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The bZIP Transcription Factor HapX Is Post-Translationally Regulated to Control Iron Homeostasis in Aspergillus fumigatus

The airborne fungus Aspergillus fumigatus causes opportunistic infections in humans with high mortality rates in immunocompromised patients. Previous work established that the bZIP transcription factor HapX is essential for virulence via adaptation to iron limitation by repressing iron-consuming pat...

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Autores principales: López-Berges, Manuel Sánchez, Scheven, Mareike Thea, Hortschansky, Peter, Misslinger, Matthias, Baldin, Clara, Gsaller, Fabio, Werner, Ernst R., Krüger, Thomas, Kniemeyer, Olaf, Weber, Jakob, Brakhage, Axel A., Haas, Hubertus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8307855/
https://www.ncbi.nlm.nih.gov/pubmed/34299357
http://dx.doi.org/10.3390/ijms22147739
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author López-Berges, Manuel Sánchez
Scheven, Mareike Thea
Hortschansky, Peter
Misslinger, Matthias
Baldin, Clara
Gsaller, Fabio
Werner, Ernst R.
Krüger, Thomas
Kniemeyer, Olaf
Weber, Jakob
Brakhage, Axel A.
Haas, Hubertus
author_facet López-Berges, Manuel Sánchez
Scheven, Mareike Thea
Hortschansky, Peter
Misslinger, Matthias
Baldin, Clara
Gsaller, Fabio
Werner, Ernst R.
Krüger, Thomas
Kniemeyer, Olaf
Weber, Jakob
Brakhage, Axel A.
Haas, Hubertus
author_sort López-Berges, Manuel Sánchez
collection PubMed
description The airborne fungus Aspergillus fumigatus causes opportunistic infections in humans with high mortality rates in immunocompromised patients. Previous work established that the bZIP transcription factor HapX is essential for virulence via adaptation to iron limitation by repressing iron-consuming pathways and activating iron acquisition mechanisms. Moreover, HapX was shown to be essential for transcriptional activation of vacuolar iron storage and iron-dependent pathways in response to iron availability. Here, we demonstrate that HapX has a very short half-life during iron starvation, which is further decreased in response to iron, while siderophore biosynthetic enzymes are very stable. We identified Fbx22 and SumO as HapX interactors and, in agreement, HapX post-translational modifications including ubiquitination of lysine(161), sumoylation of lysine(242) and phosphorylation of threonine(319). All three modifications were enriched in the immediate adaptation from iron-limiting to iron-replete conditions. Interfering with these post-translational modifications, either by point mutations or by inactivation, of Fbx22 or SumO, altered HapX degradation, heme biosynthesis and iron resistance to different extents. Consistent with the need to precisely regulate HapX protein levels, overexpression of hapX caused significant growth defects under iron sufficiency. Taken together, our results indicate that post-translational regulation of HapX is important to control iron homeostasis in A. fumigatus.
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spelling pubmed-83078552021-07-25 The bZIP Transcription Factor HapX Is Post-Translationally Regulated to Control Iron Homeostasis in Aspergillus fumigatus López-Berges, Manuel Sánchez Scheven, Mareike Thea Hortschansky, Peter Misslinger, Matthias Baldin, Clara Gsaller, Fabio Werner, Ernst R. Krüger, Thomas Kniemeyer, Olaf Weber, Jakob Brakhage, Axel A. Haas, Hubertus Int J Mol Sci Article The airborne fungus Aspergillus fumigatus causes opportunistic infections in humans with high mortality rates in immunocompromised patients. Previous work established that the bZIP transcription factor HapX is essential for virulence via adaptation to iron limitation by repressing iron-consuming pathways and activating iron acquisition mechanisms. Moreover, HapX was shown to be essential for transcriptional activation of vacuolar iron storage and iron-dependent pathways in response to iron availability. Here, we demonstrate that HapX has a very short half-life during iron starvation, which is further decreased in response to iron, while siderophore biosynthetic enzymes are very stable. We identified Fbx22 and SumO as HapX interactors and, in agreement, HapX post-translational modifications including ubiquitination of lysine(161), sumoylation of lysine(242) and phosphorylation of threonine(319). All three modifications were enriched in the immediate adaptation from iron-limiting to iron-replete conditions. Interfering with these post-translational modifications, either by point mutations or by inactivation, of Fbx22 or SumO, altered HapX degradation, heme biosynthesis and iron resistance to different extents. Consistent with the need to precisely regulate HapX protein levels, overexpression of hapX caused significant growth defects under iron sufficiency. Taken together, our results indicate that post-translational regulation of HapX is important to control iron homeostasis in A. fumigatus. MDPI 2021-07-20 /pmc/articles/PMC8307855/ /pubmed/34299357 http://dx.doi.org/10.3390/ijms22147739 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
López-Berges, Manuel Sánchez
Scheven, Mareike Thea
Hortschansky, Peter
Misslinger, Matthias
Baldin, Clara
Gsaller, Fabio
Werner, Ernst R.
Krüger, Thomas
Kniemeyer, Olaf
Weber, Jakob
Brakhage, Axel A.
Haas, Hubertus
The bZIP Transcription Factor HapX Is Post-Translationally Regulated to Control Iron Homeostasis in Aspergillus fumigatus
title The bZIP Transcription Factor HapX Is Post-Translationally Regulated to Control Iron Homeostasis in Aspergillus fumigatus
title_full The bZIP Transcription Factor HapX Is Post-Translationally Regulated to Control Iron Homeostasis in Aspergillus fumigatus
title_fullStr The bZIP Transcription Factor HapX Is Post-Translationally Regulated to Control Iron Homeostasis in Aspergillus fumigatus
title_full_unstemmed The bZIP Transcription Factor HapX Is Post-Translationally Regulated to Control Iron Homeostasis in Aspergillus fumigatus
title_short The bZIP Transcription Factor HapX Is Post-Translationally Regulated to Control Iron Homeostasis in Aspergillus fumigatus
title_sort bzip transcription factor hapx is post-translationally regulated to control iron homeostasis in aspergillus fumigatus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8307855/
https://www.ncbi.nlm.nih.gov/pubmed/34299357
http://dx.doi.org/10.3390/ijms22147739
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