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Time dependent asymptotic analysis of the gene regulatory network of the AcrAB-TolC efflux pump system in gram-negative bacteria.
Youlden, George H; Ricci, Vito; Wang-Kan, Xuan; Piddock, Laura J V; Jabbari, Sara; King, John R.
Affiliation
  • Youlden GH; School of Mathematics, University of Birmingham, Birmingham, B15 2TT, UK. ghy245@student.bham.ac.uk.
  • Ricci V; School of Mathematical Sciences, University of Nottingham, Nottingham, NG7 2RD, UK. ghy245@student.bham.ac.uk.
  • Wang-Kan X; Institute of Microbiology and Infection, University of Birmingham, Birmingham, B15 2TT, UK. ghy245@student.bham.ac.uk.
  • Piddock LJV; Institute of Microbiology and Infection, University of Birmingham, Birmingham, B15 2TT, UK.
  • Jabbari S; Institute of Microbiology and Infection, University of Birmingham, Birmingham, B15 2TT, UK.
  • King JR; Gyrd-Hansen Group, Ludwig Institute for Cancer Research, Nuffield Department of Medicine, University of Oxford, Oxford, OX3 7DQ, UK.
J Math Biol ; 82(4): 31, 2021 03 10.
Article in En | MEDLINE | ID: mdl-33694073
Efflux pumps are a mechanism of intrinsic and evolved resistance in bacteria. If an efflux pump can expel an antibiotic so that its concentration within the cell is below a killing threshold the bacteria are resistant to the antibiotic. Efflux pumps may be specific or they may pump various different substances. This is why many efflux pumps confer multi drug resistance (MDR). In particular over expression of the AcrAB-TolC efflux pump system confers MDR in both Salmonella and Escherichia coli. We consider the complex gene regulation network that controls expression of genes central to controlling the efflux associated genes acrAB and acrEF in Salmonella. We present the first mathematical model of this gene regulatory network in the form of a system of ordinary differential equations. Using a time dependent asymptotic analysis, we examine in detail the behaviour of the efflux system on various different timescales. Asymptotic approximations of the steady states provide an analytical comparison of targets for efflux inhibition.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Escherichia coli Proteins / Gene Regulatory Networks / Models, Biological Language: En Journal: J Math Biol Year: 2021 Type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Escherichia coli Proteins / Gene Regulatory Networks / Models, Biological Language: En Journal: J Math Biol Year: 2021 Type: Article