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Studying the phosphoryl transfer mechanism of the E. coli phosphofructokinase-2: from X-ray structure to quantum mechanics/molecular mechanics simulations

Phosphofructokinases (Pfks) catalyze the ATP-dependent phosphorylation of fructose-6-phosphate (F6P) and they are regulated in a wide variety of organisms. Although numerous aspects of the kinetics and regulation have been characterized for Pfks, the knowledge about the mechanism of the phosphoryl t...

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Autores principales: Murillo-López, Juliana, Zinovjev, Kirill, Pereira, Humberto, Caniuguir, Andres, Garratt, Richard, Babul, Jorge, Recabarren, Rodrigo, Alzate-Morales, Jans, Caballero, Julio, Tuñón, Iñaki, Cabrera, Ricardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6429617/
https://www.ncbi.nlm.nih.gov/pubmed/30996866
http://dx.doi.org/10.1039/c9sc00094a
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author Murillo-López, Juliana
Zinovjev, Kirill
Pereira, Humberto
Caniuguir, Andres
Garratt, Richard
Babul, Jorge
Recabarren, Rodrigo
Alzate-Morales, Jans
Caballero, Julio
Tuñón, Iñaki
Cabrera, Ricardo
author_facet Murillo-López, Juliana
Zinovjev, Kirill
Pereira, Humberto
Caniuguir, Andres
Garratt, Richard
Babul, Jorge
Recabarren, Rodrigo
Alzate-Morales, Jans
Caballero, Julio
Tuñón, Iñaki
Cabrera, Ricardo
author_sort Murillo-López, Juliana
collection PubMed
description Phosphofructokinases (Pfks) catalyze the ATP-dependent phosphorylation of fructose-6-phosphate (F6P) and they are regulated in a wide variety of organisms. Although numerous aspects of the kinetics and regulation have been characterized for Pfks, the knowledge about the mechanism of the phosphoryl transfer reaction and the transition state lags behind. In this work, we describe the X-ray crystal structure of the homodimeric Pfk-2 from E. coli, which contains products in one site and reactants in the other, as well as an additional ATP molecule in the inhibitory allosteric site adjacent to the reactants. This complex was previously predicted when studying the kinetic mechanism of ATP inhibition. After removing the allosteric ATP, molecular dynamic (MD) simulations revealed conformational changes related to domain packing, as well as stable interactions of Lys27 and Asp256 with donor (ATP) and acceptor (fructose-6-) groups, and of Asp166 with Mg(2+). The phosphoryl transfer reaction mechanism catalyzed by Pfk-2 was investigated through Quantum Mechanics/Molecular Mechanics (QM/MM) simulations using a combination of the string method and a path-collective variable for the exploration of its free energy surface. The calculated activation free energies showed that a dissociative mechanism, occurring with a metaphosphate intermediate formation followed by a proton transfer to Asp256, is more favorable than an associative one. The structural analysis reveals the role of Asp256 acting as a catalytic base and Lys27 stabilizing the transition state of the dissociative mechanism.
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spelling pubmed-64296172019-04-17 Studying the phosphoryl transfer mechanism of the E. coli phosphofructokinase-2: from X-ray structure to quantum mechanics/molecular mechanics simulations Murillo-López, Juliana Zinovjev, Kirill Pereira, Humberto Caniuguir, Andres Garratt, Richard Babul, Jorge Recabarren, Rodrigo Alzate-Morales, Jans Caballero, Julio Tuñón, Iñaki Cabrera, Ricardo Chem Sci Chemistry Phosphofructokinases (Pfks) catalyze the ATP-dependent phosphorylation of fructose-6-phosphate (F6P) and they are regulated in a wide variety of organisms. Although numerous aspects of the kinetics and regulation have been characterized for Pfks, the knowledge about the mechanism of the phosphoryl transfer reaction and the transition state lags behind. In this work, we describe the X-ray crystal structure of the homodimeric Pfk-2 from E. coli, which contains products in one site and reactants in the other, as well as an additional ATP molecule in the inhibitory allosteric site adjacent to the reactants. This complex was previously predicted when studying the kinetic mechanism of ATP inhibition. After removing the allosteric ATP, molecular dynamic (MD) simulations revealed conformational changes related to domain packing, as well as stable interactions of Lys27 and Asp256 with donor (ATP) and acceptor (fructose-6-) groups, and of Asp166 with Mg(2+). The phosphoryl transfer reaction mechanism catalyzed by Pfk-2 was investigated through Quantum Mechanics/Molecular Mechanics (QM/MM) simulations using a combination of the string method and a path-collective variable for the exploration of its free energy surface. The calculated activation free energies showed that a dissociative mechanism, occurring with a metaphosphate intermediate formation followed by a proton transfer to Asp256, is more favorable than an associative one. The structural analysis reveals the role of Asp256 acting as a catalytic base and Lys27 stabilizing the transition state of the dissociative mechanism. Royal Society of Chemistry 2019-01-28 /pmc/articles/PMC6429617/ /pubmed/30996866 http://dx.doi.org/10.1039/c9sc00094a Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by-nc/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Murillo-López, Juliana
Zinovjev, Kirill
Pereira, Humberto
Caniuguir, Andres
Garratt, Richard
Babul, Jorge
Recabarren, Rodrigo
Alzate-Morales, Jans
Caballero, Julio
Tuñón, Iñaki
Cabrera, Ricardo
Studying the phosphoryl transfer mechanism of the E. coli phosphofructokinase-2: from X-ray structure to quantum mechanics/molecular mechanics simulations
title Studying the phosphoryl transfer mechanism of the E. coli phosphofructokinase-2: from X-ray structure to quantum mechanics/molecular mechanics simulations
title_full Studying the phosphoryl transfer mechanism of the E. coli phosphofructokinase-2: from X-ray structure to quantum mechanics/molecular mechanics simulations
title_fullStr Studying the phosphoryl transfer mechanism of the E. coli phosphofructokinase-2: from X-ray structure to quantum mechanics/molecular mechanics simulations
title_full_unstemmed Studying the phosphoryl transfer mechanism of the E. coli phosphofructokinase-2: from X-ray structure to quantum mechanics/molecular mechanics simulations
title_short Studying the phosphoryl transfer mechanism of the E. coli phosphofructokinase-2: from X-ray structure to quantum mechanics/molecular mechanics simulations
title_sort studying the phosphoryl transfer mechanism of the e. coli phosphofructokinase-2: from x-ray structure to quantum mechanics/molecular mechanics simulations
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6429617/
https://www.ncbi.nlm.nih.gov/pubmed/30996866
http://dx.doi.org/10.1039/c9sc00094a
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