Related Experiment Video
Updated: Jun 13, 2026

Unraveling Entropic Rate Acceleration Induced by Solvent Dynamics in Membrane Enzymes
Published on: January 16, 2016
The analysis of enzymic free energy relationships using kinetic and computational models
1Department of Chemistry, University of Bath, Bath BA2 6AS, UK. i.greig@bath.ac.uk
Abstract:
Free energy relationships are a ubiquitous means of characterizing trends in rates of reaction with changing molecular structure. They may be used to quantify the extent of progress along a reaction coordinate at a reaction's transition state or alternatively the extent of similarity between a reaction's transition state and some reference transformation. This critical review outlines correlative procedures for the treatment of experimentally-determined free energy relationships with a particular focus on enzyme-catalyzed group transfers. The reasons for observed non-linearities in free energy relationships are considered. Attention is paid to the influences of changes in kinetic mechanism (e.g. general-acid catalyzed versus uncatalyzed reactions, and the competition between associative, dissociative and concerted modes of group transfer), changes in rate-determining step and the choice of an appropriate reference reaction. The relationship between experimental data and physical/theoretical models of reactivity is discussed (191 references).
Related Concept Videos
Introduction to Enzyme Kinetics
The experimenter can then plot the initial reaction rate or velocity (Vo) of a given trial against the substrate concentration ([S]) to obtain a graph of the reaction properties. For many enzymatic reactions involving a...
Enzyme Kinetics
Scientists typically study enzyme kinetics with a fixed amount of enzyme in the controlled environment of a test tube. When more reactant, or substrate, is...
Enzymes and Activation Energy
Enzymes and Activation Energy
An Introduction to Free Energy
Free Energy and Equilibrium
Recall that Q is the numerical value of the mass action expression...

