The Catalytic Mechanism of Carboxylesterases: A Computational Study

被引:62
|
作者
Aranda, J. [2 ]
Cerqueira, N. M. F. S. A. [1 ]
Fernandes, P. A. [1 ]
Roca, M. [2 ]
Tunon, I. [2 ]
Ramos, M. J. [1 ]
机构
[1] Univ Porto, Fac Ciencias, Dept Quim & Bioquim, REQUIMTE, P-4169007 Porto, Portugal
[2] Univ Valencia, Dept Quim Fis, E-46100 Burjassot, Spain
关键词
RIBONUCLEOTIDE REDUCTASE; MAMMALIAN CARBOXYLESTERASES; DENSITY FUNCTIONALS; ENZYMES; EXPRESSION; CLONING; METABOLISM; ACTIVATION; ESTER; RAT;
D O I
10.1021/bi500934j
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
The catalytic mechanism of carboxylesterases (CEs, EC 3.1.1.1) is explored by computational means. CEs hydrolyze ester, amide, and carbamate bonds found in xenobiotics and endobiotics. They can also perform transesterification, a reaction important, for instance, in cholesterol homeostasis. The catalytic mechanisms with three different substrates (ester, thioester, and amide) have been established at the M06-2X/6-311++G**//B3LYP/6-31G* level of theory. It was found that the reactions proceed through a mechanism involving four steps instead of two as is generally proposed: (i) nucleophilic attack of serine to the substrate, forming the first tetrahedral intermediate, (ii) formation of the acylenzyme complex concomitant with the release of the alcohol product, (iii) nucleophilic attack of a water or alcohol molecule forming the second tetrahedral intermediate, and (iv) the release of the second product of the reaction. The results agree very well with the available experimental data and show that the hydrolytic and the transesterification reactions are competitive processes when the substrate is an ester. In all the other studied substrates (thioester or amide), the hydrolytic and transesterification process are less favorable and some of them might not even take place under in vivo conditions.
引用
收藏
页码:5820 / 5829
页数:10
相关论文
共 50 条
  • [21] Variety in the USP deubiquitinase catalytic mechanism
    Keijzer, Niels
    Priyanka, Anu
    Stijf-Bultsma, Yvette
    Fish, Alexander
    Gersch, Malte
    Sixma, Titia K.
    LIFE SCIENCE ALLIANCE, 2024, 7 (04)
  • [22] Catalytic Asymmetric 5-enolexo Aldolizations. A Computational Study
    Georgieva, Miglena K.
    Duarte, Filipe J. S.
    Queiros, Margarida V. B.
    Santos, A. Gil
    JOURNAL OF ORGANIC CHEMISTRY, 2012, 77 (13) : 5569 - 5576
  • [23] Nitrite and nitrate reduction by molybdenum centers of the nitrate reductase type: Computational predictions on the catalytic mechanism
    Silaghi-Dumitrescu, Radu
    Mich, Mihaela
    Matyas, Csongor
    Cooper, Chris E.
    NITRIC OXIDE-BIOLOGY AND CHEMISTRY, 2012, 26 (01): : 27 - 31
  • [24] Flavin-mediated photoactivation of Pt(iv) anticancer complexes: computational insights on the catalytic mechanism
    Scoditti, Stefano
    Dabbish, Eslam
    Pieslinger, German E.
    Rezabal, Elixabete
    Lopez, Xabier
    Sicilia, Emilia
    Salassa, Luca
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2022, 24 (09) : 5323 - 5329
  • [25] Catalytic metal-free ketone hydrogenation: a computational experiment
    Li, Haixia
    Zhao, Lili
    Lu, Gang
    Huang, Fang
    Wang, Zhi-Xiang
    DALTON TRANSACTIONS, 2010, 39 (23) : 5519 - 5526
  • [26] Computational study on the mechanism of the reaction of carbon dioxide with siloxy silanes
    Kuniyil, Rositha
    Maseras, Feliu
    THEORETICAL CHEMISTRY ACCOUNTS, 2017, 136 (05)
  • [27] Reorienting Mechanism of Harderoheme in Coproheme Decarboxylase-A Computational Study
    Liu, Wei
    Pang, Yunjie
    Song, Yutian
    Li, Xichen
    Tan, Hongwei
    Chen, Guangju
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (05)
  • [28] Computational study on the mechanism of the reaction of carbon dioxide with siloxy silanes
    Rositha Kuniyil
    Feliu Maseras
    Theoretical Chemistry Accounts, 2017, 136
  • [29] Formation Mechanism and Possible Stereocontrol of Bisphenol A Derivatives: A Computational Study
    Banerjee, Swastika
    Periyasamy, Ganga
    Pati, Swapan K.
    JOURNAL OF PHYSICAL CHEMISTRY B, 2014, 118 (31) : 9258 - 9262
  • [30] Insights on cyclophosphamide metabolism and anticancer mechanism of action: A computational study
    Dabbish, Eslam
    Scoditti, Stefano
    Shehata, Mohammed N. I.
    Ritacco, Ida
    Ibrahim, Mahmoud A. A.
    Shoeib, Tamer
    Sicilia, Emilia
    JOURNAL OF COMPUTATIONAL CHEMISTRY, 2024, 45 (10) : 663 - 670