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PMID: 8919448 Published · ppublish English Journal Article Review

Nitrate reduction to ammonia by enteric bacteria: redundancy, or a strategy for survival during oxygen starvation?

FEMS microbiology letters ·Vol. 136 ·No. 1 ·1996-02-01 ·Pages 1-11

Cole J

Abstract

Anaerobic metabolism of the simplest, best understood enteric bacteria such as Escherichia coli is unexpectedly complex. Recent studies of the biochemistry and genetics of nitrate reduction via nitrite to ammonia by enteric bacteria have provided insights into the reasons for this complexity. An NADH-dependent nitrite reductase in the cytoplasm works in partnership with the respiratory nitrate reductase on the cytoplasmic side of the membrane when nitrate is abundant. There is also an electrogenic, formate-dependent nitrite reductase ready to work in partnership with a periplasmic nitrate reductase when nitrite is available but nitrate is scarce. A third E. coli nitrate reductase, NarZYWV, and the poorly expressed formate dehydrogenase O possibly facilitate rapid adaptation to oxygen starvation pending the synthesis of the major respiratory formate-nitrate oxidoreductase. Although most anaerobically expressed genes are subject to transcription control, none of them are totally switched off. This enables the bacteria to be ready for a change in fortune: when growing anaerobically with nitrate, they can respond equally rapidly whether times get better with the arrival of oxygen, or get worse when the nitrate is depleted. Far from being redundant, the complexity is essential for survival in a changing environment.

MeSH Terms
Ammonia/metabolism Anaerobiosis Animals Cytochrome c Group/metabolism Cytoplasm/metabolism Electron Transport Environment Escherichia coli/genetics,metabolism Genes, Bacterial Humans Nitrate Reductase Nitrate Reductases/genetics,metabolism Nitrates/metabolism Nitrites/metabolism Oxidation-Reduction Oxygen/metabolism
Chemicals
Cytochrome c Group Nitrates Nitrites Ammonia Nitrate Reductases Nitrate Reductase Oxygen
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Cole J
School of Biochemistry, University of Birmingham, UK.
Article Info
Journal
FEMS microbiology letters
Abbr.
FEMS Microbiol Lett
ISSN
0378-1097
Published
1996-02-01
Pages
1-11
Language
English
Region
England
NLM ID
7705721
Subset
IM
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