Trimethylamine N-oxide (TMAO) reductase activity in chlorate-resistant or respiration-deficient mutants ofEscherichia coli
Author:
Publisher
Oxford University Press (OUP)
Subject
Genetics,Molecular Biology,Microbiology
Link
http://academic.oup.com/femsle/article-pdf/12/3/249/19085570/12-3-249.pdf
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1. Anaerobic growth ofEscherichia coli on formate by reduction of nitrate, fumarate, and trimethylamine N-oxide
2. Redox mechanisms in “oxidant-dependent” hexose fermentation by Rhodopseudomonas capsulata
3. Reduction of trimethylamine N-oxide byEscherichia coli as anaerobic respiration
4. Trimethylamine oxide reduction by Salmonella
5. Bacterial respiration
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1. Trimethylamine and Trimethylamine N-Oxide, a Flavin-Containing Monooxygenase 3 (FMO3)-Mediated Host-Microbiome Metabolic Axis Implicated in Health and Disease;Drug Metabolism and Disposition;2016-05-17
2. Trimethylamine-N-oxide reductase;Enzyme Handbook 7;1994
3. Molecular analysis of dimethylsulfoxide reductase: a complex iron-sulfur molybdoenzyme of Escherichia coli;Biochimica et Biophysica Acta (BBA) - Bioenergetics;1992-08
4. Electron donors and the quinone involved in dimethyl sulfoxide reduction inEscherichia coli;Current Microbiology;1991-02
5. Microbial Anaerobic Respiration;Advances in Microbial Physiology Volume 31;1990
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