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The critical role of S-lactoylglutathione formation during methylglyoxal detoxification in Escherichia coli
Survival of exposure to methylglyoxal (MG) in Gram-negative pathogens is largely dependent upon the operation of the glutathione-dependent glyoxalase system, consisting of two enzymes, GlxI (gloA) and GlxII (gloB). In addition, the activation of the KefGB potassium efflux system is maintained closed...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Blackwell Publishing Ltd
2010
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3412212/ https://www.ncbi.nlm.nih.gov/pubmed/21143325 http://dx.doi.org/10.1111/j.1365-2958.2010.07426.x |
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author | Ozyamak, Ertan Black, Susan S Walker, Claire A MacLean, Morag J Bartlett, Wendy Miller, Samantha Booth, Ian R |
author_facet | Ozyamak, Ertan Black, Susan S Walker, Claire A MacLean, Morag J Bartlett, Wendy Miller, Samantha Booth, Ian R |
author_sort | Ozyamak, Ertan |
collection | PubMed |
description | Survival of exposure to methylglyoxal (MG) in Gram-negative pathogens is largely dependent upon the operation of the glutathione-dependent glyoxalase system, consisting of two enzymes, GlxI (gloA) and GlxII (gloB). In addition, the activation of the KefGB potassium efflux system is maintained closed by glutathione (GSH) and is activated by S-lactoylGSH (SLG), the intermediate formed by GlxI and destroyed by GlxII. Escherichia coli mutants lacking GlxI are known to be extremely sensitive to MG. In this study we demonstrate that a ΔgloB mutant is as tolerant of MG as the parent, despite having the same degree of inhibition of MG detoxification as a ΔgloA strain. Increased expression of GlxII from a multicopy plasmid sensitizes E. coli to MG. Measurement of SLG pools, KefGB activity and cytoplasmic pH shows these parameters to be linked and to be very sensitive to changes in the activity of GlxI and GlxII. The SLG pool determines the activity of KefGB and the degree of acidification of the cytoplasm, which is a major determinant of the sensitivity to electrophiles. The data are discussed in terms of how cell fate is determined by the relative abundance of the enzymes and KefGB. |
format | Online Article Text |
id | pubmed-3412212 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2010 |
publisher | Blackwell Publishing Ltd |
record_format | MEDLINE/PubMed |
spelling | pubmed-34122122012-08-07 The critical role of S-lactoylglutathione formation during methylglyoxal detoxification in Escherichia coli Ozyamak, Ertan Black, Susan S Walker, Claire A MacLean, Morag J Bartlett, Wendy Miller, Samantha Booth, Ian R Mol Microbiol Research Articles Survival of exposure to methylglyoxal (MG) in Gram-negative pathogens is largely dependent upon the operation of the glutathione-dependent glyoxalase system, consisting of two enzymes, GlxI (gloA) and GlxII (gloB). In addition, the activation of the KefGB potassium efflux system is maintained closed by glutathione (GSH) and is activated by S-lactoylGSH (SLG), the intermediate formed by GlxI and destroyed by GlxII. Escherichia coli mutants lacking GlxI are known to be extremely sensitive to MG. In this study we demonstrate that a ΔgloB mutant is as tolerant of MG as the parent, despite having the same degree of inhibition of MG detoxification as a ΔgloA strain. Increased expression of GlxII from a multicopy plasmid sensitizes E. coli to MG. Measurement of SLG pools, KefGB activity and cytoplasmic pH shows these parameters to be linked and to be very sensitive to changes in the activity of GlxI and GlxII. The SLG pool determines the activity of KefGB and the degree of acidification of the cytoplasm, which is a major determinant of the sensitivity to electrophiles. The data are discussed in terms of how cell fate is determined by the relative abundance of the enzymes and KefGB. Blackwell Publishing Ltd 2010-12 /pmc/articles/PMC3412212/ /pubmed/21143325 http://dx.doi.org/10.1111/j.1365-2958.2010.07426.x Text en © 2010 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 Ozyamak, Ertan Black, Susan S Walker, Claire A MacLean, Morag J Bartlett, Wendy Miller, Samantha Booth, Ian R The critical role of S-lactoylglutathione formation during methylglyoxal detoxification in Escherichia coli |
title | The critical role of S-lactoylglutathione formation during methylglyoxal detoxification in Escherichia coli |
title_full | The critical role of S-lactoylglutathione formation during methylglyoxal detoxification in Escherichia coli |
title_fullStr | The critical role of S-lactoylglutathione formation during methylglyoxal detoxification in Escherichia coli |
title_full_unstemmed | The critical role of S-lactoylglutathione formation during methylglyoxal detoxification in Escherichia coli |
title_short | The critical role of S-lactoylglutathione formation during methylglyoxal detoxification in Escherichia coli |
title_sort | critical role of s-lactoylglutathione formation during methylglyoxal detoxification in escherichia coli |
topic | Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3412212/ https://www.ncbi.nlm.nih.gov/pubmed/21143325 http://dx.doi.org/10.1111/j.1365-2958.2010.07426.x |
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