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  4. Ligand Discrimination in Myoglobin from Linear-Scaling DFT+U
 
research article

Ligand Discrimination in Myoglobin from Linear-Scaling DFT+U

Cole, Daniel J.
•
O'Regan, David D.  
•
Payne, Mike C.
2012
The Journal of Physical Chemistry Letters

Myoglobin modulates the binding of diatomic molecules to its heme group via hydrogen-bonding and steric interactions with neighboring residues, and is an important benchmark for computational studies of biomolecules. We have performed calculations on the heme binding site and a significant proportion of the protein environment (more than 1000 atoms) using linear-scaling density functional theory and the DFT+U method to correct for self-interaction errors associated with localized 3d states. We confirm both the hydrogen-bonding nature of the discrimination effect (3.6 kcal/mol) and assumptions that the relative strain energy stored in the protein is low (less than 1 kcal/mol). Our calculations significantly widen the scope for tackling problems in drug design and enzymology, especially in cases where electron localization, allostery, or long-ranged polarization influence ligand binding and reaction.

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Type
research article
DOI
10.1021/jz3004188
Web of Science ID

WOS:000305092500005

Author(s)
Cole, Daniel J.
O'Regan, David D.  
Payne, Mike C.
Date Issued

2012

Published in
The Journal of Physical Chemistry Letters
Volume

3

Start page

1448

End page

1452

Subjects

Density-Functional Theory

•

Co

•

Protein

•

O-2

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
IMX  
Available on Infoscience
July 13, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/83876
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