First-principles molecular dynamics simulations of models for the myoglobin active center

被引:0
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作者
Rovira, Carme [1 ]
Parrinello, Michele [2 ]
机构
[1] Dept. de Quim. Física, Facultat de Química, Martí i Franquès 1, 08028 Barcelona, Spain
[2] Max-Planck-Inst. Festkorperforschung, Heisenbergstrasse 1, 70569 Stuttgart, Germany
关键词
Binding energy - Carbon monoxide - Computer simulation - Molecular dynamics - Nitrogen oxides - Oxygen - Porphyrins - Thermal effects;
D O I
10.1002/1097-461X(2000)80:63.0.CO;2-E
中图分类号
学科分类号
摘要
A quantitative study of the interplay between the structure, energy, and dynamics of heme models is presented. Our calculations are based on density functional theory (DFT) combined with molecular dynamics (MD), within the Car-Parrinello scheme. The systems analyzed are the five-coordinated FeP-AB (FeP = iron-porphyrin, AB = CO, NO, O2) and Fe(Heme)-O2, the six-coordinated FeP(Im)-AB (Im = imidazole), and the picket fence-oxygen complex, Fe(TpivP)(2me-Im)-O2. Starting from the optimized structures of these systems, we analyze the trends in their ligand binding properties. Our calculations show the peculiar trans repulsive effect of the NO ligand when binding to iron-porphyrin (it elongates and weakens the trans axial ligand bond), in contrast with the synergistic effect of CO and O2. Energy variations associated to the rotation of the O2 molecule around the Fe-O bond in Fe(TpivP)(2me-Im)-O2 are analyzed, in comparison with that of a simpler FeP(Im)-O2 model. A small energy barrier (2 ligand overcomes this barrier at room temperature: It undergoes large-amplitude oscillations within one porphyrin quadrant, jumping to another one in the picosecond timescale. In contrast, the CO dynamics is characterized by small, albeit extremely complex, displacements around its equilibrium position. Small fluctuations of the FeCO tilt (δ) and bend (θ) angles (δ&le8°, θ&le13°) are observed.
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