We propose a new approach for modelling the process of RNA folding as a graph transformation guided by the global value of free energy. Since the folding process evolves towards a configuration in which the free energy is minimal, the global behaviour resembles the one of a self-adaptive system. Each RNA configuration is a graph and the evolution of configurations is constrained by precise rules that can be described by a graph grammar
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI--COLUMBIA AT REQUEST OF AUTHOR.] RNA (Ribonucleic a...
International audienceThe overall architecture of an RNA can be predicted with acceptable accuracy u...
Abstract In recent years it has become evident that functional RNAs in living organisms are not just...
We propose a new approach for modelling the process of RNA folding as a graph transformation guided...
Graph rewriting formalism is widely used for modelling the dynamics of complex systems in direct and...
In this paper we introduce a shape language for representing RNA secondary structures in a non-stand...
Motivation: RNA folding is a complicated kinetic process. The minimum free energy structure provides...
MOTIVATION: Many computational methods for RNA secondary structure prediction, and, in particular, f...
Dynamical models that explain the formation of spatial structures of RNA molecules have reached a co...
The ability to fold into well-defined native conformation is a prerequisite for biologically functio...
Abstract Background Determining the secondary structure of RNA from the primary structure is a chall...
Based on the virtual bond representation for the nucleotide backbone, we develop a reduced conformat...
In the realm of nucleic acid structures, secondary structure forms a conceptually important intermed...
International audienceIntroduction Ribonucleic Acids (RNA) are molecules that are essential to any l...
RNAs are biomolecules ubiquitous in all living cells. Usually, they fold into complex molecular stru...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI--COLUMBIA AT REQUEST OF AUTHOR.] RNA (Ribonucleic a...
International audienceThe overall architecture of an RNA can be predicted with acceptable accuracy u...
Abstract In recent years it has become evident that functional RNAs in living organisms are not just...
We propose a new approach for modelling the process of RNA folding as a graph transformation guided...
Graph rewriting formalism is widely used for modelling the dynamics of complex systems in direct and...
In this paper we introduce a shape language for representing RNA secondary structures in a non-stand...
Motivation: RNA folding is a complicated kinetic process. The minimum free energy structure provides...
MOTIVATION: Many computational methods for RNA secondary structure prediction, and, in particular, f...
Dynamical models that explain the formation of spatial structures of RNA molecules have reached a co...
The ability to fold into well-defined native conformation is a prerequisite for biologically functio...
Abstract Background Determining the secondary structure of RNA from the primary structure is a chall...
Based on the virtual bond representation for the nucleotide backbone, we develop a reduced conformat...
In the realm of nucleic acid structures, secondary structure forms a conceptually important intermed...
International audienceIntroduction Ribonucleic Acids (RNA) are molecules that are essential to any l...
RNAs are biomolecules ubiquitous in all living cells. Usually, they fold into complex molecular stru...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI--COLUMBIA AT REQUEST OF AUTHOR.] RNA (Ribonucleic a...
International audienceThe overall architecture of an RNA can be predicted with acceptable accuracy u...
Abstract In recent years it has become evident that functional RNAs in living organisms are not just...