Membrane systems were introduced as models of computation inspired by the structure and functioning of biological cells. Recently, membrane systems have also been shown to be suitable to model cellular processes. We introduce a new model called Membrane Systems with Peripheral and Integral Proteins. The model has compartments enclosed by membranes, floating objects, objects associated to the internal and external surfaces of the membranes and also objects integral to the membranes. The floating objects can be processed within the compartments and can interact with the objects associated to the membranes. The model can be used to represent cellular processes that involve compartments, surface and integral membrane proteins, transport and processing of chemical substances. As examples we model a circadian clock and the G-protein cycle in yeast saccharomyces cerevisiae and present a quantitative analysis using an implemented simulator. © Springer-Verlag Berlin Heidelberg 2006.

Modelling cellular processes using membrane systems with peripheral and integral proteins / Cavaliere, M.; Sedwards, S.. - 4210:(2006), pp. 108-126. (Intervento presentato al convegno International Conference on Computational Methods in Systems Biology, CMSB 2006 tenutosi a Trento, ita nel 2006) [10.1007/11885191_8].

Modelling cellular processes using membrane systems with peripheral and integral proteins

Cavaliere M.;
2006

Abstract

Membrane systems were introduced as models of computation inspired by the structure and functioning of biological cells. Recently, membrane systems have also been shown to be suitable to model cellular processes. We introduce a new model called Membrane Systems with Peripheral and Integral Proteins. The model has compartments enclosed by membranes, floating objects, objects associated to the internal and external surfaces of the membranes and also objects integral to the membranes. The floating objects can be processed within the compartments and can interact with the objects associated to the membranes. The model can be used to represent cellular processes that involve compartments, surface and integral membrane proteins, transport and processing of chemical substances. As examples we model a circadian clock and the G-protein cycle in yeast saccharomyces cerevisiae and present a quantitative analysis using an implemented simulator. © Springer-Verlag Berlin Heidelberg 2006.
2006
International Conference on Computational Methods in Systems Biology, CMSB 2006
Trento, ita
2006
4210
108
126
Cavaliere, M.; Sedwards, S.
Modelling cellular processes using membrane systems with peripheral and integral proteins / Cavaliere, M.; Sedwards, S.. - 4210:(2006), pp. 108-126. (Intervento presentato al convegno International Conference on Computational Methods in Systems Biology, CMSB 2006 tenutosi a Trento, ita nel 2006) [10.1007/11885191_8].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1319966
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