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Structure and heme-binding properties of HemQ (chlorite dismutase-like protein) from Listeria monocytogenes

Chlorite dismutase-like proteins are structurally closely related to functional chlorite dismutases which are heme b-dependent oxidoreductases capable of reducing chlorite to chloride with simultaneous production of dioxygen. Chlorite dismutase-like proteins are incapable of performing this reaction...

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Autores principales: Hofbauer, Stefan, Hagmüller, Andreas, Schaffner, Irene, Mlynek, Georg, Krutzler, Michael, Stadlmayr, Gerhard, Pirker, Katharina F., Obinger, Christian, Daims, Holger, Djinović-Carugo, Kristina, Furtmüller, Paul G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Academic Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4420033/
https://www.ncbi.nlm.nih.gov/pubmed/25602700
http://dx.doi.org/10.1016/j.abb.2015.01.010
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author Hofbauer, Stefan
Hagmüller, Andreas
Schaffner, Irene
Mlynek, Georg
Krutzler, Michael
Stadlmayr, Gerhard
Pirker, Katharina F.
Obinger, Christian
Daims, Holger
Djinović-Carugo, Kristina
Furtmüller, Paul G.
author_facet Hofbauer, Stefan
Hagmüller, Andreas
Schaffner, Irene
Mlynek, Georg
Krutzler, Michael
Stadlmayr, Gerhard
Pirker, Katharina F.
Obinger, Christian
Daims, Holger
Djinović-Carugo, Kristina
Furtmüller, Paul G.
author_sort Hofbauer, Stefan
collection PubMed
description Chlorite dismutase-like proteins are structurally closely related to functional chlorite dismutases which are heme b-dependent oxidoreductases capable of reducing chlorite to chloride with simultaneous production of dioxygen. Chlorite dismutase-like proteins are incapable of performing this reaction and their biological role is still under discussion. Recently, members of this large protein family were shown to be involved in heme biosynthesis in Gram-positive bacteria, and thus the protein was renamed HemQ in these organisms. In the present work the structural and heme binding properties of the chlorite dismutase-like protein from the Gram-positive pathogen Listeria monocytogenes (LmCld) were analyzed in order to evaluate its potential role as a regulatory heme sensing protein. The homopentameric crystal structure (2.0 Å) shows high similarity to chlorite-degrading chlorite dismutases with an important difference in the structure of the putative substrate and heme entrance channel. In solution LmCld is a stable hexamer able to bind the low-spin ligand cyanide. Heme binding is reversible with K(D)-values determined to be 7.2 μM (circular dichroism spectroscopy) and 16.8 μM (isothermal titration calorimetry) at pH 7.0. Both acidic and alkaline conditions promote heme release. Presented biochemical and structural data reveal that the chlorite dismutase-like protein from L. monocytogenes could act as a potential regulatory heme sensing and storage protein within heme biosynthesis.
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spelling pubmed-44200332015-05-15 Structure and heme-binding properties of HemQ (chlorite dismutase-like protein) from Listeria monocytogenes Hofbauer, Stefan Hagmüller, Andreas Schaffner, Irene Mlynek, Georg Krutzler, Michael Stadlmayr, Gerhard Pirker, Katharina F. Obinger, Christian Daims, Holger Djinović-Carugo, Kristina Furtmüller, Paul G. Arch Biochem Biophys Article Chlorite dismutase-like proteins are structurally closely related to functional chlorite dismutases which are heme b-dependent oxidoreductases capable of reducing chlorite to chloride with simultaneous production of dioxygen. Chlorite dismutase-like proteins are incapable of performing this reaction and their biological role is still under discussion. Recently, members of this large protein family were shown to be involved in heme biosynthesis in Gram-positive bacteria, and thus the protein was renamed HemQ in these organisms. In the present work the structural and heme binding properties of the chlorite dismutase-like protein from the Gram-positive pathogen Listeria monocytogenes (LmCld) were analyzed in order to evaluate its potential role as a regulatory heme sensing protein. The homopentameric crystal structure (2.0 Å) shows high similarity to chlorite-degrading chlorite dismutases with an important difference in the structure of the putative substrate and heme entrance channel. In solution LmCld is a stable hexamer able to bind the low-spin ligand cyanide. Heme binding is reversible with K(D)-values determined to be 7.2 μM (circular dichroism spectroscopy) and 16.8 μM (isothermal titration calorimetry) at pH 7.0. Both acidic and alkaline conditions promote heme release. Presented biochemical and structural data reveal that the chlorite dismutase-like protein from L. monocytogenes could act as a potential regulatory heme sensing and storage protein within heme biosynthesis. Academic Press 2015-05-15 /pmc/articles/PMC4420033/ /pubmed/25602700 http://dx.doi.org/10.1016/j.abb.2015.01.010 Text en © 2015 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hofbauer, Stefan
Hagmüller, Andreas
Schaffner, Irene
Mlynek, Georg
Krutzler, Michael
Stadlmayr, Gerhard
Pirker, Katharina F.
Obinger, Christian
Daims, Holger
Djinović-Carugo, Kristina
Furtmüller, Paul G.
Structure and heme-binding properties of HemQ (chlorite dismutase-like protein) from Listeria monocytogenes
title Structure and heme-binding properties of HemQ (chlorite dismutase-like protein) from Listeria monocytogenes
title_full Structure and heme-binding properties of HemQ (chlorite dismutase-like protein) from Listeria monocytogenes
title_fullStr Structure and heme-binding properties of HemQ (chlorite dismutase-like protein) from Listeria monocytogenes
title_full_unstemmed Structure and heme-binding properties of HemQ (chlorite dismutase-like protein) from Listeria monocytogenes
title_short Structure and heme-binding properties of HemQ (chlorite dismutase-like protein) from Listeria monocytogenes
title_sort structure and heme-binding properties of hemq (chlorite dismutase-like protein) from listeria monocytogenes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4420033/
https://www.ncbi.nlm.nih.gov/pubmed/25602700
http://dx.doi.org/10.1016/j.abb.2015.01.010
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