articleAlgorithms for Molecular BiologyNov 24, 2011GOLD OA

ViennaRNA Package 2.0

University of Vienna · TU Wien · +5 more institutions

PubMed
Indexed incrossrefdoajpubmed

Abstract

Background

Secondary structure forms an important intermediate level of description of nucleic acids that encapsulates the dominating part of the folding energy, is often well conserved in evolution, and is routinely used as a basis to explain experimental findings. Based on carefully measured thermodynamic parameters, exact dynamic programming algorithms can be used to compute ground states, base pairing probabilities, as well as thermodynamic properties.

Results

The ViennaRNA Package has been a widely used compilation of RNA secondary structure related computer programs for nearly two decades. Major changes in the structure of the standard energy model, the Turner 2004 parameters, the pervasive use of multi-core CPUs, and an increasing number of algorithmic variants prompted a major technical overhaul of both the underlying RNAlib and the interactive user programs. New features include an expanded repertoire of tools to assess RNA-RNA interactions and restricted ensembles of structures, additional output information such as centroid structures and maximum expected accuracy structures derived from base pairing probabilities, or z-scores for locally stable secondary structures, and support for input in fasta format. Updates were implemented without compromising the computational efficiency of the core algorithms and ensuring compatibility with earlier versions.

Citation impact

5,344
total citations
FWCI
30.19
Percentile
100%
References
108
Citations per year

Authors

7

Topics & keywords

Keywords
  • Computer science
  • R package
  • Computation
  • Nucleic acid secondary structure
  • Centroid
  • Theoretical computer science
  • Base (topology)
  • Base pair
UN Sustainable Development Goals
  • Affordable and clean energy
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Funding