A stochastic automaton shows how enzyme assemblies may contribute to metabolic efficiency
Open Access
- 25 March 2008
- journal article
- research article
- Published by Springer Nature in BMC Systems Biology
- Vol. 2 (1), 27
- https://doi.org/10.1186/1752-0509-2-27
Abstract
The advantages of grouping enzymes into metabolons and into higher order structures have long been debated. To quantify these advantages, we have developed a stochastic automaton that allows experiments to be performed in a virtual bacterium with both a membrane and a cytoplasm. We have investigated the general case of transport and metabolism as inspired by the phosphoenolpyruvate:sugar phosphotransferase system (PTS) for glucose importation and by glycolysis. We show that PTS and glycolytic metabolons can increase production of pyruvate eightfold at low concentrations of phosphoenolpyruvate. A fourfold increase in the numbers of enzyme EI led to a 40% increase in pyruvate production, similar to that observed in vivo in the presence of glucose. Although little improvement resulted from the assembly of metabolons into a hyperstructure, such assembly can generate gradients of metabolites and signaling molecules. in silico experiments may be performed successfully using stochastic automata such as HSIM (Hyperstructure Simulator) to help answer fundamental questions in metabolism about the properties of molecular assemblies and to devise strategies to modify such assemblies for biotechnological ends.Keywords
This publication has 34 references indexed in Scilit:
- Genetic Evidence for a Link Between Glycolysis and DNA ReplicationPLOS ONE, 2007
- Functional Taxonomy of Bacterial HyperstructuresMicrobiology and Molecular Biology Reviews, 2007
- Steady‐state kinetic behaviour of functioning‐dependent structuresThe FEBS Journal, 2006
- Modeling Biochemical Networks: A Cellular-Automata ApproachChemistry & Biodiversity, 2005
- Stochastic approaches for modelling in vivo reactionsComputational Biology and Chemistry, 2004
- The BioDyn language and simulator. Application to an immune response and E. coli and phage interaction pJournal of Biological Physics and Chemistry, 2002
- HSIM: a simulation programme to study large assemblies of proteinsJournal of Biological Physics and Chemistry, 2002
- Understanding Glucose Transport by the Bacterial Phosphoenolpyruvate:Glycose Phosphotransferase System on the Basis of Kinetic Measurements in VitroJournal of Biological Chemistry, 2000
- Complexities of metabolic regulationTrends in Biochemical Sciences, 1994
- The Tentative Identification in Escherichia coli of a Multienzyme Complex with Glycolytic ActivityEuropean Journal of Biochemistry, 1976