Enzymes and associated electron transport systems that catalyse the respiratory reduction of nitrogen oxides and oxyanions
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About: This article is published in Biochimica et Biophysica Acta. The article was published on 12 Dec 1995. and is currently open access.
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Citations
Nitrate, bacteria and human health.
TL;DR: The evidence that nitrate-reducing commensals have a true symbiotic role in mammals and facilitate a previously unrecognized but potentially important aspect of the nitrogen cycle is considered.
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Prokaryotic Nitrate Reduction: Molecular Properties and Functional Distinction among Bacterial Nitrate Reductases
Conrado Moreno-Vivián,Purificación Cabello,Manuel Martínez-Luque,Rafael Blasco,Francisco Castillo +4 more
TL;DR: Nitrogen is a basic element for life because it is a component of the two preeminent biological macromolecules: proteins and nucleic acids.
607
Nitrite reductase genes (nirK and nirS) as functional markers to investigate diversity of denitrifying bacteria in pacific northwest marine sediment communities.
TL;DR: Findings show a very high diversity of nirsequences within small samples and that these novel nirclusters, some very divergent from known sequences, are not known in cultivated denitrifiers.
574
Bacterial respiration: a flexible process for a changing environment.
TL;DR: It is amongst the Bacteria and Archaea that respiratory flexibility can be found at its most extreme and contributes to the ability of prokaryotes to colonize many of Earth’s most hostile microoxic and anoxic environments.
574
Denitrifying genes in bacterial and Archaeal genomes.
TL;DR: The current knowledge on denitrifying genes is summarized and their genetic organizations are compared by using new sequences resulting from the analysis of finished and unfinished microbial genomes with a special attention paid to the clustering of genes encoding different classes of reductases.
532
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