Related Experiment Video
Updated: May 29, 2026

Parallel High Throughput Single Molecule Kinetic Assay for Site-Specific DNA Cleavage
Published on: May 6, 2020
Regulation of biochemical reaction rates by flexible tethers
Daniel Reeves1, Keith Cheveralls, Jane Kondev
1Department of Physics, Brandeis University, Waltham, Massachusetts 02454, USA.
Abstract:
We explore how ligand-receptor binding kinetics can be controlled by tethering the receptor to the end of a flexible polymer. The tether confines the diffusive motion of the receptor thus influencing the rate at which it captures ligands that are free in solution. We compute steady-state collision rates between ligand and receptor for this "tethered-capture" mechanism using a combination of analytic and numerical techniques. In doing so, we uncover a dimensionless control parameter, the "opacity," that determines under what conditions and to what extent a tether regulates the ligand-receptor collision rate. We compute the opacity for a number of different tethering scenarios that appear in biology and use these results to predict the affect of changing the length and flexibility of the tether on the rate at which ligands are captured from solution.
Related Concept Videos
Regulation of Metabolism
Feedback Inhibition
Allosteric Regulation
Allosteric Regulation
Factors Influencing the Rate of Chemical Reactions
Concentration and Pressure:
The more particles present within a given space, the more likely those particles are to bump into one another.
Measuring Reaction Rates

