Publikation: Pathway of butyrate catabolism by Desulfobacterium cetonicum
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1995
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Janssen, Peter H.
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Journal of Bacteriology. 1995, 177(13), pp. 3870-3872. ISSN 0021-9193. eISSN 1098-5530
Zusammenfassung
Desulfobacterium cetonicum 480 oxidized butyrate to 1 mol of acetate and 2 mol of CO2; this reaction was coupled to reduction of sulfate to sulfide. Butyrate was activated by coenzyme A (CoA) transfer from acetyl- CoA, and butyryl-CoA was oxidized to acetyl-CoA by a classical b-oxidation pathway. Acetyl-CoA was oxidized through the acetyl-CoA/carbon monoxide dehydrogenase pathway. There was a rapid exchange of 14CO2 into the intermediate CoA esters and into acetate and butyrate, showing that all of the steps involved in the oxidation of butyrate to acetyl-CoA are reversible.
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570 Biowissenschaften, Biologie
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JANSSEN, Peter H., Bernhard SCHINK, 1995. Pathway of butyrate catabolism by Desulfobacterium cetonicum. In: Journal of Bacteriology. 1995, 177(13), pp. 3870-3872. ISSN 0021-9193. eISSN 1098-5530BibTex
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year={1995},
title={Pathway of butyrate catabolism by Desulfobacterium cetonicum},
number={13},
volume={177},
issn={0021-9193},
journal={Journal of Bacteriology},
pages={3870--3872},
author={Janssen, Peter H. and Schink, Bernhard}
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<dcterms:abstract xml:lang="eng">Desulfobacterium cetonicum 480 oxidized butyrate to 1 mol of acetate and 2 mol of CO2; this reaction was coupled to reduction of sulfate to sulfide. Butyrate was activated by coenzyme A (CoA) transfer from acetyl- CoA, and butyryl-CoA was oxidized to acetyl-CoA by a classical b-oxidation pathway. Acetyl-CoA was oxidized through the acetyl-CoA/carbon monoxide dehydrogenase pathway. There was a rapid exchange of 14CO2 into the intermediate CoA esters and into acetate and butyrate, showing that all of the steps involved in the oxidation of butyrate to acetyl-CoA are reversible.</dcterms:abstract>
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