Degradation of various amine compounds by mesophilic clostridia
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Summary
From 60 species of the genus Clostridium tested 26 species were able to degrade one to three of the following compounds: betaine, choline, creatine, and ethanolamine; the diagnostic value of the ability of clostridial species to degrade the compounds mentioned is discussed.
- Type
- article
- Published
- 1986-06-01
- Cited by
- 31
- References
- 49
- OpenAlex
- https://openalex.org/W2005647936
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25472160
Keywords
Sarcosine, Betaine, Clostridia, Choline, Biochemistry
References
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- Anaerobe Laboratory manual
- Catalogue of strains
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- Formation of N,N-Dimethylglycine, Acetic Acid, and Butyric Acid from Betaine by Eubacterium limosum
- Implication of creatinine and gut flora in the uremic syndrome: induction of "creatininase" in colon contents of the rat by dietary creatinine.
- Creatinine metabolism byClostridium welchii isolated from human faeces
- Creatinine Decomposing Enzymes in Pseudomonas putida
- The origin of urinary dimethylamine.
- Utilization of trimethylamine and other N-methyl compounds for growth and methane formation by Methanosarcina barkeri.
- Creatinine hydrolase and creatine amidinohydrolase: I. Presence in cell-free extracts of arthrobacter ureafaciens
- Chromatography of amino acids, indoles and imidazoles on thin layers of avicel and cellulose and on paper.
- Quantitative Paper Chromatography of Amino Acids. An Evaluation of Techniques
- Quantitative Paper Chromatography of Amino-acids
Cited by
- Toward the identification of methanogenic archaeal groups as targets of methane mitigation in livestock animalsr
- Methanogen communities in stools of humans of different age and health status and co-occurrence with bacteria.
- Clostridium halophilium sp. nov. and C. litorale sp. nov., an obligate halophilic and a marine species degrading betaine in the Stickland reaction
- Methylotrophic methanogenic Thermoplasmata implicated in reduced methane emissions from bovine rumen
- Reductive cleavage of sarcosine and betaine by Eubacterium acidaminophilum via enzyme systems different from glycine reductase
- Development of a defined medium for Clostridium scatologenes ATCC 25775
- Studies of Dimethylglycine Oxidase Isoenzymes in Arthrobacter globiformis Cells
- Creatinine and N-methylhydantoin degradation in two newly isolated Clostridium species
- Glycine metabolism in anaerobes
- Utilization of creatinine as an alternative nitrogen source in Corynebacterium glutamicum
- Ectoines as compatible solutes and carbon and energy sources for the halophilic bacterium Chromohalobacter salexigens
- Plasma choline metabolites and colorectal cancer risk in the Women’s Health Initiative Observational Study
- Intestinal Microbial Metabolism of Phosphatidylcholine and Cardiovascular Risk
- Prognostic value of choline and betaine depends on intestinal microbiota-generated metabolite trimethylamine-N-oxide.
- Ecological significance of Synergistetes in the biological treatment of tuna cooking wastewater by an anaerobic sequencing batch reactor
- Non-lethal inhibition of gut microbial trimethylamine production for the treatment of atherosclerosis
- Trimethylamine and Trimethylamine N-Oxide, a Flavin-Containing Monooxygenase 3 (FMO3)-Mediated Host-Microbiome Metabolic Axis Implicated in Health and Disease
- Analytical Microbiology Methods
- DIETARY TRIMETHYLAMINES, THE GUT MICROBIOTA,AND ATHEROSCLEROSIS
- Biological and chemical treatment technologies for waste amines from CO2 capture plants.
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