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Therefore, bioremediation of polluted environments with microorganisms or enzymes produced by them are excellent alternatives to counteract the noxious effects of these compounds. Bacillus subtilis possesses genes encoding proteins belonging to a group of enzymes called FMN-Oxide Reductases.

ejemplo de enzimas oxidorreductasas pdf file – PDF Files

In this manuscript, we describe the distribution, functional and structural properties of these proteins which makes them potential candidates to remediate effluents contaminates with heavy metals and nitrogen-based carcinogenic compounds. Chromate-reducing properties of soluble flavoproteins from Pseudomonas putida and Escherichia coli.


Interactions of chromium with microorganisms and plants. Toxicity and carcinogenicity of chromium compounds in humans. Mechanism of hexavalent chromium detoxification by microorganisms and bioremediation application potential: Global molecular and morphological oxirorreductasas of hour chromium VI exposure on Shewanella oneidensis MR Remediation and reuse of contaminated sediments.

Mechanisms of bacterial resistance to chromium compounds. Expression, characterization and synergistic interactions of Myxobacter Sp. AL-1 Cel9 and Cel48 glycosyl hydrolases.

Detoxification of azo dyes in the context of enviromental processes. Replicative and integrative plasmids for production of human interferon gamma in Bacillus subtilis.

A single Ser85Ala mutation enhances the catalytic efficiency of subtilisin E from B.

Microbial degradation of Azo Dyes: OY1—2 isolated from soil. Heavy metals in contaminated soils: A review of sources, chemistry, risks and ejzimas available strategies for remediation. Servicio de ayuda de la revista. Bacteria, Oxide Reductases, bioremediation.