Biological networks 101: Computational modeling for molecular biologists |
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Authors: | Jetse Scholma Stefano Schivo Ricardo A. Urquidi Camacho Jaco van de Pol Marcel Karperien Janine N. Post |
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Affiliation: | 1. Developmental BioEngineering, MIRA Institute for Biomedical Technology and Technical Medicine, University of Twente, 7522NH Enschede, The Netherlands;2. Formal Methods and Tools, Faculty of EEMCS, University of Twente, 7522NH Enschede, The Netherlands |
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Abstract: | Computational modeling of biological networks permits the comprehensive analysis of cells and tissues to define molecular phenotypes and novel hypotheses. Although a large number of software tools have been developed, the versatility of these tools is limited by mathematical complexities that prevent their broad adoption and effective use by molecular biologists. This study clarifies the basic aspects of molecular modeling, how to convert data into useful input, as well as the number of time points and molecular parameters that should be considered for molecular regulatory models with both explanatory and predictive potential. We illustrate the necessary experimental preconditions for converting data into a computational model of network dynamics. This model requires neither a thorough background in mathematics nor precise data on intracellular concentrations, binding affinities or reaction kinetics. Finally, we show how an interactive model of crosstalk between signal transduction pathways in primary human articular chondrocytes allows insight into processes that regulate gene expression. |
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Keywords: | ANIMO, Analysis of Networks with Interactive MOdeling AXIN2, Axin 2 gene product B2M, beta-2-microglobulin mRNA ERK, Extracellular Signal-Related Kinase 1, MAPK3 FZD, Frizzled GINsim, Gene Interaction Network simulation hrs, hours IL-1b, interleukin 1, beta protein IL-1B, interleukin 1, beta mRNA IL-1BR, interleukin 1, beta receptor JNK, c-Jun N-terminal kinase protein KEGG, Kyoto Encyclopedia of Genes and Genomes MAPK, mitogen-activated protein kinase MMP, matrix metalloprotease ODE, Ordinary Differential Equation PP96, Proteome profiler 96 Wnt, wingless-type MMTV integration site family |
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