Passer à la navigation principale Passer à la recherche Passer au contenu principal

SparseRNAFolD: Sparse RNA Pseudoknot-Free Folding Including Dangles

Résultats de recherche: Le chapitre dans un livre, un rapport, une anthologie ou une collectionContribution à une conférenceRevue par des pairs

Résumé

Motivation. Computational RNA secondary structure prediction by free energy minimization is indispensable for analyzing structural RNAs and their interactions. These methods find the structure with the minimum free energy (MFE) among exponentially many possible structures and have a restrictive time and space complexity (O(n3) time and O(n2) space for pseudoknot-free structures) for longer RNA sequences. Furthermore, accurate free energy calculations, including dangles contributions can be difficult and costly to implement, particularly when optimizing for time and space requirements. Results. Here we introduce a fast and efficient sparsified MFE pseudoknot-free structure prediction algorithm, SparseRNAFolD, that utilizes an accurate energy model that accounts for dangle contributions. While the sparsification technique was previously employed to improve the time and space complexity of a pseudoknot-free structure prediction method with a realistic energy model, SparseMFEFold, it was not extended to include dangle contributions due to the complexity of computation. This may come at the cost of prediction accuracy. In this work, we compare three different sparsified implementations for dangles contributions and provide pros and cons of each method. As well, we compare our algorithm to LinearFold, a linear time and space algorithm, where we find that in practice, SparseRNAFolD has lower memory consumption across all lengths of sequence and a faster time for lengths up to 1000 bases. Conclusion. Our SparseRNAFolD algorithm is an MFE-based algorithm that guarantees optimality of result and employs the most general energy model, including dangle contributions. We provide a basis for applying dangles to sparsified recursion in a pseudoknot-free model that has the ability to be extended to pseudoknots.

langue originaleAnglais
titre23rd International Workshop on Algorithms in Bioinformatics, WABI 2023
rédacteurs en chefDjamal Belazzougui, A�da Ouangraoua
EditeurSchloss Dagstuhl- Leibniz-Zentrum fur Informatik GmbH, Dagstuhl Publishing
ISBN (Electronique)9783959772945
Les DOIs
étatPublié - 1 août 2023
Evénement23rd International Workshop on Algorithms in Bioinformatics, WABI 2023 - Houston, États-Unis
Durée: 4 sept. 20236 sept. 2023

Série de publications

NomLeibniz International Proceedings in Informatics, LIPIcs
Volume273
ISSN (imprimé)1868-8969

Une conférence

Une conférence23rd International Workshop on Algorithms in Bioinformatics, WABI 2023
Pays/TerritoireÉtats-Unis
La villeHouston
période4/09/236/09/23

Empreinte digitale

Examiner les sujets de recherche de « SparseRNAFolD: Sparse RNA Pseudoknot-Free Folding Including Dangles ». Ensemble, ils forment une empreinte digitale unique.

Contient cette citation