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Stable integration of the Mrx1-roGFP2 biosensor to monitor dynamic changes of the mycothiol redox potential in Corynebacterium glutamicum

Mycothiol (MSH) functions as major low molecular weight (LMW) thiol in the industrially important Corynebacterium glutamicum. In this study, we genomically integrated an Mrx1-roGFP2 biosensor in C. glutamicum to measure dynamic changes of the MSH redox potential (E(MSH)) during the growth and under...

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Autores principales: Tung, Quach Ngoc, Loi, Vu Van, Busche, Tobias, Nerlich, Andreas, Mieth, Maren, Milse, Johanna, Kalinowski, Jörn, Hocke, Andreas C., Antelmann, Haike
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6258114/
https://www.ncbi.nlm.nih.gov/pubmed/30481728
http://dx.doi.org/10.1016/j.redox.2018.11.012
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author Tung, Quach Ngoc
Loi, Vu Van
Busche, Tobias
Nerlich, Andreas
Mieth, Maren
Milse, Johanna
Kalinowski, Jörn
Hocke, Andreas C.
Antelmann, Haike
author_facet Tung, Quach Ngoc
Loi, Vu Van
Busche, Tobias
Nerlich, Andreas
Mieth, Maren
Milse, Johanna
Kalinowski, Jörn
Hocke, Andreas C.
Antelmann, Haike
author_sort Tung, Quach Ngoc
collection PubMed
description Mycothiol (MSH) functions as major low molecular weight (LMW) thiol in the industrially important Corynebacterium glutamicum. In this study, we genomically integrated an Mrx1-roGFP2 biosensor in C. glutamicum to measure dynamic changes of the MSH redox potential (E(MSH)) during the growth and under oxidative stress. C. glutamicum maintains a highly reducing intrabacterial E(MSH) throughout the growth curve with basal E(MSH) levels of ~− 296 mV. Consistent with its H(2)O(2) resistant phenotype, C. glutamicum responds only weakly to 40 mM H(2)O(2), but is rapidly oxidized by low doses of NaOCl. We further monitored basal E(MSH) changes and the H(2)O(2) response in various mutants which are compromised in redox-signaling of ROS (OxyR, SigH) and in the antioxidant defense (MSH, Mtr, KatA, Mpx, Tpx). While the probe was constitutively oxidized in the mshC and mtr mutants, a smaller oxidative shift in basal E(MSH) was observed in the sigH mutant. The catalase KatA was confirmed as major H(2)O(2) detoxification enzyme required for fast biosensor re-equilibration upon return to non-stress conditions. In contrast, the peroxiredoxins Mpx and Tpx had only little impact on E(MSH) and H(2)O(2) detoxification. Further live imaging experiments using confocal laser scanning microscopy revealed the stable biosensor expression and fluorescence at the single cell level. In conclusion, the stably expressed Mrx1-roGFP2 biosensor was successfully applied to monitor dynamic E(MSH) changes in C. glutamicum during the growth, under oxidative stress and in different mutants revealing the impact of Mtr and SigH for the basal level E(MSH) and the role of OxyR and KatA for efficient H(2)O(2) detoxification under oxidative stress.
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spelling pubmed-62581142018-12-03 Stable integration of the Mrx1-roGFP2 biosensor to monitor dynamic changes of the mycothiol redox potential in Corynebacterium glutamicum Tung, Quach Ngoc Loi, Vu Van Busche, Tobias Nerlich, Andreas Mieth, Maren Milse, Johanna Kalinowski, Jörn Hocke, Andreas C. Antelmann, Haike Redox Biol Research Paper Mycothiol (MSH) functions as major low molecular weight (LMW) thiol in the industrially important Corynebacterium glutamicum. In this study, we genomically integrated an Mrx1-roGFP2 biosensor in C. glutamicum to measure dynamic changes of the MSH redox potential (E(MSH)) during the growth and under oxidative stress. C. glutamicum maintains a highly reducing intrabacterial E(MSH) throughout the growth curve with basal E(MSH) levels of ~− 296 mV. Consistent with its H(2)O(2) resistant phenotype, C. glutamicum responds only weakly to 40 mM H(2)O(2), but is rapidly oxidized by low doses of NaOCl. We further monitored basal E(MSH) changes and the H(2)O(2) response in various mutants which are compromised in redox-signaling of ROS (OxyR, SigH) and in the antioxidant defense (MSH, Mtr, KatA, Mpx, Tpx). While the probe was constitutively oxidized in the mshC and mtr mutants, a smaller oxidative shift in basal E(MSH) was observed in the sigH mutant. The catalase KatA was confirmed as major H(2)O(2) detoxification enzyme required for fast biosensor re-equilibration upon return to non-stress conditions. In contrast, the peroxiredoxins Mpx and Tpx had only little impact on E(MSH) and H(2)O(2) detoxification. Further live imaging experiments using confocal laser scanning microscopy revealed the stable biosensor expression and fluorescence at the single cell level. In conclusion, the stably expressed Mrx1-roGFP2 biosensor was successfully applied to monitor dynamic E(MSH) changes in C. glutamicum during the growth, under oxidative stress and in different mutants revealing the impact of Mtr and SigH for the basal level E(MSH) and the role of OxyR and KatA for efficient H(2)O(2) detoxification under oxidative stress. Elsevier 2018-11-17 /pmc/articles/PMC6258114/ /pubmed/30481728 http://dx.doi.org/10.1016/j.redox.2018.11.012 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Tung, Quach Ngoc
Loi, Vu Van
Busche, Tobias
Nerlich, Andreas
Mieth, Maren
Milse, Johanna
Kalinowski, Jörn
Hocke, Andreas C.
Antelmann, Haike
Stable integration of the Mrx1-roGFP2 biosensor to monitor dynamic changes of the mycothiol redox potential in Corynebacterium glutamicum
title Stable integration of the Mrx1-roGFP2 biosensor to monitor dynamic changes of the mycothiol redox potential in Corynebacterium glutamicum
title_full Stable integration of the Mrx1-roGFP2 biosensor to monitor dynamic changes of the mycothiol redox potential in Corynebacterium glutamicum
title_fullStr Stable integration of the Mrx1-roGFP2 biosensor to monitor dynamic changes of the mycothiol redox potential in Corynebacterium glutamicum
title_full_unstemmed Stable integration of the Mrx1-roGFP2 biosensor to monitor dynamic changes of the mycothiol redox potential in Corynebacterium glutamicum
title_short Stable integration of the Mrx1-roGFP2 biosensor to monitor dynamic changes of the mycothiol redox potential in Corynebacterium glutamicum
title_sort stable integration of the mrx1-rogfp2 biosensor to monitor dynamic changes of the mycothiol redox potential in corynebacterium glutamicum
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6258114/
https://www.ncbi.nlm.nih.gov/pubmed/30481728
http://dx.doi.org/10.1016/j.redox.2018.11.012
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