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Eukaryotic extracellular catalase–peroxidase from Magnaporthe grisea – Biophysical/chemical characterization of the first representative from a novel phytopathogenic KatG group

All phytopathogenic fungi have two catalase–peroxidase paralogues located either intracellularly (KatG1) or extracellularly (KatG2). Here, for the first time a secreted bifunctional, homodimeric catalase–peroxidase (KatG2 from the rice blast fungus Magnaporthe grisea) has been produced heterologousl...

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Autores principales: Zámocký, Marcel, Droghetti, Enrica, Bellei, Marzia, Gasselhuber, Bernhard, Pabst, Martin, Furtmüller, Paul G., Battistuzzi, Gianantonio, Smulevich, Giulietta, Obinger, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Editions Scientifiques Elsevier 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3317519/
https://www.ncbi.nlm.nih.gov/pubmed/21971530
http://dx.doi.org/10.1016/j.biochi.2011.09.020
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author Zámocký, Marcel
Droghetti, Enrica
Bellei, Marzia
Gasselhuber, Bernhard
Pabst, Martin
Furtmüller, Paul G.
Battistuzzi, Gianantonio
Smulevich, Giulietta
Obinger, Christian
author_facet Zámocký, Marcel
Droghetti, Enrica
Bellei, Marzia
Gasselhuber, Bernhard
Pabst, Martin
Furtmüller, Paul G.
Battistuzzi, Gianantonio
Smulevich, Giulietta
Obinger, Christian
author_sort Zámocký, Marcel
collection PubMed
description All phytopathogenic fungi have two catalase–peroxidase paralogues located either intracellularly (KatG1) or extracellularly (KatG2). Here, for the first time a secreted bifunctional, homodimeric catalase–peroxidase (KatG2 from the rice blast fungus Magnaporthe grisea) has been produced heterologously with almost 100% heme occupancy and comprehensively investigated by using a broad set of methods including UV–Vis, ECD and resonance Raman spectroscopy (RR), thin-layer spectroelectrochemistry, mass spectrometry, steady-state & presteady-state spectroscopy. RR spectroscopy reveals that MagKatG2 shows a unique mixed-spin state, non-planar heme b, and a proximal histidine with pronounced imidazolate character. At pH 7.0 and 25 °C, the standard reduction potential E°′ of the Fe(III)/Fe(II) couple for the high-spin native protein was found to fall in the range typical for the KatG family. Binding of cyanide was relatively slow at pH 7.0 and 25 °C and with a K(d) value significantly higher than for the intracellular counterpart. Demonstrated by mass spectrometry MagKatG2 has the typical Trp118-Tyr251-Met277 adduct that is essential for its predominantly catalase activity at the unique acidic pH optimum. In addition, MagKatG2 acts as a versatile peroxidase using both one- and two-electron donors. Based on these data, structure–function relationships of extracellular eukaryotic KatGs are discussed with respect to intracellular KatGs and possible role(s) in host–pathogen interaction.
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spelling pubmed-33175192012-04-11 Eukaryotic extracellular catalase–peroxidase from Magnaporthe grisea – Biophysical/chemical characterization of the first representative from a novel phytopathogenic KatG group Zámocký, Marcel Droghetti, Enrica Bellei, Marzia Gasselhuber, Bernhard Pabst, Martin Furtmüller, Paul G. Battistuzzi, Gianantonio Smulevich, Giulietta Obinger, Christian Biochimie Research Paper All phytopathogenic fungi have two catalase–peroxidase paralogues located either intracellularly (KatG1) or extracellularly (KatG2). Here, for the first time a secreted bifunctional, homodimeric catalase–peroxidase (KatG2 from the rice blast fungus Magnaporthe grisea) has been produced heterologously with almost 100% heme occupancy and comprehensively investigated by using a broad set of methods including UV–Vis, ECD and resonance Raman spectroscopy (RR), thin-layer spectroelectrochemistry, mass spectrometry, steady-state & presteady-state spectroscopy. RR spectroscopy reveals that MagKatG2 shows a unique mixed-spin state, non-planar heme b, and a proximal histidine with pronounced imidazolate character. At pH 7.0 and 25 °C, the standard reduction potential E°′ of the Fe(III)/Fe(II) couple for the high-spin native protein was found to fall in the range typical for the KatG family. Binding of cyanide was relatively slow at pH 7.0 and 25 °C and with a K(d) value significantly higher than for the intracellular counterpart. Demonstrated by mass spectrometry MagKatG2 has the typical Trp118-Tyr251-Met277 adduct that is essential for its predominantly catalase activity at the unique acidic pH optimum. In addition, MagKatG2 acts as a versatile peroxidase using both one- and two-electron donors. Based on these data, structure–function relationships of extracellular eukaryotic KatGs are discussed with respect to intracellular KatGs and possible role(s) in host–pathogen interaction. Editions Scientifiques Elsevier 2012-03 /pmc/articles/PMC3317519/ /pubmed/21971530 http://dx.doi.org/10.1016/j.biochi.2011.09.020 Text en © 2012 Elsevier Masson SAS. https://creativecommons.org/licenses/by-nc-nd/3.0/Open Access under CC BY-NC-ND 3.0 (https://creativecommons.org/licenses/by-nc-nd/3.0/) license
spellingShingle Research Paper
Zámocký, Marcel
Droghetti, Enrica
Bellei, Marzia
Gasselhuber, Bernhard
Pabst, Martin
Furtmüller, Paul G.
Battistuzzi, Gianantonio
Smulevich, Giulietta
Obinger, Christian
Eukaryotic extracellular catalase–peroxidase from Magnaporthe grisea – Biophysical/chemical characterization of the first representative from a novel phytopathogenic KatG group
title Eukaryotic extracellular catalase–peroxidase from Magnaporthe grisea – Biophysical/chemical characterization of the first representative from a novel phytopathogenic KatG group
title_full Eukaryotic extracellular catalase–peroxidase from Magnaporthe grisea – Biophysical/chemical characterization of the first representative from a novel phytopathogenic KatG group
title_fullStr Eukaryotic extracellular catalase–peroxidase from Magnaporthe grisea – Biophysical/chemical characterization of the first representative from a novel phytopathogenic KatG group
title_full_unstemmed Eukaryotic extracellular catalase–peroxidase from Magnaporthe grisea – Biophysical/chemical characterization of the first representative from a novel phytopathogenic KatG group
title_short Eukaryotic extracellular catalase–peroxidase from Magnaporthe grisea – Biophysical/chemical characterization of the first representative from a novel phytopathogenic KatG group
title_sort eukaryotic extracellular catalase–peroxidase from magnaporthe grisea – biophysical/chemical characterization of the first representative from a novel phytopathogenic katg group
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3317519/
https://www.ncbi.nlm.nih.gov/pubmed/21971530
http://dx.doi.org/10.1016/j.biochi.2011.09.020
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