Details zur Publikation

Kategorie Textpublikation
Referenztyp Zeitschriften
DOI 10.1038/s41598-022-11606-w
Lizenz creative commons licence
Titel (primär) Gaseous NO2 induces various envelope alterations in Pseudomonas fluorescens MFAF76a
Autor Chautrand, T.; Depayras, S.; Souak, D.; Kondakova, T.; Barreau, M.; Kentache, T.; Hardouin, J.; Tahrioui, A.; Thoumire, O.; Konto-Ghiorghi, Y.; Barbey, C.; Ladam, G.; Chevalier, S.; Heipieper, H.J. ORCID logo ; Orange, N.; Duclairoir-Poc, C.
Quelle Scientific Reports
Erscheinungsjahr 2022
Department UBT
Band/Volume 12
Seite von art. 8528
Sprache englisch
Topic T7 Bioeconomy
Abstract Anthropogenic atmospheric pollution and immune response regularly expose bacteria to toxic nitrogen oxides such as NO and NO2. These reactive molecules can damage a wide variety of biomolecules such as DNA, proteins and lipids. Several components of the bacterial envelope are susceptible to be damaged by reactive nitrogen species. Furthermore, the hydrophobic core of the membranes favors the reactivity of nitrogen oxides with other molecules, making membranes an important factor in the chemistry of nitrosative stress. Since bacteria are often exposed to endogenous or exogenous nitrogen oxides, they have acquired protection mechanisms against the deleterious effects of these molecules. By exposing bacteria to gaseous NO2, this work aims to analyze the physiological effects of NO2 on the cell envelope of the airborne bacterium Pseudomonas fluorescens MFAF76a and its potential adaptive responses. Electron microscopy showed that exposure to NO2 leads to morphological alterations of the cell envelope. Furthermore, the proteomic profiling data revealed that these cell envelope alterations might be partly explained by modifications of the synthesis pathways of multiple cell envelope components, such as peptidoglycan, lipid A, and phospholipids. Together these results provide important insights into the potential adaptive responses to NO2 exposure in P. fluorescens MFAF76a needing further investigations.
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Chautrand, T., Depayras, S., Souak, D., Kondakova, T., Barreau, M., Kentache, T., Hardouin, J., Tahrioui, A., Thoumire, O., Konto-Ghiorghi, Y., Barbey, C., Ladam, G., Chevalier, S., Heipieper, H.J., Orange, N., Duclairoir-Poc, C. (2022):
Gaseous NO2 induces various envelope alterations in Pseudomonas fluorescens MFAF76a
Sci. Rep. 12 , art. 8528 10.1038/s41598-022-11606-w