Scinovex
article Open Access

A Linear Steady-State Treatment of Enzymatic Chains. General Properties, Control and Effector Strength

European Journal of Biochemistry · 1974 · Vol. 42(1) · pp. 89–95
Reinhart HeinrichTom A. Rapoport

Abstract

A theoretical analysis of linear enzymatic chains is presented. By linear approximation simple analytical solutions can be obtained for the metabolite concentrations and the flux through the chain for steady-state conditions. The equations are greatly simplified if the common kinetic constants are expressed as functions of two parameters, i.e. the thermodynamic equilibrium constant and the “characteristic time”. Three cardinal terms are proposed for the quantitative description of enzyme systems. The first two are the control strength and the control matrix; these indicate the dependence of the flux and the metabolite concentrations, respectively, on the kinetic properties of a given enzyme. The third is the effector strength, which defines the dependence of the velocity of an enzyme on the concentration of an effector; it expresses the importance of an effector. By linear approximation simple analytical expressions were derived for the control strength, the control matrix and the mass-action ratios. The effector strength was calculated for two cases: for a competitive inhibitor and for allosteric effectors according to the Monod (1965) model. The influence of an effector on the concentrations of the metabolites was considered.

Hemoglobin structure and functionProtein Structure and DynamicsErythrocyte Function and PathophysiologyEffectorSteady state (chemistry)ChemistryThermodynamicsMetaboliteMatrix (chemical analysis)Flux (metallurgy)PhysicsChromatographyBiochemistry

MeSH terms

Allosteric RegulationBinding, CompetitiveComputersEnzymesHomeostasisKineticsMathematicsModels, BiologicalThermodynamicsTime Factors
Citations
1,400
FWCI
1.69
field-weighted impact
References
29
Percentile
83%
vs. same field & year
Citations per year
Cited by
Effects of Water Deficits on Carbon Assimilation
Journal of Experimental Botany · 1991 · 1,101 citations
Metabolomics – the link between genotypes and phenotypes
Plant Molecular Biology · 2002 · 3,322 citations
A hierarchy of ATP-consuming processes in mammalian cells
Biochemical Journal · 1995 · 910 citations
References
Self‐Oscillations in Glycolysis 1. A Simple Kinetic Model
European Journal of Biochemistry · 1968 · 773 citations
On the nature of allosteric transitions: A plausible model
Journal of Molecular Biology · 1965 · 8,835 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.