Cargando…

The Mode of Action of Recombinant Mycobacterium tuberculosis Shikimate Kinase: Kinetics and Thermodynamics Analyses

Tuberculosis remains as one of the main cause of mortality worldwide due to a single infectious agent, Mycobacterium tuberculosis. The aroK-encoded M. tuberculosis Shikimate Kinase (MtSK), shown to be essential for survival of bacilli, catalyzes the phosphoryl transfer from ATP to the carbon-3 hydro...

Descripción completa

Detalles Bibliográficos
Autores principales: Rosado, Leonardo Astolfi, Vasconcelos, Igor Bordin, Palma, Mário Sérgio, Frappier, Vincent, Najmanovich, Rafael Josef, Santos, Diógenes Santiago, Basso, Luiz Augusto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3646032/
https://www.ncbi.nlm.nih.gov/pubmed/23671579
http://dx.doi.org/10.1371/journal.pone.0061918
_version_ 1782268558611316736
author Rosado, Leonardo Astolfi
Vasconcelos, Igor Bordin
Palma, Mário Sérgio
Frappier, Vincent
Najmanovich, Rafael Josef
Santos, Diógenes Santiago
Basso, Luiz Augusto
author_facet Rosado, Leonardo Astolfi
Vasconcelos, Igor Bordin
Palma, Mário Sérgio
Frappier, Vincent
Najmanovich, Rafael Josef
Santos, Diógenes Santiago
Basso, Luiz Augusto
author_sort Rosado, Leonardo Astolfi
collection PubMed
description Tuberculosis remains as one of the main cause of mortality worldwide due to a single infectious agent, Mycobacterium tuberculosis. The aroK-encoded M. tuberculosis Shikimate Kinase (MtSK), shown to be essential for survival of bacilli, catalyzes the phosphoryl transfer from ATP to the carbon-3 hydroxyl group of shikimate (SKH), yielding shikimate-3-phosphate and ADP. Here we present purification to homogeneity, and oligomeric state determination of recombinant MtSK. Biochemical and biophysical data suggest that the chemical reaction catalyzed by monomeric MtSK follows a rapid-equilibrium random order of substrate binding, and ordered product release. Isothermal titration calorimetry (ITC) for binding of ligands to MtSK provided thermodynamic signatures of non-covalent interactions to each process. A comparison of steady-state kinetics parameters and equilibrium dissociation constant value determined by ITC showed that ATP binding does not increase the affinity of MtSK for SKH. We suggest that MtSK would more appropriately be described as an aroL-encoded type II shikimate kinase. Our manuscript also gives thermodynamic description of SKH binding to MtSK and data for the number of protons exchanged during this bimolecular interaction. The negative value for the change in constant pressure heat capacity (ΔC(p)) and molecular homology model building suggest a pronounced contribution of desolvation of non-polar groups upon binary complex formation. Thermodynamic parameters were deconvoluted into hydrophobic and vibrational contributions upon MtSK:SKH binary complex formation. Data for the number of protons exchanged during this bimolecular interaction are interpreted in light of a structural model to try to propose the likely amino acid side chains that are the proton donors to bulk solvent following MtSK:SKH complex formation.
format Online
Article
Text
id pubmed-3646032
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-36460322013-05-13 The Mode of Action of Recombinant Mycobacterium tuberculosis Shikimate Kinase: Kinetics and Thermodynamics Analyses Rosado, Leonardo Astolfi Vasconcelos, Igor Bordin Palma, Mário Sérgio Frappier, Vincent Najmanovich, Rafael Josef Santos, Diógenes Santiago Basso, Luiz Augusto PLoS One Research Article Tuberculosis remains as one of the main cause of mortality worldwide due to a single infectious agent, Mycobacterium tuberculosis. The aroK-encoded M. tuberculosis Shikimate Kinase (MtSK), shown to be essential for survival of bacilli, catalyzes the phosphoryl transfer from ATP to the carbon-3 hydroxyl group of shikimate (SKH), yielding shikimate-3-phosphate and ADP. Here we present purification to homogeneity, and oligomeric state determination of recombinant MtSK. Biochemical and biophysical data suggest that the chemical reaction catalyzed by monomeric MtSK follows a rapid-equilibrium random order of substrate binding, and ordered product release. Isothermal titration calorimetry (ITC) for binding of ligands to MtSK provided thermodynamic signatures of non-covalent interactions to each process. A comparison of steady-state kinetics parameters and equilibrium dissociation constant value determined by ITC showed that ATP binding does not increase the affinity of MtSK for SKH. We suggest that MtSK would more appropriately be described as an aroL-encoded type II shikimate kinase. Our manuscript also gives thermodynamic description of SKH binding to MtSK and data for the number of protons exchanged during this bimolecular interaction. The negative value for the change in constant pressure heat capacity (ΔC(p)) and molecular homology model building suggest a pronounced contribution of desolvation of non-polar groups upon binary complex formation. Thermodynamic parameters were deconvoluted into hydrophobic and vibrational contributions upon MtSK:SKH binary complex formation. Data for the number of protons exchanged during this bimolecular interaction are interpreted in light of a structural model to try to propose the likely amino acid side chains that are the proton donors to bulk solvent following MtSK:SKH complex formation. Public Library of Science 2013-05-06 /pmc/articles/PMC3646032/ /pubmed/23671579 http://dx.doi.org/10.1371/journal.pone.0061918 Text en © 2013 Rosado et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Rosado, Leonardo Astolfi
Vasconcelos, Igor Bordin
Palma, Mário Sérgio
Frappier, Vincent
Najmanovich, Rafael Josef
Santos, Diógenes Santiago
Basso, Luiz Augusto
The Mode of Action of Recombinant Mycobacterium tuberculosis Shikimate Kinase: Kinetics and Thermodynamics Analyses
title The Mode of Action of Recombinant Mycobacterium tuberculosis Shikimate Kinase: Kinetics and Thermodynamics Analyses
title_full The Mode of Action of Recombinant Mycobacterium tuberculosis Shikimate Kinase: Kinetics and Thermodynamics Analyses
title_fullStr The Mode of Action of Recombinant Mycobacterium tuberculosis Shikimate Kinase: Kinetics and Thermodynamics Analyses
title_full_unstemmed The Mode of Action of Recombinant Mycobacterium tuberculosis Shikimate Kinase: Kinetics and Thermodynamics Analyses
title_short The Mode of Action of Recombinant Mycobacterium tuberculosis Shikimate Kinase: Kinetics and Thermodynamics Analyses
title_sort mode of action of recombinant mycobacterium tuberculosis shikimate kinase: kinetics and thermodynamics analyses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3646032/
https://www.ncbi.nlm.nih.gov/pubmed/23671579
http://dx.doi.org/10.1371/journal.pone.0061918
work_keys_str_mv AT rosadoleonardoastolfi themodeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT vasconcelosigorbordin themodeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT palmamariosergio themodeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT frappiervincent themodeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT najmanovichrafaeljosef themodeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT santosdiogenessantiago themodeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT bassoluizaugusto themodeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT rosadoleonardoastolfi modeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT vasconcelosigorbordin modeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT palmamariosergio modeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT frappiervincent modeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT najmanovichrafaeljosef modeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT santosdiogenessantiago modeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses
AT bassoluizaugusto modeofactionofrecombinantmycobacteriumtuberculosisshikimatekinasekineticsandthermodynamicsanalyses