Mechanism of tungsten-dependent acetylene hydratase from quantum chemical calculations

被引:94
|
作者
Liao, Rong-Zhen [1 ,2 ]
Yu, Jian-Guo [2 ]
Himo, Fahmi [1 ]
机构
[1] Stockholm Univ, Arrhenius Lab, Dept Organ Chem, SE-10691 Stockholm, Sweden
[2] Beijing Normal Univ, Coll Chem, Beijing 100875, Peoples R China
基金
瑞典研究理事会; 中国国家自然科学基金;
关键词
enzyme catalysis; metalloenzyme; cluster approach; PELOBACTER-ACETYLENICUS; ENZYMATIC-REACTIONS; CONTAINING ENZYMES; MOLYBDENUM; SYSTEMS; TUNGSTOENZYME; COMPLEXES; CATALYSIS; RELEVANT; ANALOGS;
D O I
10.1073/pnas.1014060108
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Acetylene hydratase is a tungsten-dependent enzyme that catalyzes the nonredox hydration of acetylene to acetaldehyde. Density functional theory calculations are used to elucidate the reaction mechanism of this enzyme with a large model of the active site devised on the basis of the native X-ray crystal structure. Based on the calculations, we propose a new mechanism in which the acetylene substrate first displaces the W-coordinated water molecule, and then undergoes a nucleophilic attack by the water molecule assisted by an ionized Asp13 residue at the active site. This is followed by proton transfer from Asp13 to the newly formed vinyl anion intermediate. In the subsequent isomerization, Asp13 shuttles a proton from the hydroxyl group of the vinyl alcohol to the alpha-carbon. Asp13 is thus a key player in the mechanism, but also W is directly involved in the reaction by binding and activating acetylene and providing electrostatic stabilization to the transition states and intermediates. Several other mechanisms are also considered but the energetic barriers are found to be very high, ruling out these possibilities.
引用
收藏
页码:22523 / 22527
页数:5
相关论文
共 50 条
  • [41] Geometric and energetic data from quantum chemical calculations of halobenzenes and xylenes
    Datta, Sopanant
    Limpanuparb, Taweetham
    DATA IN BRIEF, 2020, 30
  • [42] Study of some properties of quinone derivatives from quantum chemical calculations
    Geh Wilson Ejuh
    F. Tchangnwa Nya
    N. Djongyang
    J. M. B. Ndjaka
    Optical and Quantum Electronics, 2018, 50
  • [43] Analysis of Excitonic and Charge Transfer Interactions from Quantum Chemical Calculations
    Plasser, Felix
    Lischka, Hans
    JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2012, 8 (08) : 2777 - 2789
  • [44] A Halomethane Thermochemical Network from iPEPICO Experiments and Quantum Chemical Calculations
    Harvey, Jonelle
    Tuckett, Richard P.
    Bodi, Andras
    JOURNAL OF PHYSICAL CHEMISTRY A, 2012, 116 (39): : 9696 - 9705
  • [45] DESIGN CONSIDERATIONS FOR SUPERCOMPUTERS FROM THE POINT OF VIEW OF QUANTUM CHEMICAL CALCULATIONS
    SHAVITT, I
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1980, 180 (AUG): : 40 - COMP
  • [46] MUTATION FROM MOLYBDENUM-DEPENDENT GROWTH TO TUNGSTEN-DEPENDENT GROWTH AND FURTHER EVIDENCE FOR A GENETIC DETERMINANT COMMON TO NITROGENASE AND NITRATE REDUCTASE IN BLUE-GREEN-ALGA NOSTOC-MUSCORUM
    SINGH, HN
    VAISHAMPAYAN, A
    SONIE, KC
    MUTATION RESEARCH, 1978, 50 (03): : 427 - 432
  • [47] Ab initio quantum-chemical calculation of the molecular chlorine-to-acetylene gaseous phase addition mechanism
    Ilchenko, NN
    Serguchev, YA
    Gorb, LG
    Gutsulyak, RB
    TEORETICHESKAYA I EKSPERIMENTALNAYA KHIMIYA, 1996, 32 (01): : 17 - 19
  • [48] Reaction Mechanism of Zinc-Dependent Cytosine Deaminase from Escherichia coli: A Quantum-Chemical Study
    Manta, Bianca
    Raushel, Frank M.
    Himo, Fahmi
    JOURNAL OF PHYSICAL CHEMISTRY B, 2014, 118 (21): : 5644 - 5652
  • [49] Glycosylated flavonoid kaempferitrin: Electroanalytical detection and the proposal of an oxidation mechanism supported by quantum chemical calculations
    Simia, Carolina G.
    Bettanin, Fernanda
    Honorio, Kathia Maria
    Silva Jr, Gilberto J.
    de Oliveira, Hueder Paulo Moises
    Bertotti, Mauro
    Valle, Eliana Marra Agostini
    Codognoto, Lucia
    TALANTA, 2024, 278
  • [50] QUANTUM-CHEMICAL CALCULATIONS OF THE MECHANISM OF SOME REACTIONS OF THE INSERTION OF SILYLENES AND DICHLOROSILYLENES INTO A SINGLE BOND
    ABRONIN, IA
    AVDYUKHINA, NA
    CHERNYSHEV, EA
    RUSSIAN CHEMICAL BULLETIN, 1994, 43 (05) : 751 - 754