International audienceComputational programs for predicting RNA sequences with desired folding properties have been extensively developed and expanded in the past several years. Given a secondary structure, these programs aim to predict sequences that fold into a target minimum free energy secondary structure, while considering various constraints. This procedure is called inverse RNA folding. Inverse RNA folding has been traditionally used to design optimized RNAs with favorable properties, an application that is expected to grow considerably in the future in light of advances in the expanding new fields of synthetic biology and RNA nanostructures. Moreover, it was recently demonstrated that inverse RNA folding can successfully be used as ...
Several algorithms for RNA inverse folding have been used to design synthetic riboswitches, ribozyme...
RNA has become an integral building material in synthetic biology. Dominated by their secondary stru...
RNA molecules, the fundamental building blocks of life, are chains of nucleotides that can bond to p...
International audienceComputational programs for predicting RNA sequences with desired folding prope...
Motivation: The structure of RNA molecules is often crucial for their function. Therefore, secondary...
International audienceIn recent years, new methods for computational RNA design have been developed ...
International audienceThe overall architecture of an RNA can be predicted with acceptable accuracy u...
Background RNA secondary structure prediction, or folding, is a classic problem in bioinformatics: ...
AbstractDesigning RNAs that form specific secondary structures is enabling better understanding and ...
RNA structures are important for many biological processes in the cell. One important function of RN...
The structure of RNA molecules is often crucial for their function. Therefore, designing RNA sequenc...
Motivation: RNA sequence design is studied at least as long as the classical folding problem. While ...
Motivation: RNA sequence design is studied at least as long as the classical folding problem. Althou...
Rubio-Largo, A., Vanneschi, L., Castelli, M., & Vega-Rodriguez, M. A. (2019). Multiobjective Metaheu...
Synthetic biology and nanotechnology are poised to make revolutionary contributions to the 21st cent...
Several algorithms for RNA inverse folding have been used to design synthetic riboswitches, ribozyme...
RNA has become an integral building material in synthetic biology. Dominated by their secondary stru...
RNA molecules, the fundamental building blocks of life, are chains of nucleotides that can bond to p...
International audienceComputational programs for predicting RNA sequences with desired folding prope...
Motivation: The structure of RNA molecules is often crucial for their function. Therefore, secondary...
International audienceIn recent years, new methods for computational RNA design have been developed ...
International audienceThe overall architecture of an RNA can be predicted with acceptable accuracy u...
Background RNA secondary structure prediction, or folding, is a classic problem in bioinformatics: ...
AbstractDesigning RNAs that form specific secondary structures is enabling better understanding and ...
RNA structures are important for many biological processes in the cell. One important function of RN...
The structure of RNA molecules is often crucial for their function. Therefore, designing RNA sequenc...
Motivation: RNA sequence design is studied at least as long as the classical folding problem. While ...
Motivation: RNA sequence design is studied at least as long as the classical folding problem. Althou...
Rubio-Largo, A., Vanneschi, L., Castelli, M., & Vega-Rodriguez, M. A. (2019). Multiobjective Metaheu...
Synthetic biology and nanotechnology are poised to make revolutionary contributions to the 21st cent...
Several algorithms for RNA inverse folding have been used to design synthetic riboswitches, ribozyme...
RNA has become an integral building material in synthetic biology. Dominated by their secondary stru...
RNA molecules, the fundamental building blocks of life, are chains of nucleotides that can bond to p...