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Stoichiometric design of metabolic networks: multifunctionality, clusters, optimization, weak and strong robustness

, and . Bull. Math. Biol., (2003)

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A Linear Steady-State Treatment of Enzymatic Chains. General Properties, Control and Effector Strength, and . Eur. J. Biochem., (1974)Optimization of glycolysis: A new look at the efficiency of energy coupling, , , , and . Biochem. Educ., (1997)A theory of optimal differential gene expression, , , and . Biosystems., (2004)The regulation of cellular systems, and . Chapman & Hall, (1996)Expanding Metabolic Networks: Scopes of Compounds, Robustness, and Evolution, , and . Journal of molecular evolution, 61 (4): 498--512 (Oct 7, 2005)Expanding metabolic networks: scopes of compounds, robustness, and evolution, , and . J. Mol. Evol., (2005)Stoichiometric design of metabolic networks: multifunctionality, clusters, optimization, weak and strong robustness, and . Bull. Math. Biol., (2003)Prediction of temporal gene expression: Metabolic optimization by re-distribution of enzyme activities, , and . Eur. J. Biochem., (2002)Kinetic and thermodynamic constraints for the structural design of glycolysis, , , , and . Nonlinear Anal. Theory Methods Appl., (1997)Kinetic and thermodynamic principles determining the structural design of ATP-producing systems, and . Bull. Math. Biol., (1998)