Single-Biomolecule Kinetics: The Art of Studying a Single Enzyme

Author:

Claessen Victor I.1,Engelkamp Hans2,Christianen, Peter C.M.2,Maan Jan C.2,Nolte Roeland J.M.1,Blank Kerstin1,Rowan Alan E.1

Affiliation:

1. Department of Molecular Materials, Institute for Molecules and Materials, Radboud University, Nijmegen 6525 ED, The Netherlands;

2. High Field Magnet Laboratory, Institute for Molecules and Materials, Radboud University, Nijmegen 6525 ED, The Netherlands;,

Abstract

The potential of single-enzyme studies to unravel the complex energy landscape of these polymeric catalysts is the next critical step in enzymology. From its inception in Rotman's emulsion experiments in the 1960s, the field of single-molecule enzymology has now advanced into the time-resolved age. Technological advances have enabled individual enzymatic turnover reactions to be observed with a millisecond time resolution. A number of initial studies have revealed the underlying static and dynamic disorder in the catalytic rates originating from conformational fluctuations. Although these experiments are still in their infancy, they may be able to relate the topography of the energy landscape to the biological function and regulation of enzymes. This review summarizes some of the experimental techniques and data-analysis methods that have been used to study individual enzyme molecules in search of a deeper understanding of their kinetics.

Publisher

Annual Reviews

Subject

Analytical Chemistry

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