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FEBS Letters|July 1, 1996
Strong control on the transit time in metabolic channellingB N Kholodenko, N Sakamoto, J Puigjaner, et al.FEBS Letters|October 7, 1997
Quantification of information transfer via cellular signal transduction pathwaysB N Kholodenko, J B Hoek, H V Westerhoff, et al.Molekuliarnaia Biologiia|January 5, 2002
[Kinetic modeling of energy metabolism and generation of active forms of oxygen in hepatocyte mitochondria]O V Demin, I I Gorianin, B N Kholodenko, et al.Biophysical Chemistry|November 1, 1995
Defining control coefficients in non-ideal metabolic pathwaysB N Kholodenko, D Molenaar, S Schuster, et al.Proceedings of the National Academy of Sciences of the United States of America|September 2, 1998
Implications of macromolecular crowding for signal transduction and metabolite channelingJ M Rohwer, P W Postma, B N Kholodenko, et al.Biochimica Et Biophysica Acta|April 18, 1998
Control analysis of metabolic systems involving quasi-equilibrium reactionsB N Kholodenko, S Schuster, J Garcia, et al.FEBS Letters|July 10, 1995
Composite control of cell function: metabolic pathways behaving as single control unitsB N Kholodenko, S Schuster, J M Rohwer, et al.European Journal of Biochemistry|March 15, 1993
The sum of the control coefficients of all enzymes on the flux through a group-transfer pathway can be as high as twoK van Dam, J van der Vlag, B N Kholodenko, et al.Biotechnology and Bioengineering|April 1, 1999
Metabolic design: how to engineer a living cell to desired metabolite concentrations and fluxesB N Kholodenko, M Cascante, J B Hoek, et al.Biochemistry and Molecular Biology International|August 1, 1994
How to determine control of growth rate in a chemostat. Using metabolic control analysis to resolve the paradoxJ L Snoep, P R Jensen, P Groeneveld, et al.Pageof 22