Peroxidase activity stabilization of cytochrome P450BM3 by rational analysis of intramolecular electron transfer

被引:38
|
作者
Vidal-Limon, Abraham [1 ]
Aguila, Sergio [2 ]
Ayala, Marcela [1 ]
Batista, Cesar V. [1 ]
Vazquez-Duhalt, Rafael [1 ,2 ]
机构
[1] UNAM, Inst Biotecnol, Cuernavaca 62210, Mor, Mexico
[2] UNAM, Ctr Nanociencias & Nanotecnol, Ensenada, Baja California, Mexico
关键词
Electron-transfer; Molecular mechanics; Peroxidase; P450; QM/MM; Stabilization; EFFECTIVE CORE POTENTIALS; COMPOUND-I; C PEROXIDASE; PARAMAGNETIC-RESONANCE; MOLECULAR CALCULATIONS; ASCORBATE PEROXIDASE; DIRECTED EVOLUTION; E-PATHWAY; HEME; QM/MM;
D O I
10.1016/j.jinorgbio.2013.01.009
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Combined quantum mechanical and molecular mechanical (QM/MM) calculations were used to explore the electron pathway involved in the suicide inactivation of cytochrome P450(BM3) from Bacillus megaterium. The suicide inactivation is a common phenomenon observed for heme peroxidases, in which the enzyme is inactivated as a result of self-oxidation mediated by highly oxidizing enzyme intermediates formed during the catalytic cycle. The selected model was a mutant comprising only the heme domain (CYPBM3 21B3) that had been previously evolved to efficiently catalyze hydroxylation reactions with hydrogen peroxide (H2O2) as electron acceptor. An extensive mapping of residues involved in electron transfer routes was obtained from density functional calculations on activated heme (i.e. Compound I) and selected amino acid residues. Identification of oxidizable residues (electron donors) was performed by selectively activating/deactivating different quantum regions. This method allowed a rational identification of key oxidizable targets in order to replace them for less oxidizable residues by site-directed mutagenesis. The residues W96 and F405 were consistently predicted by the QM/MM electron pathway to hold high spin density; single and double mutants of P450(BM3) on these positions (W96A, F405L, W96A/F405L) resulted in a more stable variants in the presence of hydrogen peroxide, displaying a similar reaction rate than P450(BM3) 21B3. Furthermore, mass spectrometry confirmed these oxidation sites and corroborated the possible routes described by QM/MM electron transfer (ET) pathways. (C) 2013 Elsevier Inc. All rights reserved.
引用
收藏
页码:18 / 26
页数:9
相关论文
共 50 条
  • [1] Oxygen activation and electron transfer in flavocytochrome P450BM3
    Ost, TWB
    Clark, J
    Mowat, CG
    Miles, CS
    Walkinshaw, MD
    Reid, GA
    Chapman, SK
    Daff, S
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2003, 125 (49) : 15010 - 15020
  • [2] Rapid kinetic analysis of cytochrome P450BM3 mutants
    Thompson, Jonathan I.
    Raner, Gregory M.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2006, 231
  • [3] Hydroxylation of anilides by engineered cytochrome P450BM3
    O'Hanlon, Jack A.
    Ren, Xinkun
    Morris, Melloney
    Wong, Luet Lok
    Robertson, Jeremy
    ORGANIC & BIOMOLECULAR CHEMISTRY, 2017, 15 (41) : 8780 - 8787
  • [4] Interaction of nitric oxide with cytochrome P450BM3
    Quaroni, LG
    Seward, HE
    McLean, KJ
    Girvan, HM
    Ost, TWB
    Noble, MA
    Kelly, SM
    Price, NC
    Cheesman, MR
    Smith, WE
    Munro, AW
    BIOCHEMISTRY, 2004, 43 (51) : 16416 - 16431
  • [5] PROBING ACTIVITY OF IMMOBILIZED P450BM3
    Ott, F.
    Beck-Sickinger, A. G.
    BASIC & CLINICAL PHARMACOLOGY & TOXICOLOGY, 2018, 122 : 11 - 11
  • [6] The stereochemistry of fatty acid hydroxylation by cytochrome P450BM3
    Cryle, Max J.
    Matovic, Nick J.
    De Voss, James J.
    TETRAHEDRON LETTERS, 2007, 48 (01) : 133 - 136
  • [7] Thermal inactivation of the reductase domain of cytochrome P450BM3
    Jamakhandi, AP
    Jeffus, BC
    Dass, VR
    Miller, GP
    ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2005, 439 (02) : 165 - 174
  • [8] Characterisation of a drug metabolising mutant of cytochrome P450BM3
    Commandeur, Jan N. M.
    DRUG METABOLISM REVIEWS, 2006, 38 : 96 - 96
  • [9] Engineering cytochrome P450BM3 for terminal alkane hydroxylation
    Meinhold, P
    Peters, MW
    Hartwick, A
    Hernandez, AR
    Arnold, FH
    ADVANCED SYNTHESIS & CATALYSIS, 2006, 348 (06) : 763 - 772
  • [10] Modulating proposed electron transfer pathways in P450BM3 led to improved activity and coupling efficiency
    Darimont, Dominique
    Weissenborn, Martin J.
    Nebel, Bernd A.
    Hauer, Bernhard
    BIOELECTROCHEMISTRY, 2018, 119 : 119 - 123