Literature DB >> 28938803

Hybrid models for chemical reaction networks: Multiscale theory and application to gene regulatory systems.

Stefanie Winkelmann1, Christof Schütte1.   

Abstract

Well-mixed stochastic chemical kinetics are properly modeled by the chemical master equation (CME) and associated Markov jump processes in molecule number space. If the reactants are present in large amounts, however, corresponding simulations of the stochastic dynamics become computationally expensive and model reductions are demanded. The classical model reduction approach uniformly rescales the overall dynamics to obtain deterministic systems characterized by ordinary differential equations, the well-known mass action reaction rate equations. For systems with multiple scales, there exist hybrid approaches that keep parts of the system discrete while another part is approximated either using Langevin dynamics or deterministically. This paper aims at giving a coherent overview of the different hybrid approaches, focusing on their basic concepts and the relation between them. We derive a novel general description of such hybrid models that allows expressing various forms by one type of equation. We also check in how far the approaches apply to model extensions of the CME for dynamics which do not comply with the central well-mixed condition and require some spatial resolution. A simple but meaningful gene expression system with negative self-regulation is analysed to illustrate the different approximation qualities of some of the hybrid approaches discussed. Especially, we reveal the cause of error in the case of small volume approximations.

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Year:  2017        PMID: 28938803     DOI: 10.1063/1.4986560

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  2 in total

1.  Modeling of Chemical Reaction Systems with Detailed Balance Using Gradient Structures.

Authors:  Jan Maas; Alexander Mielke
Journal:  J Stat Phys       Date:  2020-11-06       Impact factor: 1.548

2.  The blending region hybrid framework for the simulation of stochastic reaction-diffusion processes.

Authors:  Christian A Yates; Adam George; Armand Jordana; Cameron A Smith; Andrew B Duncan; Konstantinos C Zygalakis
Journal:  J R Soc Interface       Date:  2020-10-21       Impact factor: 4.118

  2 in total

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