboz...
AbstractThe recent selection of a complex ribozyme capable of general polymerization on a template i...
At some point in the origin of life, life likely went through a stage where RNA acted as genome and ...
The union of transition metal catalysis with native biochemistry presents a powerful opportunity to ...
The union of transition metal catalysis with native biochemistry presents a powerful opportunity to ...
Ribozymes are widespread, and catalyze some extremely important reactions in the cell. Mechanistical...
To study DNAs and RNAs it is often necessary to chemically modify them. Nature's strategy for nuclei...
Our current understanding of biology suggests that early life relied predominantly on RNA for both c...
Ribozymes are widespread, and catalyze some extremely important reactions in the cell. Mechanistical...