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The MAP kinase MpkA controls cell wall integrity, oxidative stress response, gliotoxin production and iron adaptation in Aspergillus fumigatus

The saprophytic fungus Aspergillus fumigatus is the most important air-borne fungal pathogen. The cell wall of A. fumigatus has been studied intensively as a potential target for development of effective antifungal agents. A major role in maintaining cell wall integrity is played by the mitogen-acti...

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Autores principales: Jain, Radhika, Valiante, Vito, Remme, Nicole, Docimo, Teresa, Heinekamp, Thorsten, Hertweck, Christian, Gershenzon, Jonathan, Haas, Hubertus, Brakhage, Axel A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3229709/
https://www.ncbi.nlm.nih.gov/pubmed/21883519
http://dx.doi.org/10.1111/j.1365-2958.2011.07778.x
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author Jain, Radhika
Valiante, Vito
Remme, Nicole
Docimo, Teresa
Heinekamp, Thorsten
Hertweck, Christian
Gershenzon, Jonathan
Haas, Hubertus
Brakhage, Axel A
author_facet Jain, Radhika
Valiante, Vito
Remme, Nicole
Docimo, Teresa
Heinekamp, Thorsten
Hertweck, Christian
Gershenzon, Jonathan
Haas, Hubertus
Brakhage, Axel A
author_sort Jain, Radhika
collection PubMed
description The saprophytic fungus Aspergillus fumigatus is the most important air-borne fungal pathogen. The cell wall of A. fumigatus has been studied intensively as a potential target for development of effective antifungal agents. A major role in maintaining cell wall integrity is played by the mitogen-activated protein kinase (MAPK) MpkA. To gain a comprehensive insight into this central signal transduction pathway, we performed a transcriptome analysis of the ΔmpkA mutant under standard and cell wall stress conditions. Besides genes involved in cell wall remodelling, protection against ROS and secondary metabolism such as gliotoxin, pyomelanin and pseurotin A, also genes involved in siderophore biosynthesis were regulated by MpkA. Consistently, northern and western blot analyses indicated that iron starvation triggers phosphorylation and thus activation of MpkA. Furthermore, localization studies indicated that MpkA accumulates in the nucleus under iron depletion. Hence, we report the first connection between a MAPK pathway and siderophore biosynthesis. The measurement of amino acid pools and of the pools of polyamines indicated that arginine was continuously converted into ornithine to fuel the siderophore pool in the ΔmpkA mutant strain. Based on our data, we propose that MpkA fine-tunes the balance between stress response and energy consuming cellular processes.
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spelling pubmed-32297092011-12-05 The MAP kinase MpkA controls cell wall integrity, oxidative stress response, gliotoxin production and iron adaptation in Aspergillus fumigatus Jain, Radhika Valiante, Vito Remme, Nicole Docimo, Teresa Heinekamp, Thorsten Hertweck, Christian Gershenzon, Jonathan Haas, Hubertus Brakhage, Axel A Mol Microbiol Research Articles The saprophytic fungus Aspergillus fumigatus is the most important air-borne fungal pathogen. The cell wall of A. fumigatus has been studied intensively as a potential target for development of effective antifungal agents. A major role in maintaining cell wall integrity is played by the mitogen-activated protein kinase (MAPK) MpkA. To gain a comprehensive insight into this central signal transduction pathway, we performed a transcriptome analysis of the ΔmpkA mutant under standard and cell wall stress conditions. Besides genes involved in cell wall remodelling, protection against ROS and secondary metabolism such as gliotoxin, pyomelanin and pseurotin A, also genes involved in siderophore biosynthesis were regulated by MpkA. Consistently, northern and western blot analyses indicated that iron starvation triggers phosphorylation and thus activation of MpkA. Furthermore, localization studies indicated that MpkA accumulates in the nucleus under iron depletion. Hence, we report the first connection between a MAPK pathway and siderophore biosynthesis. The measurement of amino acid pools and of the pools of polyamines indicated that arginine was continuously converted into ornithine to fuel the siderophore pool in the ΔmpkA mutant strain. Based on our data, we propose that MpkA fine-tunes the balance between stress response and energy consuming cellular processes. Blackwell Publishing Ltd 2011-10 2011-08-30 /pmc/articles/PMC3229709/ /pubmed/21883519 http://dx.doi.org/10.1111/j.1365-2958.2011.07778.x Text en Copyright © 2011 Blackwell Publishing Ltd http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Research Articles
Jain, Radhika
Valiante, Vito
Remme, Nicole
Docimo, Teresa
Heinekamp, Thorsten
Hertweck, Christian
Gershenzon, Jonathan
Haas, Hubertus
Brakhage, Axel A
The MAP kinase MpkA controls cell wall integrity, oxidative stress response, gliotoxin production and iron adaptation in Aspergillus fumigatus
title The MAP kinase MpkA controls cell wall integrity, oxidative stress response, gliotoxin production and iron adaptation in Aspergillus fumigatus
title_full The MAP kinase MpkA controls cell wall integrity, oxidative stress response, gliotoxin production and iron adaptation in Aspergillus fumigatus
title_fullStr The MAP kinase MpkA controls cell wall integrity, oxidative stress response, gliotoxin production and iron adaptation in Aspergillus fumigatus
title_full_unstemmed The MAP kinase MpkA controls cell wall integrity, oxidative stress response, gliotoxin production and iron adaptation in Aspergillus fumigatus
title_short The MAP kinase MpkA controls cell wall integrity, oxidative stress response, gliotoxin production and iron adaptation in Aspergillus fumigatus
title_sort map kinase mpka controls cell wall integrity, oxidative stress response, gliotoxin production and iron adaptation in aspergillus fumigatus
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3229709/
https://www.ncbi.nlm.nih.gov/pubmed/21883519
http://dx.doi.org/10.1111/j.1365-2958.2011.07778.x
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