3 items tagged with 'Teusink'.
No description specified
Creator: Stuey Owen
Submitter: Stuey Owen
Model type: Partial differential equations (PDE)
Model format: BioPAX
Environment: JWS Online
Organism: Enterococcus faecalis
Investigations: No Investigations
Studies: No Studies
Assays: No Assays
Created: 31st Oct 2011 at 12:42, Last updated: 20th Dec 2013 at 16:20
No description specified
Creator: Jacky Snoep
Submitter: Guest
Model type: Ordinary differential equations (ODE)
Model format: SBML
Environment: Not specified
Organism: Callimico goeldii
Investigations: Growth control of the eukaryote cell: a systems...
Created: 3rd Jan 2013 at 16:11, Last updated: 15th Jan 2013 at 10:33
Abstract (Expand)
This paper examines whether the in vivo behavior of yeast glycolysis can be understood in terms of the in vitro kinetic properties of the constituent enzymes. In nongrowing, anaerobic, compressed … Saccharomyces cerevisiae the values of the kinetic parameters of most glycolytic enzymes were determined. For the other enzymes appropriate literature values were collected. By inserting these values into a kinetic model for glycolysis, fluxes and metabolites were calculated. Under the same conditions fluxes and metabolite levels were measured. In our first model, branch reactions were ignored. This model failed to reach the stable steady state that was observed in the experimental flux measurements. Introduction of branches towards trehalose, glycogen, glycerol and succinate did allow such a steady state. The predictions of this branched model were compared with the empirical behavior. Half of the enzymes matched their predicted flux in vivo within a factor of 2. For the other enzymes it was calculated what deviation between in vivo and in vitro kinetic characteristics could explain the discrepancy between in vitro rate and in vivo flux.
Authors: Firstname Lastname, J Passarge, C A Reijenga, E Esgalhado, C C van der Weijden, M Schepper, M C Walsh, B M Bakker, K van Dam, H V Westerhoff, Firstname Lastname
Date Published: 22nd Aug 2000
Publication Type: Not specified
PubMed ID: 10951190
Citation:
Created: 9th Jul 2010 at 08:16, Last updated: 24th Mar 2022 at 10:39