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CopR, a Global Regulator of Transcription to Maintain Copper Homeostasis in Pyrococcus furiosus

Although copper is in many cases an essential micronutrient for cellular life, higher concentrations are toxic. Therefore, all living cells have developed strategies to maintain copper homeostasis. In this manuscript, we have analyzed the transcriptome-wide response of Pyrococcus furiosus to increas...

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Autores principales: Grünberger, Felix, Reichelt, Robert, Waege, Ingrid, Ned, Verena, Bronner, Korbinian, Kaljanac, Marcell, Weber, Nina, El Ahmad, Zubeir, Knauss, Lena, Madej, M. Gregor, Ziegler, Christine, Grohmann, Dina, Hausner, Winfried
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7830388/
https://www.ncbi.nlm.nih.gov/pubmed/33505379
http://dx.doi.org/10.3389/fmicb.2020.613532
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author Grünberger, Felix
Reichelt, Robert
Waege, Ingrid
Ned, Verena
Bronner, Korbinian
Kaljanac, Marcell
Weber, Nina
El Ahmad, Zubeir
Knauss, Lena
Madej, M. Gregor
Ziegler, Christine
Grohmann, Dina
Hausner, Winfried
author_facet Grünberger, Felix
Reichelt, Robert
Waege, Ingrid
Ned, Verena
Bronner, Korbinian
Kaljanac, Marcell
Weber, Nina
El Ahmad, Zubeir
Knauss, Lena
Madej, M. Gregor
Ziegler, Christine
Grohmann, Dina
Hausner, Winfried
author_sort Grünberger, Felix
collection PubMed
description Although copper is in many cases an essential micronutrient for cellular life, higher concentrations are toxic. Therefore, all living cells have developed strategies to maintain copper homeostasis. In this manuscript, we have analyzed the transcriptome-wide response of Pyrococcus furiosus to increased copper concentrations and described the essential role of the putative copper-sensing metalloregulator CopR in the detoxification process. To this end, we employed biochemical and biophysical methods to characterize the role of CopR. Additionally, a copR knockout strain revealed an amplified sensitivity in comparison to the parental strain towards increased copper levels, which designates an essential role of CopR for copper homeostasis. To learn more about the CopR-regulated gene network, we performed differential gene expression and ChIP-seq analysis under normal and 20 μM copper-shock conditions. By integrating the transcriptome and genome-wide binding data, we found that CopR binds to the upstream regions of many copper-induced genes. Negative-stain transmission electron microscopy and 2D class averaging revealed an octameric assembly formed from a tetramer of dimers for CopR, similar to published crystal structures from the Lrp family. In conclusion, we propose a model for CopR-regulated transcription and highlight the regulatory network that enables Pyrococcus to respond to increased copper concentrations.
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spelling pubmed-78303882021-01-26 CopR, a Global Regulator of Transcription to Maintain Copper Homeostasis in Pyrococcus furiosus Grünberger, Felix Reichelt, Robert Waege, Ingrid Ned, Verena Bronner, Korbinian Kaljanac, Marcell Weber, Nina El Ahmad, Zubeir Knauss, Lena Madej, M. Gregor Ziegler, Christine Grohmann, Dina Hausner, Winfried Front Microbiol Microbiology Although copper is in many cases an essential micronutrient for cellular life, higher concentrations are toxic. Therefore, all living cells have developed strategies to maintain copper homeostasis. In this manuscript, we have analyzed the transcriptome-wide response of Pyrococcus furiosus to increased copper concentrations and described the essential role of the putative copper-sensing metalloregulator CopR in the detoxification process. To this end, we employed biochemical and biophysical methods to characterize the role of CopR. Additionally, a copR knockout strain revealed an amplified sensitivity in comparison to the parental strain towards increased copper levels, which designates an essential role of CopR for copper homeostasis. To learn more about the CopR-regulated gene network, we performed differential gene expression and ChIP-seq analysis under normal and 20 μM copper-shock conditions. By integrating the transcriptome and genome-wide binding data, we found that CopR binds to the upstream regions of many copper-induced genes. Negative-stain transmission electron microscopy and 2D class averaging revealed an octameric assembly formed from a tetramer of dimers for CopR, similar to published crystal structures from the Lrp family. In conclusion, we propose a model for CopR-regulated transcription and highlight the regulatory network that enables Pyrococcus to respond to increased copper concentrations. Frontiers Media S.A. 2021-01-11 /pmc/articles/PMC7830388/ /pubmed/33505379 http://dx.doi.org/10.3389/fmicb.2020.613532 Text en Copyright © 2021 Grünberger, Reichelt, Waege, Ned, Bronner, Kaljanac, Weber, El Ahmad, Knauss, Madej, Ziegler, Grohmann and Hausner. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Grünberger, Felix
Reichelt, Robert
Waege, Ingrid
Ned, Verena
Bronner, Korbinian
Kaljanac, Marcell
Weber, Nina
El Ahmad, Zubeir
Knauss, Lena
Madej, M. Gregor
Ziegler, Christine
Grohmann, Dina
Hausner, Winfried
CopR, a Global Regulator of Transcription to Maintain Copper Homeostasis in Pyrococcus furiosus
title CopR, a Global Regulator of Transcription to Maintain Copper Homeostasis in Pyrococcus furiosus
title_full CopR, a Global Regulator of Transcription to Maintain Copper Homeostasis in Pyrococcus furiosus
title_fullStr CopR, a Global Regulator of Transcription to Maintain Copper Homeostasis in Pyrococcus furiosus
title_full_unstemmed CopR, a Global Regulator of Transcription to Maintain Copper Homeostasis in Pyrococcus furiosus
title_short CopR, a Global Regulator of Transcription to Maintain Copper Homeostasis in Pyrococcus furiosus
title_sort copr, a global regulator of transcription to maintain copper homeostasis in pyrococcus furiosus
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7830388/
https://www.ncbi.nlm.nih.gov/pubmed/33505379
http://dx.doi.org/10.3389/fmicb.2020.613532
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