Title :
A module-based approach to biomodel engineering with Petri Nets
Author :
Marwan, W. ; Blatke, M.A.
Author_Institution :
Otto-von-Guericke Univ., Magdeburg, Germany
Abstract :
Based on Petri nets as formal language for biomodel engineering, we describe the general concept of a modular modelling approach that considers the functional coupling of modules representing components of the genome, the transcriptome, and the proteome in the form of an executable model. The composable, metadata-containing Petri net modules are organized in a database with version control and accessible through a web interface. The effects of genes and their mutated alleles on downstream components are modelled by gene modules coupled to protein modules through RNA modules by specific interfaces designed for the automatic, database-assisted composition. Automatically assembled models may integrate forward and reverse engineered modules and consider cell type-specific gene expression patterns. Prospects for automatic model generation including its application to systems biology, synthetic biology, and to functional genomics are discussed.
Keywords :
Internet; Petri nets; RNA; biology computing; genomics; meta data; proteomics; user interfaces; RNA modules; Web interface; automatic model generation; biomodel engineering; cell type-specific gene expression patterns; database-assisted composition; downstream components; executable model; formal language; functional genomics; functional modules coupling; genome; metadata-containing Petri net modules; modular modelling approach; module-based approach; proteome; synthetic biology; systems biology; transcriptome; version control; Biological system modeling; Degradation; Mathematical model; Molecular biophysics; Petri nets; Proteins; RNA;
Conference_Titel :
Simulation Conference (WSC), Proceedings of the 2012 Winter
Conference_Location :
Berlin
Print_ISBN :
978-1-4673-4779-2
Electronic_ISBN :
0891-7736
DOI :
10.1109/WSC.2012.6465259