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The histone chaperone HIR maintains chromatin states to control nitrogen assimilation and fungal virulence

Adaptation to changing environments and immune evasion is pivotal for fitness of pathogens. Yet, the underlying mechanisms remain largely unknown. Adaptation is governed by dynamic transcriptional re-programming, which is tightly connected to chromatin architecture. Here, we report a pivotal role fo...

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Autores principales: Jenull, Sabrina, Mair, Theresia, Tscherner, Michael, Penninger, Philipp, Zwolanek, Florian, Silao, Fitz-Gerald S., de San Vicente, Kontxi Martinez, Riedelberger, Michael, Bandari, Naga C., Shivarathri, Raju, Petryshyn, Andriy, Chauhan, Neeraj, Zacchi, Lucia F., LeibundGut -Landmann, Salomé, Ljungdahl, Per O., Kuchler, Karl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8493472/
https://www.ncbi.nlm.nih.gov/pubmed/34289370
http://dx.doi.org/10.1016/j.celrep.2021.109406
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author Jenull, Sabrina
Mair, Theresia
Tscherner, Michael
Penninger, Philipp
Zwolanek, Florian
Silao, Fitz-Gerald S.
de San Vicente, Kontxi Martinez
Riedelberger, Michael
Bandari, Naga C.
Shivarathri, Raju
Petryshyn, Andriy
Chauhan, Neeraj
Zacchi, Lucia F.
LeibundGut -Landmann, Salomé
Ljungdahl, Per O.
Kuchler, Karl
author_facet Jenull, Sabrina
Mair, Theresia
Tscherner, Michael
Penninger, Philipp
Zwolanek, Florian
Silao, Fitz-Gerald S.
de San Vicente, Kontxi Martinez
Riedelberger, Michael
Bandari, Naga C.
Shivarathri, Raju
Petryshyn, Andriy
Chauhan, Neeraj
Zacchi, Lucia F.
LeibundGut -Landmann, Salomé
Ljungdahl, Per O.
Kuchler, Karl
author_sort Jenull, Sabrina
collection PubMed
description Adaptation to changing environments and immune evasion is pivotal for fitness of pathogens. Yet, the underlying mechanisms remain largely unknown. Adaptation is governed by dynamic transcriptional re-programming, which is tightly connected to chromatin architecture. Here, we report a pivotal role for the HIR histone chaperone complex in modulating virulence of the human fungal pathogen Candida albicans. Genetic ablation of HIR function alters chromatin accessibility linked to aberrant transcriptional responses to protein as nitrogen source. This accelerates metabolic adaptation and increases the release of extracellular proteases, which enables scavenging of alternative nitrogen sources. Furthermore, HIR controls fungal virulence, as HIR1 deletion leads to differential recognition by immune cells and hypervirulence in a mouse model of systemic infection. This work provides mechanistic insights into chromatin-coupled regulatory mechanisms that fine-tune pathogen gene expression and virulence. Furthermore, the data point toward the requirement of refined screening approaches to exploit chromatin modifications as antifungal strategies.
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spelling pubmed-84934722021-10-06 The histone chaperone HIR maintains chromatin states to control nitrogen assimilation and fungal virulence Jenull, Sabrina Mair, Theresia Tscherner, Michael Penninger, Philipp Zwolanek, Florian Silao, Fitz-Gerald S. de San Vicente, Kontxi Martinez Riedelberger, Michael Bandari, Naga C. Shivarathri, Raju Petryshyn, Andriy Chauhan, Neeraj Zacchi, Lucia F. LeibundGut -Landmann, Salomé Ljungdahl, Per O. Kuchler, Karl Cell Rep Article Adaptation to changing environments and immune evasion is pivotal for fitness of pathogens. Yet, the underlying mechanisms remain largely unknown. Adaptation is governed by dynamic transcriptional re-programming, which is tightly connected to chromatin architecture. Here, we report a pivotal role for the HIR histone chaperone complex in modulating virulence of the human fungal pathogen Candida albicans. Genetic ablation of HIR function alters chromatin accessibility linked to aberrant transcriptional responses to protein as nitrogen source. This accelerates metabolic adaptation and increases the release of extracellular proteases, which enables scavenging of alternative nitrogen sources. Furthermore, HIR controls fungal virulence, as HIR1 deletion leads to differential recognition by immune cells and hypervirulence in a mouse model of systemic infection. This work provides mechanistic insights into chromatin-coupled regulatory mechanisms that fine-tune pathogen gene expression and virulence. Furthermore, the data point toward the requirement of refined screening approaches to exploit chromatin modifications as antifungal strategies. 2021-07-20 /pmc/articles/PMC8493472/ /pubmed/34289370 http://dx.doi.org/10.1016/j.celrep.2021.109406 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Jenull, Sabrina
Mair, Theresia
Tscherner, Michael
Penninger, Philipp
Zwolanek, Florian
Silao, Fitz-Gerald S.
de San Vicente, Kontxi Martinez
Riedelberger, Michael
Bandari, Naga C.
Shivarathri, Raju
Petryshyn, Andriy
Chauhan, Neeraj
Zacchi, Lucia F.
LeibundGut -Landmann, Salomé
Ljungdahl, Per O.
Kuchler, Karl
The histone chaperone HIR maintains chromatin states to control nitrogen assimilation and fungal virulence
title The histone chaperone HIR maintains chromatin states to control nitrogen assimilation and fungal virulence
title_full The histone chaperone HIR maintains chromatin states to control nitrogen assimilation and fungal virulence
title_fullStr The histone chaperone HIR maintains chromatin states to control nitrogen assimilation and fungal virulence
title_full_unstemmed The histone chaperone HIR maintains chromatin states to control nitrogen assimilation and fungal virulence
title_short The histone chaperone HIR maintains chromatin states to control nitrogen assimilation and fungal virulence
title_sort histone chaperone hir maintains chromatin states to control nitrogen assimilation and fungal virulence
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8493472/
https://www.ncbi.nlm.nih.gov/pubmed/34289370
http://dx.doi.org/10.1016/j.celrep.2021.109406
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