• DocumentCode
    1389691
  • Title

    Stochastic Gene Expression Modeling with Hill Function for Switch-Like Gene Responses

  • Author

    Kim, Haseong ; Gelenbe, Erol

  • Author_Institution
    Dept. of Electr. & Electron. Eng., Imperial Coll. London, London, UK
  • Volume
    9
  • Issue
    4
  • fYear
    2012
  • Firstpage
    973
  • Lastpage
    979
  • Abstract
    Gene expression models play a key role to understand the mechanisms of gene regulation whose aspects are grade and switch-like responses. Though many stochastic approaches attempt to explain the gene expression mechanisms, the Gillespie algorithm which is commonly used to simulate the stochastic models requires additional gene cascade to explain the switch-like behaviors of gene responses. In this study, we propose a stochastic gene expression model describing the switch-like behaviors of a gene by employing Hill functions to the conventional Gillespie algorithm. We assume eight processes of gene expression and their biologically appropriate reaction rates are estimated based on published literatures. We observed that the state of the system of the toggled switch model is rarely changed since the Hill function prevents the activation of involved proteins when their concentrations stay below a criterion. In ScbA-ScbR system, which can control the antibiotic metabolite production of microorganisms, our modified Gillespie algorithm successfully describes the switch-like behaviors of gene responses and oscillatory expressions which are consistent with the published experimental study.
  • Keywords
    biochemistry; cellular biophysics; genetics; microorganisms; molecular biophysics; proteins; stochastic processes; Gillespie algorithm; Hill function; ScbA-ScbR system; antibiotic metabolite production; biologically appropriate reaction rates; microorganisms; oscillatory expressions; proteins; stochastic gene expression modeling; switch-like gene response; toggled switch model; Degradation; Equations; Gene expression; Mathematical model; Proteins; Stochastic processes; Switches; Gillespie algorithm.; Stochastic gene expression modeling; gene regulatory networks; switch-like gene responses; Algorithms; Bacterial Proteins; Computational Biology; DNA-Binding Proteins; Gene Expression Regulation, Bacterial; Gene Regulatory Networks; Models, Genetic; Stochastic Processes; Streptomyces coelicolor;
  • fLanguage
    English
  • Journal_Title
    Computational Biology and Bioinformatics, IEEE/ACM Transactions on
  • Publisher
    ieee
  • ISSN
    1545-5963
  • Type

    jour

  • DOI
    10.1109/TCBB.2011.153
  • Filename
    6095507