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Atomistic insight into the origin of the temperature-dependence of kinetic isotope effects and H-tunnelling in enzyme systems is revealed through combined experimental studies and biomolecular simulation.

Authors :
Hay S
Pudney C
Hothi P
Johannissen LO
Masgrau L
Pang J
Leys D
Sutcliffe MJ
Scrutton NS
Source :
Biochemical Society transactions [Biochem Soc Trans] 2008 Feb; Vol. 36 (Pt 1), pp. 16-21.
Publication Year :
2008

Abstract

The physical basis of the catalytic power of enzymes remains contentious despite sustained and intensive research efforts. Knowledge of enzyme catalysis is predominantly descriptive, gained from traditional protein crystallography and solution studies. Our goal is to understand catalysis by developing a complete and quantitative picture of catalytic processes, incorporating dynamic aspects and the role of quantum tunnelling. Embracing ideas that we have spearheaded from our work on quantum mechanical tunnelling effects linked to protein dynamics for H-transfer reactions, we review our recent progress in mapping macroscopic kinetic descriptors to an atomistic understanding of dynamics linked to biological H-tunnelling reactions.

Details

Language :
English
ISSN :
0300-5127
Volume :
36
Issue :
Pt 1
Database :
MEDLINE
Journal :
Biochemical Society transactions
Publication Type :
Academic Journal
Accession number :
18208377
Full Text :
https://doi.org/10.1042/BST0360016