Scientific article: “Production of selenium nanoparticles occurs through an interconnected pathway of sulphur metabolism and oxidative stress response in Pseudomonas putida KT2440”

Imperial College London and IDENER had a joint scientific publication:

Title: Production of selenium nanoparticles occurs through an interconnected pathway of sulphur metabolism and oxidative stress response in Pseudomonas putida KT2440

Abstract

The soil bacterium Pseudomonas putida KT2440 has been shown to produce selenium nanoparticles aerobically from selenite; however, the molecular actors involved in this process are unknown. Here, through a combination of genetic and analytical techniques, we report the first insights into selenite metabolism in this bacterium. Our results suggest that the reduction of selenite occurs through an interconnected metabolic network involving central metabolic reactions, sulphur metabolism, and the response to oxidative stress. Genes such as sucA, D2HGDH and PP_3148 revealed that the 2-ketoglutarate and glutamate metabolism is important to convert selenite into selenium. On the other hand, mutations affecting the activity of the sulphite reductase decreased the bacteria’s ability to transform selenite. Other genes related to sulphur metabolism (ssuEF, sfnCE, sqrR, sqr and pdo2) and stress response (gqr, lsfA, ahpCF and sadI) were also identified as involved in selenite transformation. Interestingly, suppression of genes sqrR, sqr and pdo2 resulted in the production of selenium nanoparticles at a higher rate than the wild-type strain, which is of biotechnological interest. The data provided in this study brings us closer to understanding the metabolism of selenium in bacteria and offers new targets for the development of biotechnological tools for the production of selenium nanoparticles.

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IDENER RESEARCH & DEVELOPMENT AGRUPACION DE INTERES ECONOMICO

Calle Earle Ovington 24-8, La Rinconada Sevilla, 41300, ES

Email: info@secreted.eu

 

Project Details

Sustainable Exploitation of bio-based Compounds Revealed and Engineered from naTural sources Topic: FNR-11-2020 Prospecting aquatic and terrestrial natural biological resources for biologically active compounds

 

Funding

This Project has received funding from the European Community’s H2020 Programme under the grant agreement No. 101000794. The material presented and views expressed here are the responsibility of the author(s) only. Funding Scheme: H2020-FNR-2020-2.

Contact

IDENER RESEARCH & DEVELOPMENT AGRUPACION DE INTERES ECONOMICO

Calle Earle Ovington 24-8, La Rinconada Sevilla, 41300, ES

Email: info@secreted.eu

 

Project Details

Sustainable Exploitation of bio-based Compounds Revealed and Engineered from naTural sources Topic: FNR-11-2020 Prospecting aquatic and terrestrial natural biological resources for biologically active compounds

 

Funding

This Project has received funding from the European Community’s H2020 Programme under the grant agreement No. 101000794. The material presented and views expressed here are the responsibility of the author(s) only. Funding Scheme: H2020-FNR-2020-2.

Contact

IDENER RESEARCH & DEVELOPMENT AGRUPACION DE INTERES ECONOMICO

Calle Earle Ovington 24-8, La Rinconada Sevilla, 41300, ES

Email: info@secreted.eu

 

Project Details

Sustainable Exploitation of bio-based Compounds Revealed and Engineered from naTural sources Topic: FNR-11-2020 Prospecting aquatic and terrestrial natural biological resources for biologically active compounds

Funding

This Project has received funding from the European Community’s H2020 Programme under the grant agreement No. 101000794. The material presented and views expressed here are the responsibility of the author(s) only. Funding Scheme: H2020-FNR-2020-2.

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© Copyright 2025 by EXELISIS IKE