Go to:
Logótipo
Comuta visibilidade da coluna esquerda
Você está em: Start > Publications > View > QM/MM Studies on the beta-Galactosidase Catalytic Mechanism: Hydrolysis and Transglycosylation Reactions
Publication

Publications

QM/MM Studies on the beta-Galactosidase Catalytic Mechanism: Hydrolysis and Transglycosylation Reactions

Title
QM/MM Studies on the beta-Galactosidase Catalytic Mechanism: Hydrolysis and Transglycosylation Reactions
Type
Article in International Scientific Journal
Year
2010
Authors
Natercia F Bras
(Author)
Other
View Personal Page You do not have permissions to view the institutional email. Search for Participant Publications View Authenticus page Without ORCID
Maria J Ramos
(Author)
FCUP
View Personal Page You do not have permissions to view the institutional email. Search for Participant Publications View Authenticus page View ORCID page
Journal
Vol. 6 No. 8
Pages: 421-433
ISSN: 1549-9618
Scientific classification
FOS: Natural sciences > Chemical sciences
Other information
Authenticus ID: P-003-9EC
Abstract (EN): Carbohydrates perform a wide range of crucial functions in biological systems and are of great interest for the food and pharmaceutical industries. beta-Galactosidase from Escherichia coli catalyzes both the hydrolytic breaking of the very stable glycosidic bond of lactose and a series of transglycosylation reactions. These reactions are crucial for the development of new carbohydrate molecules, as well as the optimization of their syntheses. In this work we have used computational methods to study the catalytic mechanism of hydrolysis and a set of distinct transglycosylation reactions of a retaining galactosidase, with atomic detail, with lactose as the natural substrate. The ONIOM method (BB1K:AMBER//B3LYP:AMBER calculations) was employed to address such a large enzymatic system. Such a methodology can efficiently account for the stereochemistry of the reactive residues, as well as the long-range enzyme-substrate interactions. The possible importance of the magnesium ion in the catalytic reaction was investigated, and it was found that, indeed, the magnesium ion catalyzes the transformation, lowering the activation barrier by 14.9 kcal/mol. The calculations indicate that the formation of beta(1-3) glycosidic linkages is thermodynamically very unfavorable. In contrast, the formation of beta(1-6) glycosidic bonds is the most favored, in complete agreement with the enantioselectivity observed experimentally. The data also clearly show the importance of the enzyme scaffold beyond the first-shell amino acids in the stabilization of the transition states. It is fundamental to include the enzyme explicitly in computational studies.
Language: English
Type (Professor's evaluation): Scientific
Contact: mjramos@fc.up.pt
No. of pages: 13
Documents
We could not find any documents associated to the publication.
Related Publications

Of the same authors

Inside Cover: The Catalytic Mechanism of the Marine-Derived Macrocyclase PatGmac (Chem. Eur. J. 37/2016) (2016)
Another Publication in an International Scientific Journal
Natercia F Bras; Ferreira, P; Calixto, AR; Jaspars, M; Houssen, W; Naismith, JH; Pedro A Fernandes; Ramos, MJ
HMG-CoA Reductase inhibitors: an updated review of patents of novel compounds and formulations (2011-2015) (2016)
Another Publication in an International Scientific Journal
Oliveira, EF; Santos Martins, D; Ribeiro, AM; Natercia F Bras; Nuno M F S A Cerqueira; Sergio Filipe Sousa; Ramos, MJ; Pedro A Fernandes
The Catalytic Mechanism of the Marine-Derived Macrocyclase PatGmac (vol 22, pg 13089, 2016) (2021)
Other Publications
Natercia F Bras; Ferreira, P; Calixto, AR; Jaspars, M; Houssen, W; Naismith, JH; Pedro A Fernandes; Ramos, MJ
Virtual screening and QSAR study of some pyrrolidine derivatives as alpha-mannosidase inhibitors for binding feature analysis (2012)
Article in International Scientific Journal
Moorthy, NSHN; Natercia F Bras; Maria J Ramos; Pedro A Fernandes

See all (30)

Of the same journal

1-Octanol/water partition coefficients of n-Alkanes from molecular simulations of absolute solvation free energies (2009)
Article in International Scientific Journal
Nuno M. Garrido; António J. Queimada; Miguel Jorge; Eugénia A. Macedo; Ioannis G. Economou
Understanding the Mechanism for Ribonucleotide Reductase Inactivation by 2 '-Deoxy-2 '-methylenecytidine-5 '-diphosphate (2010)
Article in International Scientific Journal
Perez, MAS; Pedro A Fernandes; Ramos, MJ
The Catalytic Mechanism of RNA Polymerase II (2011)
Article in International Scientific Journal
Alexandra T P Carvalho; Pedro A Fernandes; Maria J Ramos
The Accuracy of Density Functional Theory in the Description of Cation-pi and pi-Hydrogen Bond Interactions (2011)
Article in International Scientific Journal
Ana Rute Neves; Pedro Alexandrino Fernandes; Maria Joao Ramos

See all (26)

Recommend this page Top
Copyright 1996-2025 © Faculdade de Direito da Universidade do Porto  I Terms and Conditions  I Acessibility  I Index A-Z
Page created on: 2025-07-24 at 02:56:35 | Privacy Policy | Personal Data Protection Policy | Whistleblowing