Formyl-methanofuran synthesis in Methanobacterium thermoautotrophicum

The initial step of methanogenesis from CO2 is the formation of formyl-methanofuran (formyl-MFR) from methanofuran (MFR), CO2 and H2. The enzymology of this novel type of CO2 fixation reaction has been difficult to study because formyl-MFR synthesis is subject to a complex activation. Recently, howe...

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Published inFEMS microbiology letters Vol. 7; no. 3-4; p. 323
Main Authors Bobik, T A, DiMarco, A A, Wolfe, R S
Format Journal Article Conference Proceeding
LanguageEnglish
Published England 1990
Subjects
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ISSN0168-6445
1574-6968
0378-1097
DOI10.1016/0378-1097(90)90473-4

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Abstract The initial step of methanogenesis from CO2 is the formation of formyl-methanofuran (formyl-MFR) from methanofuran (MFR), CO2 and H2. The enzymology of this novel type of CO2 fixation reaction has been difficult to study because formyl-MFR synthesis is subject to a complex activation. Recently, however, a number of advances have made questions regarding formyl-MFR synthesis more approachable.
AbstractList The initial step of methanogenesis from CO sub(2) is the formation of formyl-methanofuran (formyl-MFR) from methanofuran (MFR), CO sub(2) and H sub(2). The enzymology of this novel type of CO sub(2) fixation reaction has been difficult to study because formyl-MFR synthesis is subject to a complex activation. Recently, however, a number of advances have made questions regarding formyl-MFR synthesis more approachable.
The initial step of methanogenesis from CO2 is the formation of formyl-methanofuran (formyl-MFR) from methanofuran (MFR), CO2 and H2. The enzymology of this novel type of CO2 fixation reaction has been difficult to study because formyl-MFR synthesis is subject to a complex activation. Recently, however, a number of advances have made questions regarding formyl-MFR synthesis more approachable.The initial step of methanogenesis from CO2 is the formation of formyl-methanofuran (formyl-MFR) from methanofuran (MFR), CO2 and H2. The enzymology of this novel type of CO2 fixation reaction has been difficult to study because formyl-MFR synthesis is subject to a complex activation. Recently, however, a number of advances have made questions regarding formyl-MFR synthesis more approachable.
The initial step of methanogenesis from CO2 is the formation of formyl-methanofuran (formyl-MFR) from methanofuran (MFR), CO2 and H2. The enzymology of this novel type of CO2 fixation reaction has been difficult to study because formyl-MFR synthesis is subject to a complex activation. Recently, however, a number of advances have made questions regarding formyl-MFR synthesis more approachable.
Author Bobik, T A
DiMarco, A A
Wolfe, R S
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Snippet The initial step of methanogenesis from CO2 is the formation of formyl-methanofuran (formyl-MFR) from methanofuran (MFR), CO2 and H2. The enzymology of this...
The initial step of methanogenesis from CO sub(2) is the formation of formyl-methanofuran (formyl-MFR) from methanofuran (MFR), CO sub(2) and H sub(2). The...
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StartPage 323
SubjectTerms Aldehyde Oxidoreductases - metabolism
Carbon Dioxide - metabolism
Electron Transport
Euryarchaeota - enzymology
Euryarchaeota - metabolism
Furans - metabolism
Title Formyl-methanofuran synthesis in Methanobacterium thermoautotrophicum
URI https://www.ncbi.nlm.nih.gov/pubmed/2128800
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