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Structural and mutational analyses of the Leptospira interrogans virulence-related heme oxygenase provide insights into its catalytic mechanism

Heme oxygenase from Leptospira interrogans is an important virulence factor. During catalysis, redox equivalents are provided to this enzyme by the plastidic-type ferredoxin-NADP(+) reductase also found in L. interrogans. This process may have evolved to aid this bacterial pathogen to obtain heme-ir...

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Autores principales: Soldano, Anabel, Klinke, Sebastián, Otero, Lisandro H., Rivera, Mario, Catalano-Dupuy, Daniela L., Ceccarelli, Eduardo A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5542595/
https://www.ncbi.nlm.nih.gov/pubmed/28771589
http://dx.doi.org/10.1371/journal.pone.0182535
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author Soldano, Anabel
Klinke, Sebastián
Otero, Lisandro H.
Rivera, Mario
Catalano-Dupuy, Daniela L.
Ceccarelli, Eduardo A.
author_facet Soldano, Anabel
Klinke, Sebastián
Otero, Lisandro H.
Rivera, Mario
Catalano-Dupuy, Daniela L.
Ceccarelli, Eduardo A.
author_sort Soldano, Anabel
collection PubMed
description Heme oxygenase from Leptospira interrogans is an important virulence factor. During catalysis, redox equivalents are provided to this enzyme by the plastidic-type ferredoxin-NADP(+) reductase also found in L. interrogans. This process may have evolved to aid this bacterial pathogen to obtain heme-iron from their host and enable successful colonization. Herein we report the crystal structure of the heme oxygenase-heme complex at 1.73 Å resolution. The structure reveals several distinctive features related to its function. A hydrogen bonded network of structural water molecules that extends from the catalytic site to the protein surface was cleared observed. A depression on the surface appears to be the H(+) network entrance from the aqueous environment to the catalytic site for O(2) activation, a key step in the heme oxygenase reaction. We have performed a mutational analysis of the F157, located at the above-mentioned depression. The mutant enzymes were unable to carry out the complete degradation of heme to biliverdin since the reaction was arrested at the verdoheme stage. We also observed that the stability of the oxyferrous complex, the efficiency of heme hydroxylation and the subsequent conversion to verdoheme was adversely affected. These findings underscore a long-range communication between the outer fringes of the hydrogen-bonded network of structural waters and the heme active site during catalysis. Finally, by analyzing the crystal structures of ferredoxin-NADP(+) reductase and heme oxygenase, we propose a model for the productive association of these proteins.
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spelling pubmed-55425952017-08-12 Structural and mutational analyses of the Leptospira interrogans virulence-related heme oxygenase provide insights into its catalytic mechanism Soldano, Anabel Klinke, Sebastián Otero, Lisandro H. Rivera, Mario Catalano-Dupuy, Daniela L. Ceccarelli, Eduardo A. PLoS One Research Article Heme oxygenase from Leptospira interrogans is an important virulence factor. During catalysis, redox equivalents are provided to this enzyme by the plastidic-type ferredoxin-NADP(+) reductase also found in L. interrogans. This process may have evolved to aid this bacterial pathogen to obtain heme-iron from their host and enable successful colonization. Herein we report the crystal structure of the heme oxygenase-heme complex at 1.73 Å resolution. The structure reveals several distinctive features related to its function. A hydrogen bonded network of structural water molecules that extends from the catalytic site to the protein surface was cleared observed. A depression on the surface appears to be the H(+) network entrance from the aqueous environment to the catalytic site for O(2) activation, a key step in the heme oxygenase reaction. We have performed a mutational analysis of the F157, located at the above-mentioned depression. The mutant enzymes were unable to carry out the complete degradation of heme to biliverdin since the reaction was arrested at the verdoheme stage. We also observed that the stability of the oxyferrous complex, the efficiency of heme hydroxylation and the subsequent conversion to verdoheme was adversely affected. These findings underscore a long-range communication between the outer fringes of the hydrogen-bonded network of structural waters and the heme active site during catalysis. Finally, by analyzing the crystal structures of ferredoxin-NADP(+) reductase and heme oxygenase, we propose a model for the productive association of these proteins. Public Library of Science 2017-08-03 /pmc/articles/PMC5542595/ /pubmed/28771589 http://dx.doi.org/10.1371/journal.pone.0182535 Text en © 2017 Soldano 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Soldano, Anabel
Klinke, Sebastián
Otero, Lisandro H.
Rivera, Mario
Catalano-Dupuy, Daniela L.
Ceccarelli, Eduardo A.
Structural and mutational analyses of the Leptospira interrogans virulence-related heme oxygenase provide insights into its catalytic mechanism
title Structural and mutational analyses of the Leptospira interrogans virulence-related heme oxygenase provide insights into its catalytic mechanism
title_full Structural and mutational analyses of the Leptospira interrogans virulence-related heme oxygenase provide insights into its catalytic mechanism
title_fullStr Structural and mutational analyses of the Leptospira interrogans virulence-related heme oxygenase provide insights into its catalytic mechanism
title_full_unstemmed Structural and mutational analyses of the Leptospira interrogans virulence-related heme oxygenase provide insights into its catalytic mechanism
title_short Structural and mutational analyses of the Leptospira interrogans virulence-related heme oxygenase provide insights into its catalytic mechanism
title_sort structural and mutational analyses of the leptospira interrogans virulence-related heme oxygenase provide insights into its catalytic mechanism
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5542595/
https://www.ncbi.nlm.nih.gov/pubmed/28771589
http://dx.doi.org/10.1371/journal.pone.0182535
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