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optPBN: An Optimisation Toolbox for Probabilistic Boolean Networks
- Source :
- PLoS ONE, 9(7), 98001 (1-15. San Franscisco, CA: Public Library of Science (2014)., PLoS ONE, PLoS ONE, Vol 9, Iss 7, p e98001 (2014)
- Publication Year :
- 2014
-
Abstract
- BackgroundThere exist several computational tools which allow for the optimisation and inference of biological networks using a Boolean formalism. Nevertheless, the results from such tools yield only limited quantitative insights into the complexity of biological systems because of the inherited qualitative nature of Boolean networks.ResultsWe introduce optPBN, a Matlab-based toolbox for the optimisation of probabilistic Boolean networks (PBN) which operates under the framework of the BN/PBN toolbox. optPBN offers an easy generation of probabilistic Boolean networks from rule-based Boolean model specification and it allows for flexible measurement data integration from multiple experiments. Subsequently, optPBN generates integrated optimisation problems which can be solved by various optimisers. In term of functionalities, optPBN allows for the construction of a probabilistic Boolean network from a given set of potential constitutive Boolean networks by optimising the selection probabilities for these networks so that the resulting PBN fits experimental data. Furthermore, the optPBN pipeline can also be operated on large-scale computational platforms to solve complex optimisation problems. Apart from exemplary case studies which we correctly inferred the original network, we also successfully applied optPBN to study a large-scale Boolean model of apoptosis where it allows identifying the inverse correlation between UVB irradiation, NFκB and Caspase 3 activations, and apoptosis in primary hepatocytes quantitatively. Also, the results from optPBN help elucidating the relevancy of crosstalk interactions in the apoptotic network.SummaryThe optPBN toolbox provides a simple yet comprehensive pipeline for integrated optimisation problem generation in the PBN formalism that can readily be solved by various optimisers on local or grid-based computational platforms. optPBN can be further applied to various biological studies such as the inference of gene regulatory networks or the identification of the interaction's relevancy in signal transduction networks.
- Subjects :
- Computer and Information Sciences
Theoretical computer science
Ultraviolet Rays
optimisation
Science
Gene regulatory network
Evolutionary algorithm
Inference
Apoptosis
Multidisciplinary, general & others [F99] [Life sciences]
Bioinformatics
Models, Biological
Multidisciplinaire, généralités & autres [F99] [Sciences du vivant]
Cell Signaling
Molecular Cell Biology
Anti-Apoptotic Signaling
Animals
Humans
network analysis
Apoptotic Signaling
Matlab
Physics
Multidisciplinary
Software Tools
Caspase 3
Boolean model
software
Systems Biology
NF-kappa B
Probabilistic logic
Biology and Life Sciences
Computational Biology
Software Engineering
probabilistic Boolean networks
Cell Biology
Signaling Networks
Boolean network
network inference
Medicine
Network Analysis
Software
Biological network
Research Article
Signal Transduction
Computer Modeling
Network analysis
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- PLoS ONE, 9(7), 98001 (1-15. San Franscisco, CA: Public Library of Science (2014)., PLoS ONE, PLoS ONE, Vol 9, Iss 7, p e98001 (2014)
- Accession number :
- edsair.doi.dedup.....579049113fb10e8d4fa0f388ff5d2c06