Cargando…

Exploiting Catabolite Repression and Stringent Response to Control Delay and Multimodality of Bioluminescence Signal by Metal Whole-Cell Biosensors: Interplay between Metal Bioavailability and Nutritional Medium Conditions

The time-dependent response of metal-detecting whole-cell luminescent bacterial sensors is impacted by metal speciation/bioavailability in solution. The comprehensive understanding of such connections requires the consideration of the bacterial energy metabolism at stake and the effects of supplied...

Descripción completa

Detalles Bibliográficos
Autores principales: Delatour, Eva, Pagnout, Christophe, Zaffino, Marie, Duval, Jérôme F. L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9139025/
https://www.ncbi.nlm.nih.gov/pubmed/35624628
http://dx.doi.org/10.3390/bios12050327
_version_ 1784714762760749056
author Delatour, Eva
Pagnout, Christophe
Zaffino, Marie
Duval, Jérôme F. L.
author_facet Delatour, Eva
Pagnout, Christophe
Zaffino, Marie
Duval, Jérôme F. L.
author_sort Delatour, Eva
collection PubMed
description The time-dependent response of metal-detecting whole-cell luminescent bacterial sensors is impacted by metal speciation/bioavailability in solution. The comprehensive understanding of such connections requires the consideration of the bacterial energy metabolism at stake and the effects of supplied food on cells’ capability to convert bioaccumulated metals into light. Accordingly, we investigated the time response (48 h assay) of PzntA-luxCDABE Escherichia coli Cd biosensors in media differing with respect to sources of amino acids (tryptone or Lysogeny Broth) and carbon (glucose, xylose and mixtures thereof). We show that the resulting coupling between the stringent cell response and glucose/xylose-mediated catabolite repressions lead to well-defined multimodalities and shapes of the bioluminescence signal over time. Based on a recent theory for the time–response of metal-sensing luminescent bacteria, successful theoretical reconstructions of the bioluminescence signals are reported under all Cd concentrations (0–20 nM) and nutritive conditions examined. This analysis leads to the evaluation of time-dependent cell photoactivity and qualitative information on metal speciation/bioavailability in solution. Biosensor performance and the position, shape, number, and magnitude of detected peaks are discussed in relation to the metabolic pathways operative during the successive light emission modes identified here over time. Altogether, the results clarify the contributions of metal/nutrient bio-availabilities and food quality to cell response typology.
format Online
Article
Text
id pubmed-9139025
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-91390252022-05-28 Exploiting Catabolite Repression and Stringent Response to Control Delay and Multimodality of Bioluminescence Signal by Metal Whole-Cell Biosensors: Interplay between Metal Bioavailability and Nutritional Medium Conditions Delatour, Eva Pagnout, Christophe Zaffino, Marie Duval, Jérôme F. L. Biosensors (Basel) Article The time-dependent response of metal-detecting whole-cell luminescent bacterial sensors is impacted by metal speciation/bioavailability in solution. The comprehensive understanding of such connections requires the consideration of the bacterial energy metabolism at stake and the effects of supplied food on cells’ capability to convert bioaccumulated metals into light. Accordingly, we investigated the time response (48 h assay) of PzntA-luxCDABE Escherichia coli Cd biosensors in media differing with respect to sources of amino acids (tryptone or Lysogeny Broth) and carbon (glucose, xylose and mixtures thereof). We show that the resulting coupling between the stringent cell response and glucose/xylose-mediated catabolite repressions lead to well-defined multimodalities and shapes of the bioluminescence signal over time. Based on a recent theory for the time–response of metal-sensing luminescent bacteria, successful theoretical reconstructions of the bioluminescence signals are reported under all Cd concentrations (0–20 nM) and nutritive conditions examined. This analysis leads to the evaluation of time-dependent cell photoactivity and qualitative information on metal speciation/bioavailability in solution. Biosensor performance and the position, shape, number, and magnitude of detected peaks are discussed in relation to the metabolic pathways operative during the successive light emission modes identified here over time. Altogether, the results clarify the contributions of metal/nutrient bio-availabilities and food quality to cell response typology. MDPI 2022-05-11 /pmc/articles/PMC9139025/ /pubmed/35624628 http://dx.doi.org/10.3390/bios12050327 Text en © 2022 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
Delatour, Eva
Pagnout, Christophe
Zaffino, Marie
Duval, Jérôme F. L.
Exploiting Catabolite Repression and Stringent Response to Control Delay and Multimodality of Bioluminescence Signal by Metal Whole-Cell Biosensors: Interplay between Metal Bioavailability and Nutritional Medium Conditions
title Exploiting Catabolite Repression and Stringent Response to Control Delay and Multimodality of Bioluminescence Signal by Metal Whole-Cell Biosensors: Interplay between Metal Bioavailability and Nutritional Medium Conditions
title_full Exploiting Catabolite Repression and Stringent Response to Control Delay and Multimodality of Bioluminescence Signal by Metal Whole-Cell Biosensors: Interplay between Metal Bioavailability and Nutritional Medium Conditions
title_fullStr Exploiting Catabolite Repression and Stringent Response to Control Delay and Multimodality of Bioluminescence Signal by Metal Whole-Cell Biosensors: Interplay between Metal Bioavailability and Nutritional Medium Conditions
title_full_unstemmed Exploiting Catabolite Repression and Stringent Response to Control Delay and Multimodality of Bioluminescence Signal by Metal Whole-Cell Biosensors: Interplay between Metal Bioavailability and Nutritional Medium Conditions
title_short Exploiting Catabolite Repression and Stringent Response to Control Delay and Multimodality of Bioluminescence Signal by Metal Whole-Cell Biosensors: Interplay between Metal Bioavailability and Nutritional Medium Conditions
title_sort exploiting catabolite repression and stringent response to control delay and multimodality of bioluminescence signal by metal whole-cell biosensors: interplay between metal bioavailability and nutritional medium conditions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9139025/
https://www.ncbi.nlm.nih.gov/pubmed/35624628
http://dx.doi.org/10.3390/bios12050327
work_keys_str_mv AT delatoureva exploitingcataboliterepressionandstringentresponsetocontroldelayandmultimodalityofbioluminescencesignalbymetalwholecellbiosensorsinterplaybetweenmetalbioavailabilityandnutritionalmediumconditions
AT pagnoutchristophe exploitingcataboliterepressionandstringentresponsetocontroldelayandmultimodalityofbioluminescencesignalbymetalwholecellbiosensorsinterplaybetweenmetalbioavailabilityandnutritionalmediumconditions
AT zaffinomarie exploitingcataboliterepressionandstringentresponsetocontroldelayandmultimodalityofbioluminescencesignalbymetalwholecellbiosensorsinterplaybetweenmetalbioavailabilityandnutritionalmediumconditions
AT duvaljeromefl exploitingcataboliterepressionandstringentresponsetocontroldelayandmultimodalityofbioluminescencesignalbymetalwholecellbiosensorsinterplaybetweenmetalbioavailabilityandnutritionalmediumconditions