Abstract
Protein conformational dynamics, often associated with static and dynamic inhomogeneities, plays a crucial role in biomolecular functions. It is extremely difficult to characterize such inhomogeneous dynamics in an ensembleaveraged measurement, especially when the protein involves in a multiple-step complex chemical reaction, such as an enzymatic reaction. Single-molecule spectroscopy is a powerful approach to analyze protein conformational dynamics in real time under physiological conditions, providing dynamic perspectives on a molecular-level understanding of protein structure-function mechanisms. In this minireview, we discuss our recent studies on single-molecule enzymatic reaction dynamics and protein conformational dynamics of the T4 lysozyme hydrolyzation reaction of a polysaccharide by a combined approach of single-molecule spectroscopy, molecular dynamics simulation, and theoretical modeling. Detailed characterization of the complex enzymatic reaction dynamics identified the nature of the inhomogeneity and revealed multiple intermediate conformational states associated with the enzyme-substrate complex formation in the multiple-step enzymatic reaction.
Keywords: single-molecule spectroscopy, md simulation, random walk, enzymatic reaction, protein conformational dynamics, t4 lysozyme
Current Pharmaceutical Biotechnology
Title: Single-Molecule Spectroscopy Studies of Conformational Change Dynamics in Enzymatic Reactions
Volume: 5 Issue: 3
Author(s): H. Peter Lu
Affiliation:
Keywords: single-molecule spectroscopy, md simulation, random walk, enzymatic reaction, protein conformational dynamics, t4 lysozyme
Abstract: Protein conformational dynamics, often associated with static and dynamic inhomogeneities, plays a crucial role in biomolecular functions. It is extremely difficult to characterize such inhomogeneous dynamics in an ensembleaveraged measurement, especially when the protein involves in a multiple-step complex chemical reaction, such as an enzymatic reaction. Single-molecule spectroscopy is a powerful approach to analyze protein conformational dynamics in real time under physiological conditions, providing dynamic perspectives on a molecular-level understanding of protein structure-function mechanisms. In this minireview, we discuss our recent studies on single-molecule enzymatic reaction dynamics and protein conformational dynamics of the T4 lysozyme hydrolyzation reaction of a polysaccharide by a combined approach of single-molecule spectroscopy, molecular dynamics simulation, and theoretical modeling. Detailed characterization of the complex enzymatic reaction dynamics identified the nature of the inhomogeneity and revealed multiple intermediate conformational states associated with the enzyme-substrate complex formation in the multiple-step enzymatic reaction.
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Cite this article as:
Lu Peter H., Single-Molecule Spectroscopy Studies of Conformational Change Dynamics in Enzymatic Reactions, Current Pharmaceutical Biotechnology 2004; 5 (3) . https://dx.doi.org/10.2174/1389201043376887
DOI https://dx.doi.org/10.2174/1389201043376887 |
Print ISSN 1389-2010 |
Publisher Name Bentham Science Publisher |
Online ISSN 1873-4316 |

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