Reliable and efficient solution of genome-scale models of Metabolism and macromolecular Expression; ; Fleming, Ronan MT et alin Scientific Reports (2017) Detailed reference viewed: 286 (20 UL) Conditions for duality between fluxes and concentrations in biochemical networksFleming, Ronan MT ; ; Thiele, Ines et alin Journal of Theoretical Biology (2016), 409(21), 1-10 Detailed reference viewed: 358 (11 UL) Do Genome-scale Models Need Exact Solvers or Clearer Standards?; ; Bauer, Eugen et alin Molecular Systems Biology (2015), 11(10), 1 Detailed reference viewed: 1097 (21 UL) Existence of Positive Steady States for Mass Conserving and Mass-Action Chemical Reaction Networks with a Single Terminal-Linkage ClassFleming, Ronan MT ; ; et alin arXiv preprint arXiv:1105.2359 (2013) We establish that mass conserving, single terminal-linkage networks of chemical reactions admit positive steady states regardless of network deficiency and the choice of reaction rate constants. This ... [more ▼] We establish that mass conserving, single terminal-linkage networks of chemical reactions admit positive steady states regardless of network deficiency and the choice of reaction rate constants. This result holds for closed systems without material exchange across the boundary, as well as for open systems with material exchange at rates that satisfy a simple sufficient and necessary condition. Our proof uses a fixed point of a novel convex optimization formulation to find the steady state behavior of chemical reaction networks that satisfy the law of mass-action kinetics. A fixed point iteration can be used to compute these steady states, and we show that it converges for weakly reversible homogeneous systems. We report the results of our algorithm on numerical experiments. [less ▲] Detailed reference viewed: 193 (4 UL) |
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