Time hierarchies in the Escherichia coli carbohydrate uptake and metabolism.
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[1] H. Bergmeyer. Methoden der enzymatischen Analyse , 1962 .
[2] J. Knabe. Methoden der enzymatischen Analyse, 3. Auflage. Herausgeb. v. H. U. Bergmeyer, LXXXI, 2353 Seiten in 2 Bänden. Preis DM 460,–, Verlag Chemie, Weinheim/Bergstr., 1974 , 1974 .
[3] L. Baron,et al. Characterization of transmissible genetic elements from sucrose-fermenting Salmonella strains , 1975, Journal of bacteriology.
[4] R. Schmitt,et al. Plasmid-mediated uptake and metabolism of sucrose by Escherichia coli K-12 , 1982, Journal of bacteriology.
[5] B O Palsson,et al. Mathematical modelling of dynamics and control in metabolic networks. I. On Michaelis-Menten kinetics. , 1984, Journal of theoretical biology.
[6] John W. Hearne,et al. Sensitivity analysis of parameter combinations , 1985 .
[7] P. Postma,et al. Phosphoenolpyruvate:carbohydrate phosphotransferase system of bacteria. , 1985, Microbiological reviews.
[8] Lennart Ljung,et al. System Identification: Theory for the User , 1987 .
[9] A Danchin,et al. The ptsH, ptsI, and crr genes of the Escherichia coli phosphoenolpyruvate-dependent phosphotransferase system: a complex operon with several modes of transcription , 1988, Journal of bacteriology.
[10] Axel Munack,et al. On-Line Application of Parameter Estimation Accuracy to Biotechnical Processes , 1990, 1990 American Control Conference.
[11] H. Aiba,et al. A lowered concentration of cAMP receptor protein caused by glucose is an important determinant for catabolite repression in Escherichia coli , 1993, Molecular microbiology.
[12] J. Liao,et al. Pathway analysis, engineering, and physiological considerations for redirecting central metabolism. , 1996, Biotechnology and bioengineering.
[13] S. Leibler,et al. Robustness in simple biochemical networks , 1997, Nature.
[14] H. Takahashi,et al. Inducer exclusion in Escherichia coli by non‐PTS substrates: the role of the PEP to pyruvate ratio in determining the phosphorylation state of enzyme IIAGlc , 1998, Molecular microbiology.
[15] P. Postma,et al. CRP down-regulates adenylate cyclase activity by reducing the level of phosphorylated IIAGlc, the glucose-specific phosphotransferase protein, in Escherichia coli , 1998, Molecular and General Genetics MGG.
[16] J. Plumbridge,et al. Expression of ptsG, the gene for the major glucose PTS transporter in Escherichia coli, is repressed by Mlc and induced by growth on glucose , 1998, Molecular microbiology.
[17] A. Agrawal,et al. New institute to study systems biology , 1999, Nature Biotechnology.
[18] I Rojdestvenski,et al. Robustness and time-scale hierarchy in biological systems. , 1999, Bio Systems.
[19] H. Westerhoff,et al. Understanding Glucose Transport by the Bacterial Phosphoenolpyruvate:Glycose Phosphotransferase System on the Basis of Kinetic Measurements in Vitro * , 2000, The Journal of Biological Chemistry.
[20] W. Boos,et al. Signal transduction between a membrane‐bound transporter, PtsG, and a soluble transcription factor, Mlc, of Escherichia coli , 2000, The EMBO journal.
[21] J. Lengeler,et al. Glucose Transporter Mutants of Escherichia coli K-12 with Changes in Substrate Recognition of IICBGlc and Induction Behavior of theptsG Gene , 2000, Journal of bacteriology.
[22] H. Aiba,et al. A novel regulatory role of glucose transporter of Escherichia coli: membrane sequestration of a global repressor Mlc , 2000, The EMBO journal.
[23] E. Gilles,et al. The organization of metabolic reaction networks. II. Signal processing in hierarchical structured functional units. , 2001, Metabolic engineering.
[24] E D Gilles,et al. Modeling of inducer exclusion and catabolite repression based on a PTS-dependent sucrose and non-PTS-dependent glycerol transport systems in Escherichia coli K-12 and its experimental verification. , 2001, Journal of biotechnology.
[25] E. Gilles,et al. The organization of metabolic reaction networks. III. Application for diauxic growth on glucose and lactose. , 2001, Metabolic engineering.
[26] Eric Bullinger,et al. Biosystems Engineering: Applying methods from systems theory to biological systems , 2001 .
[27] S. Schuster,et al. Metabolic network structure determines key aspects of functionality and regulation , 2002, Nature.
[28] Flux Control of the Bacterial Phosphoenolpyruvate:Glucose Phosphotransferase System and the Effect of Diffusion , 2004, Molecular Biology Reports.