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Methanobacterium
A genus of anaerobic, rod-shaped METHANOBACTERIACEAE. Its organisms are nonmotile and use ammonia as the sole source of nitrogen. These methanogens…
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Methanobacteria
Methanothermobacter
aspects of radiation effects
physiological aspects
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2007
2007
Thermophilic methanogenic Archaea in compost material: occurrence, persistence and possible mechanisms for their distribution to other environments.
Kathrin Thummes
,
J. Schäfer
,
P. Kämpfer
,
U. Jäckel
Systematic and Applied Microbiology
2007
Corpus ID: 10978254
Highly Cited
1989
Highly Cited
1989
Nucleotide sequence of the glyceraldehyde-3-phosphate dehydrogenase gene from the mesophilic methanogenic archaebacteria Methanobacterium bryantii and Methanobacterium formicicum. Comparison with the…
S. Fabry
,
J. Lang
,
T. Niermann
,
M. Vingron
,
R. Hensel
European Journal of Biochemistry
1989
Corpus ID: 1025887
The genes for glyceraldehyde-3-phosphate dehydrogenase (gap genes) from the mesophilic methanogenic archaebacteria…
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1986
1986
Molybdopterin cofactor from Methanobacterium formicicum formate dehydrogenase
H. May
,
N. Schauer
,
J. Ferry
Journal of Bacteriology
1986
Corpus ID: 21813110
The molybdopterin cofactor from the formate dehydrogenase of Methanobacterium formicicum was studied. The cofactor was released…
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Highly Cited
1985
Highly Cited
1985
Formation of carbon monoxide from CO2 and H2 by Methanobacterium thermoautotrophicum.
B. Eikmanns
,
G. Fuchs
,
R. Thauer
European Journal of Biochemistry
1985
Corpus ID: 43022168
Cell suspensions of Methanobacterium thermoautotrophicum were found to reduce CO2 with H2 to CO at a maximal rate of 100 nmol X…
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1985
1985
ATP synthesis in Methanobacterium thermoautotrophicum coupled to CH4 formation from H2 and CO2 in the apparent absence of an electrochemical proton potential across the cytoplasmic membrane.
P. Schönheit
,
D. Beimborn
European Journal of Biochemistry
1985
Corpus ID: 39600227
Methanogenic bacteria are considered to couple methane formation with the synthesis of ATP by a chemiosmotic mechanism. This…
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1984
1984
Comparison of Assimilatory Organic Nitrogen, Sulfur, and Carbon Sources for Growth of Methanobacterium Species
L. Bhatnagar
,
M. Jain
,
J. Aubert
,
J. Zeikus
Applied and Environmental Microbiology
1984
Corpus ID: 23035947
Experiments document the ability of two species of autotrophic methanogens to assimilate and utilize organic substrates as the…
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Highly Cited
1983
Highly Cited
1983
Paramagnetic centers in the nickel-containing, deazaflavin-reducing hydrogenase from Methanobacterium thermoautotrophicum.
N. Kojima
,
J. Fox
,
R. Hausinger
,
L. Daniels
,
W. Orme-Johnson
,
C. Walsh
Proceedings of the National Academy of Sciences…
1983
Corpus ID: 23974710
Two hydrogenases from the methanogenic bacterium Methanobacterium thermoautotrophicum strain DeltaH have been purified and…
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1982
1982
Coupling of methyl coenzyme M reduction with carbon dioxide activation in extracts of Methanobacterium thermoautotrophicum
J. A. Romesser
,
R. Wolfe
Journal of Bacteriology
1982
Corpus ID: 10076318
The stimulation of carbon dioxide reduction to methane by addition of 2-(methylthio)ethanesulfonate (CH3-S-CoM) to cell extracts…
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Highly Cited
1980
Highly Cited
1980
Origin of hydrogen in methane produced by Methanobacterium thermoautotrophicum
L. Daniels
,
G. Fulton
,
R. Spencer
,
W. Orme-Johnson
Journal of Bacteriology
1980
Corpus ID: 5697479
The production of deuterated methane by Methanobacterium thermoautotrophicum in H2O-D2O mixtures was examined by high-resolution…
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Highly Cited
1978
Highly Cited
1978
ATP activation and properties of the methyl coenzyme M reductase system in Methanobacterium thermoautotrophicum
R. Gunsalus
,
R. Wolfe
Journal of Bacteriology
1978
Corpus ID: 21271560
The requirement of ATP for the methyl coenzyme M methylreductase in extracts of Methanobacterium thermoautotrophicum was found to…
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