The L-form of N-7-mercaptoheptanoyl- O-phosphothreonine is the enantiomer active as component B in methyl-CoM reduction to methane

The reduction of methyl-CoM to methane in methanogenic bacteria is dependent on a low- M r, heat-stable compound designated component B, the structure of which has recently been assigned as N-7-mercaptoheptanoyl- O-phosphothreonine. We report here that only the enantiomer derived from O-phospho-L-th...

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Published in:FEBS letters Vol. 214; no. 2; pp. 265 - 268
Main Authors: Kobelt, A., Pfaltz, A., Ankel-Fuchs, D., Thauer, R.K.
Format: Journal Article
Language:English
Published: Amsterdam Elsevier B.V 20-04-1987
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Abstract The reduction of methyl-CoM to methane in methanogenic bacteria is dependent on a low- M r, heat-stable compound designated component B, the structure of which has recently been assigned as N-7-mercaptoheptanoyl- O-phosphothreonine. We report here that only the enantiomer derived from O-phospho-L-threonine has cofactor activity. N-7-Mercaptoheptanoyl- O-phospho-D-threonine was neither active nor inhibitory.
AbstractList The reduction of methyl-CoM to methane in methanogenic bacteria is dependent on a low- M r, heat-stable compound designated component B, the structure of which has recently been assigned as N-7-mercaptoheptanoyl- O-phosphothreonine. We report here that only the enantiomer derived from O-phospho-L-threonine has cofactor activity. N-7-Mercaptoheptanoyl- O-phospho-D-threonine was neither active nor inhibitory.
The reduction of methyl-CoM to methane in methanogenic bacteria (Methanobacterium thermoautotrophicum ) is dependent on a low-M sub(r), heat-stable compound designated component B, the structure of which has recently been assigned as N-7-mercaptoheptanoyl-O-phosphothreonine. The authors report here that only the enantiomer derived from O-phospho-L-threonine has cofactor activity. N-7-mercaptoheptanoyl-O-phospho-D-threonine was neither active nor inhibitory.
The reduction of methyl‐CoM to methane in methanogenic bacteria is dependent on a low‐ M r , heat‐stable compound designated component B, the structure of which has recently been assigned as N ‐7‐mercaptoheptanoyl‐ O ‐phosphothreonine. We report here that only the enantiomer derived from O ‐phospho‐L‐threonine has cofactor activity. N ‐7‐Mercaptoheptanoyl‐ O ‐phospho‐D‐threonine was neither active nor inhibitory.
The reduction of methyl‐CoM to methane in methanogenic bacteria is dependent on a low‐M r, heat‐stable compound designated component B, the structure of which has recently been assigned as N‐7‐mercaptoheptanoyl‐O‐phosphothreonine. We report here that only the enantiomer derived from O‐phospho‐L‐threonine has cofactor activity. N‐7‐Mercaptoheptanoyl‐O‐phospho‐D‐threonine was neither active nor inhibitory.
Author Pfaltz, A.
Thauer, R.K.
Kobelt, A.
Ankel-Fuchs, D.
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Issue 2
Keywords Component B
Methyl-CoM reductase
Methanogenic bacteria
7-Mercaptoheptanoylthreonine phosphate
Enzyme
Enantiomer
Methanogenesis
Bacteria
Thermostable
Catalyst activity
Cofactor
Language English
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Elsevier
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Snippet The reduction of methyl-CoM to methane in methanogenic bacteria is dependent on a low- M r, heat-stable compound designated component B, the structure of which...
The reduction of methyl‐CoM to methane in methanogenic bacteria is dependent on a low‐M r, heat‐stable compound designated component B, the structure of which...
The reduction of methyl‐CoM to methane in methanogenic bacteria is dependent on a low‐ M r , heat‐stable compound designated component B, the structure of...
The reduction of methyl-CoM to methane in methanogenic bacteria (Methanobacterium thermoautotrophicum ) is dependent on a low-M sub(r), heat-stable compound...
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SubjectTerms 7-Mercaptoheptanoylthreonine phosphate
Bacteriology
Biological and medical sciences
Component B
Fundamental and applied biological sciences. Psychology
Metabolism. Enzymes
Methanobacterium thermoautotrophicum
Methanogenic bacteria
Methyl-CoM reductase
Microbiology
Title The L-form of N-7-mercaptoheptanoyl- O-phosphothreonine is the enantiomer active as component B in methyl-CoM reduction to methane
URI https://dx.doi.org/10.1016/0014-5793(87)80067-4
https://onlinelibrary.wiley.com/doi/abs/10.1016%2F0014-5793%2887%2980067-4
https://search.proquest.com/docview/14785740
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