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The DyP-type peroxidase DtpA is a Tat-substrate required for GlxA maturation and morphogenesis in Streptomyces

The filamentous bacterium Streptomyces lividans depends on the radical copper oxidase GlxA for the formation of reproductive aerial structures and, in liquid environments, for the formation of pellets. Incorporation of copper into the active site is essential for the formation of a cross-linked tyro...

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Autores principales: Petrus, Marloes L. C., Vijgenboom, Erik, Chaplin, Amanda K., Worrall, Jonathan A. R., van Wezel, Gilles P., Claessen, Dennis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4736821/
https://www.ncbi.nlm.nih.gov/pubmed/26740586
http://dx.doi.org/10.1098/rsob.150149
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author Petrus, Marloes L. C.
Vijgenboom, Erik
Chaplin, Amanda K.
Worrall, Jonathan A. R.
van Wezel, Gilles P.
Claessen, Dennis
author_facet Petrus, Marloes L. C.
Vijgenboom, Erik
Chaplin, Amanda K.
Worrall, Jonathan A. R.
van Wezel, Gilles P.
Claessen, Dennis
author_sort Petrus, Marloes L. C.
collection PubMed
description The filamentous bacterium Streptomyces lividans depends on the radical copper oxidase GlxA for the formation of reproductive aerial structures and, in liquid environments, for the formation of pellets. Incorporation of copper into the active site is essential for the formation of a cross-linked tyrosyl-cysteine cofactor, which is needed for enzymatic activity. In this study, we show a crucial link between GlxA maturation and a group of copper-related proteins including the chaperone Sco and a novel DyP-type peroxidase hereinafter called DtpA. Under copper-limiting conditions, the sco and dtpA deletion mutants are blocked in aerial growth and pellet formation, similarly to a glxA mutant. Western blot analysis showed that GlxA maturation is perturbed in the sco and dtpA mutants, but both maturation and morphology can by rescued by increasing the bioavailability of copper. DtpA acts as a peroxidase in the presence of GlxA and is a substrate for the twin-arginine translocation (Tat) translocation pathway. In agreement, the maturation status of GlxA is also perturbed in tat mutants, which can be compensated for by the addition of copper, thereby partially restoring their morphological defects. Our data support a model wherein a copper-trafficking pathway and Tat-dependent secretion of DtpA link to the GlxA-dependent morphogenesis pathway.
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spelling pubmed-47368212016-02-23 The DyP-type peroxidase DtpA is a Tat-substrate required for GlxA maturation and morphogenesis in Streptomyces Petrus, Marloes L. C. Vijgenboom, Erik Chaplin, Amanda K. Worrall, Jonathan A. R. van Wezel, Gilles P. Claessen, Dennis Open Biol Research The filamentous bacterium Streptomyces lividans depends on the radical copper oxidase GlxA for the formation of reproductive aerial structures and, in liquid environments, for the formation of pellets. Incorporation of copper into the active site is essential for the formation of a cross-linked tyrosyl-cysteine cofactor, which is needed for enzymatic activity. In this study, we show a crucial link between GlxA maturation and a group of copper-related proteins including the chaperone Sco and a novel DyP-type peroxidase hereinafter called DtpA. Under copper-limiting conditions, the sco and dtpA deletion mutants are blocked in aerial growth and pellet formation, similarly to a glxA mutant. Western blot analysis showed that GlxA maturation is perturbed in the sco and dtpA mutants, but both maturation and morphology can by rescued by increasing the bioavailability of copper. DtpA acts as a peroxidase in the presence of GlxA and is a substrate for the twin-arginine translocation (Tat) translocation pathway. In agreement, the maturation status of GlxA is also perturbed in tat mutants, which can be compensated for by the addition of copper, thereby partially restoring their morphological defects. Our data support a model wherein a copper-trafficking pathway and Tat-dependent secretion of DtpA link to the GlxA-dependent morphogenesis pathway. The Royal Society 2016-01-06 /pmc/articles/PMC4736821/ /pubmed/26740586 http://dx.doi.org/10.1098/rsob.150149 Text en © 2016 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research
Petrus, Marloes L. C.
Vijgenboom, Erik
Chaplin, Amanda K.
Worrall, Jonathan A. R.
van Wezel, Gilles P.
Claessen, Dennis
The DyP-type peroxidase DtpA is a Tat-substrate required for GlxA maturation and morphogenesis in Streptomyces
title The DyP-type peroxidase DtpA is a Tat-substrate required for GlxA maturation and morphogenesis in Streptomyces
title_full The DyP-type peroxidase DtpA is a Tat-substrate required for GlxA maturation and morphogenesis in Streptomyces
title_fullStr The DyP-type peroxidase DtpA is a Tat-substrate required for GlxA maturation and morphogenesis in Streptomyces
title_full_unstemmed The DyP-type peroxidase DtpA is a Tat-substrate required for GlxA maturation and morphogenesis in Streptomyces
title_short The DyP-type peroxidase DtpA is a Tat-substrate required for GlxA maturation and morphogenesis in Streptomyces
title_sort dyp-type peroxidase dtpa is a tat-substrate required for glxa maturation and morphogenesis in streptomyces
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4736821/
https://www.ncbi.nlm.nih.gov/pubmed/26740586
http://dx.doi.org/10.1098/rsob.150149
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