Enzyme-substrate binding interaction energies and their application to the cytochrome P450 system

被引:4
作者
Lewis, David F. V. [1 ]
Ito, Yuko [2 ]
Goldfarb, Peter S. [1 ]
机构
[1] Univ Surrey, Sch Biomed & Mol Sci, Surrey GU2 7XH, England
[2] Kyushu Inst Technol, Dept Biosci & Bioinformat, Iizuka, Fukuoka 8208502, Japan
关键词
cytochrome P450; substrate-binding energy calculation;
D O I
10.2174/157340908784533274
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
The various contributions to binding energies for cytochrome P450 enzyme-substrate interactions are discussed in the light of intermolecular forces of attraction in biological systems. These energies include: electrostatic, van der Waals, hydrogen bond, pi-pi stacking and desolvation processes. These individual components can be used to estimate the binding energies of P450 substrates, and the example of camphor in CYP101 is employed to demonstrate the particular merits of these approaches. The various methods of calculating desolvation energies are demonstrated for camphor binding to CYP101, together with estimation of the hydrogen bond energy associated with this process as they are thought to be the major contributions. The binding of warfarin to CYP2C9 is also discussed and evaluated in the light of the estimations for camphor binding to CYP101, thus indicating a degree of comparison between examples of bacterial and human P450-substrate interactions. The various force fields ( Amber, Tripos and AutoDock) employed in energy calculations are also compared, together with typical values for the several individual components to the overall binding energy.
引用
收藏
页码:111 / 122
页数:12
相关论文
共 54 条
[1]   SIMPLE MODEL OF HYDROGEN-BONDING [J].
ALLEN, LC .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1975, 97 (24) :6921-6940
[2]   FUNCTIONAL-GROUP CONTRIBUTIONS TO DRUG RECEPTOR INTERACTIONS [J].
ANDREWS, PR ;
CRAIK, DJ ;
MARTIN, JL .
JOURNAL OF MEDICINAL CHEMISTRY, 1984, 27 (12) :1648-1657
[3]  
ANDREWS PR, 1990, COMPREHENSIVE MED CH, V4, P321
[4]  
[Anonymous], CELL SURFACE DYNAMIC
[5]   THEORETICAL STUDY OF SOLVENT EFFECTS ON CONFORMATIONAL STABILITY OF ACETYLCHOLINE [J].
BEVERIDGE, DL ;
KELLY, MM ;
RADNA, RJ .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1974, 96 (12) :3769-3778
[6]   Prediction of binding constants of protein ligands: A fast method for the prioritization of hits obtained from de novo design or 3D database search programs [J].
Bohm, HJ .
JOURNAL OF COMPUTER-AIDED MOLECULAR DESIGN, 1998, 12 (04) :309-323
[8]   Conformational energy penalties of protein-bound ligands [J].
Bostrom, J ;
Norrby, PO ;
Liljefors, T .
JOURNAL OF COMPUTER-AIDED MOLECULAR DESIGN, 1998, 12 (04) :383-396
[9]   A method for including protein flexibility in protein-ligand docking: Improving tools for database mining and virtual screening [J].
Broughton, HB .
JOURNAL OF MOLECULAR GRAPHICS & MODELLING, 2000, 18 (03) :247-+
[10]  
BUCKINGHAM AD, 1993, INTERMOLECULAR FORCE, P1