Frozen density functional free energy simulations of redox proteins: Computational studies of the reduction potential of plastocyanin and rusticyanin

被引:222
作者
Olsson, MHM [1 ]
Hong, GY [1 ]
Warshel, A [1 ]
机构
[1] Univ So Calif, Dept Chem, Los Angeles, CA 90089 USA
关键词
D O I
10.1021/ja0212157
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The evaluation of reduction potentials of proteins by ab initio approaches presents a major challenge for computational chemistry. This is addressed in the present investigation by reporting detailed calculations of the reduction potentials of the blue copper proteins plastocyanin and rusticyanin using the QM/MM all-atom frozen density functional theory, FDFT, method. The relevant ab initio free energies are evaluated by using a classical reference potential. This approach appears to provide a general consistent and effective way for reproducing the configurational ensemble needed for consistent ab initio free energy calculations. The FDFT formulation allows us to treat a large part of the protein quantum mechanically by a consistently coupled QM/QM/MM embedding method while still retaining a proper configurational sampling. To establish the importance of proper configurational sampling and the need for a complete representation of the protein+solvent environment, we also consider several classical approaches. These include the semi-macroscopic PDLD/S-LRA method and classical all-atom simulations with and without a polarizable force field. The difference between the reduction potentials of the two blue copper proteins is reproduced in a reasonable way, and its origin is deduced from the different calculations. It is found that the protein permanent dipole tunes down the reduction potential for plastocyanin compared to the active site in regular water solvent, whereas in rusticyanin it is instead tuned up. This electrostatic environment, which is the major effect determining the reduction potential, is a property of the entire protein and solvent system and cannot be ascribed to any particular single interaction.
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页码:5025 / 5039
页数:15
相关论文
共 66 条
[1]  
ADMAN ET, 1991, ADV PROTEIN CHEM, V42, P145
[2]  
AQVIST J, 1990, J AM CHEM SOC, V112, P2860
[3]   Hybrid ab initio quantum mechanics molecular mechanics calculations of free energy surfaces for enzymatic reactions:: The nucleophilic attack in subtilisin [J].
Bentzien, J ;
Muller, RP ;
Florián, J ;
Warshel, A .
JOURNAL OF PHYSICAL CHEMISTRY B, 1998, 102 (12) :2293-2301
[4]  
BERSUKER IB, 2001, COMPUTATIONAL CHEM R, P69
[5]   NMR solution structure of Cu(I) rusticyanin from Thiobacillus ferrooxidans: Structural basis for the extreme acid stability and redox potential [J].
Botuyan, MV ;
ToyPalmer, A ;
Chung, J ;
Blake, RC ;
Beroza, P ;
Case, DA ;
Dyson, HJ .
JOURNAL OF MOLECULAR BIOLOGY, 1996, 263 (05) :752-767
[6]  
Chu Z.T., 2002, MOLARIS VERSION BETA
[7]   CONTROL OF THE REDOX POTENTIAL OF CYTOCHROME-C AND MICROSCOPIC DIELECTRIC EFFECTS IN PROTEINS [J].
CHURG, AK ;
WARSHEL, A .
BIOCHEMISTRY, 1986, 25 (07) :1675-1681
[8]   A new molecular mechanics force field for the oxidized form of blue copper proteins [J].
Comba, P ;
Remenyi, R .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 2002, 23 (07) :697-705
[9]  
Comba P, 1997, NATO ASI 3 HIGH TECH, V41, P21
[10]   Hybrid quantum mechanics/molecular mechanics studies of the active site of the blue copper proteins amicyanin and rusticyanin [J].
Comba, P ;
Lledós, A ;
Maseras, F ;
Remenyi, R .
INORGANICA CHIMICA ACTA, 2001, 324 (1-2) :21-26