International audienceMotivations: The design of RNA sequences folding into predefined secondary structures is a milestone for many synthetic biology and gene therapy studies. Most of the current software uses similar local search strategies (i.e. a random seed is progressively adapted to acquire the desired folding properties) and more importantly do not allow the user to control explicitly the nucleotide distribution such as the GC-content in their sequences. However, the latter is an important criterion for large-scale applications as it could presumably be used to design sequences with better transcription rates and/or structural plasticity. Results: In this paper, we introduce IncaRNAtion, a novel algorithm to design RNA sequences fold...
International audienceThe problem of RNA secondary structure design (also called inverse folding) is...
Extended version under reviewInternational audienceThe design of multi-stable RNA molecules has impo...
International audienceBACKGROUND: The design of multi-stable RNA molecules has important application...
International audienceMotivations: The design of RNA sequences folding into predefined secondary str...
Extended version of ISMB/ECCB'13International audienceMOTIVATIONS: The design of RNA sequences foldi...
International audienceThe development of algorithms for designing artificial RNA sequences that fold...
Computational design of RNA sequences that fold into targeted secondary structures has many applicat...
Most of the biological processes including expression levels of genes and translation of DNA to prod...
The structure of RNA molecules is often crucial for their function. Therefore, designing RNA sequenc...
AbstractDesigning RNAs that form specific secondary structures is enabling better understanding and ...
International audienceThe analysis of the relationship between sequences and structures (i.e. how mu...
International audienceThe analysis of the relationship between sequences and structures (i.e., how m...
International audienceIn recent years, new methods for computational RNA design have been developed ...
International audienceThe problem of RNA secondary structure design (also called inverse folding) is...
Extended version under reviewInternational audienceThe design of multi-stable RNA molecules has impo...
International audienceBACKGROUND: The design of multi-stable RNA molecules has important application...
International audienceMotivations: The design of RNA sequences folding into predefined secondary str...
Extended version of ISMB/ECCB'13International audienceMOTIVATIONS: The design of RNA sequences foldi...
International audienceThe development of algorithms for designing artificial RNA sequences that fold...
Computational design of RNA sequences that fold into targeted secondary structures has many applicat...
Most of the biological processes including expression levels of genes and translation of DNA to prod...
The structure of RNA molecules is often crucial for their function. Therefore, designing RNA sequenc...
AbstractDesigning RNAs that form specific secondary structures is enabling better understanding and ...
International audienceThe analysis of the relationship between sequences and structures (i.e. how mu...
International audienceThe analysis of the relationship between sequences and structures (i.e., how m...
International audienceIn recent years, new methods for computational RNA design have been developed ...
International audienceThe problem of RNA secondary structure design (also called inverse folding) is...
Extended version under reviewInternational audienceThe design of multi-stable RNA molecules has impo...
International audienceBACKGROUND: The design of multi-stable RNA molecules has important application...