TY - JOUR
T1 - A QM/MM study of fluoroaromatic interactions at the binding site of carbonic anhydrase II, using a DFT method corrected for dispersive interactions
AU - Morgado, Claudio A.
AU - Hillier, Ian H.
AU - Burton, Neil A.
AU - McDouall, Joseph J W
N1 - CAN 149:121713 7-3 Enzymes Journal 1463-9076 written in English. 9001-03-0 Role: BSU (Biological study, unclassified), PEP (Physical, engineering or chemical process), PRP (Properties), BIOL (Biological study), PROC (Process) (II; study of fluoroarom. interactions at the binding site of carbonic anhydrase II); 71-43-2 (Benzene); 363-72-4 (Pentafluorobenzene); 367-23-7 (1,2,4-Trifluorobenzene); 392-56-3 (Hexafluorobenzene); 462-06-6 (Fluorobenzene); 540-36-3 (1,4-Difluorobenzene); 2367-82-0 (1,2,4,6-Tetrafluorobenzene); 235088-46-7; 235088-49-0; 235088-52-5; 235088-65-0 Role: BSU (Biological study, unclassified), PEP (Physical, engineering or chemical process), PRP (Properties), BIOL (Biological study), PROC (Process) (study of fluoroarom. interactions at the binding site of carbonic anhydrase II)
PY - 2008
Y1 - 2008
N2 - The interaction of the fluorinated benzyl ring of a series of inhibitors of carbonic anhydrase II (CAII), fluorine-substituted N-(4-sulfamylbenzoyl) benzylamines (SBB), with nearby residues in the active site has been studied using a hybrid QM/MM model. To account for the important dispersive interactions between the fluorinated benzenes and these residues, a density functional method with an empirical dispersive term, (DFT-D), is used as the QM part of the model. The major interactions are found to be between the substituted benzenes and the aromatic ring of a nearby phenylalanine residue. However, the intermolecular separations between these two groups span a greater range than that found for comparable interactions between isolated molecules, showing the importance of interactions with other residues, which have been quantified. A decomposition of the interaction energy between the fluorobenzenes and each residue has been carried out which shows the dispersive interactions to be dominant. This work has shown that a QM(DFT-D)/MM model is a computationally feasible and accurate way of studying substrate-protein interactions. © the Owner Societies.
AB - The interaction of the fluorinated benzyl ring of a series of inhibitors of carbonic anhydrase II (CAII), fluorine-substituted N-(4-sulfamylbenzoyl) benzylamines (SBB), with nearby residues in the active site has been studied using a hybrid QM/MM model. To account for the important dispersive interactions between the fluorinated benzenes and these residues, a density functional method with an empirical dispersive term, (DFT-D), is used as the QM part of the model. The major interactions are found to be between the substituted benzenes and the aromatic ring of a nearby phenylalanine residue. However, the intermolecular separations between these two groups span a greater range than that found for comparable interactions between isolated molecules, showing the importance of interactions with other residues, which have been quantified. A decomposition of the interaction energy between the fluorobenzenes and each residue has been carried out which shows the dispersive interactions to be dominant. This work has shown that a QM(DFT-D)/MM model is a computationally feasible and accurate way of studying substrate-protein interactions. © the Owner Societies.
KW - Enzyme functional sites (active
KW - study of fluoroarom. interactions at the binding site of carbonic anhydrase II)
KW - Enzyme functional sites (inhibitor-binding
KW - Density functional theory
KW - Molecular association
KW - Molecular mechanics
KW - Potential energy
KW - Quantum mechanics (study of fluoroarom. interactions at the binding site of carbonic anhydrase II)
KW - Aromatic compounds Role: BSU (Biological study, unclassified), PEP (Physical, engineering or chemical process), PRP (Properties), BIOL (Biological study), PROC (Process) (study of fluoroarom. interactions at the binding site of carbonic anhydrase II)
KW - carbonic anhydrase II QM MM DFT fluoroarom
U2 - 10.1039/b715514j
DO - 10.1039/b715514j
M3 - Article
SN - 1463-9076
VL - 10
SP - 2706
EP - 2714
JO - Physical Chemistry Chemical Physics
JF - Physical Chemistry Chemical Physics
IS - 19
ER -