Purification of Electron-Transferring Flavoprotein from Megasphaera elsdenii and Binding of Additional FAD with an Unusual Absorption Spectrum

Electron-transferring flavoprotein (ETF), its redox partner flavoproteins, i.e., d-lactate dehydrogenase and butyryl-CoA dehydrogenase, and another well-known flavoprotein, flavodoxin, were purified from the same starting cell paste of an anaerobic bacterium, Megasphaera elsdenii. The purified ETF c...

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Published inJournal of biochemistry (Tokyo) Vol. 134; no. 5; pp. 719 - 729
Main Authors Sato, Kyosuke, Nishina, Yasuzo, Shiga, Kiyoshi
Format Journal Article
LanguageEnglish
Published England Oxford University Press 01.11.2003
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Abstract Electron-transferring flavoprotein (ETF), its redox partner flavoproteins, i.e., d-lactate dehydrogenase and butyryl-CoA dehydrogenase, and another well-known flavoprotein, flavodoxin, were purified from the same starting cell paste of an anaerobic bacterium, Megasphaera elsdenii. The purified ETF contained one mol FAD/mol ETF as the sole non-protein component and bound almost one mol of additional FAD. This preparation is a better subject for investigations of M. elsdenii ETF than the previously isolated ETF, which contains varying amounts of FAD and varying percentages of modified flavins such as 6-OH-FAD and 8-OH-FAD. The additionally bound FAD shows an anomalous absorption spectrum with strong absorption around 400 nm. This spectral change is not due to a chemical modification of the flavin ring because the flavin released by KBr or guanidine hydrochloride is normal FAD. It is also not due to unknown small molecules because the same spectrum appears when ETF is reconstituted from its guanidine-denatured subunits and FAD. A similar anomalous spectrum was observed for AMP-free pig ETF under acidic conditions, suggesting a common flavin environment between pig and M. elsdenii ETFs.
AbstractList Electron-transferring flavoprotein (ETF), its redox partner flavoproteins, i.e., D-lactate dehydrogenase and butyryl-CoA dehydrogenase, and another well-known flavoprotein, flavodoxin, were purified from the same starting cell paste of an anaerobic bacterium, Megasphaera elsdenii. The purified ETF contained one mol FAD/mol ETF as the sole non-protein component and bound almost one mol of additional FAD. This preparation is a better subject for investigations of M. elsdenii ETF than the previously isolated ETF, which contains varying amounts of FAD and varying percentages of modified flavins such as 6-OH-FAD and 8-OH-FAD. The additionally bound FAD shows an anomalous absorption spectrum with strong absorption around 400 nm. This spectral change is not due to a chemical modification of the flavin ring because the flavin released by KBr or guanidine hydrochloride is normal FAD. It is also not due to unknown small molecules because the same spectrum appears when ETF is reconstituted from its guanidine-denatured subunits and FAD. A similar anomalous spectrum was observed for AMP-free pig ETF under acidic conditions, suggesting a common flavin environment between pig and M. elsdenii ETFs.
Electron-transferring flavoprotein (ETF), its redox partner flavoproteins, i.e., D-lactate dehydrogenase and butyryl-CoA dehydrogenase, and another well-known flavoprotein, flavodoxin, were purified from the same starting cell paste of an anaerobic bacterium, Megasphaera elsdenii. The purified ETF contained one mol FAD/mol ETF as the sole non-protein component and bound almost one mol of additional FAD. This preparation is a better subject for investigations of M. elsdenii ETF than the previously isolated ETF, which contains varying amounts of FAD and varying percentages of modified flavins such as 6-OH-FAD and 8-OH-FAD. The additionally bound FAD shows an anomalous absorption spectrum with strong absorption around 400 nm. This spectral change is not due to a chemical modification of the flavin ring because the flavin released by KBr or guanidine hydrochloride is normal FAD. It is also not due to unknown small molecules because the same spectrum appears when ETF is reconstituted from its guanidine-denatured subunits and FAD. A similar anomalous spectrum was observed for AMP-free pig ETF under acidic conditions, suggesting a common flavin environment between pig and M. elsdenii ETFs.Electron-transferring flavoprotein (ETF), its redox partner flavoproteins, i.e., D-lactate dehydrogenase and butyryl-CoA dehydrogenase, and another well-known flavoprotein, flavodoxin, were purified from the same starting cell paste of an anaerobic bacterium, Megasphaera elsdenii. The purified ETF contained one mol FAD/mol ETF as the sole non-protein component and bound almost one mol of additional FAD. This preparation is a better subject for investigations of M. elsdenii ETF than the previously isolated ETF, which contains varying amounts of FAD and varying percentages of modified flavins such as 6-OH-FAD and 8-OH-FAD. The additionally bound FAD shows an anomalous absorption spectrum with strong absorption around 400 nm. This spectral change is not due to a chemical modification of the flavin ring because the flavin released by KBr or guanidine hydrochloride is normal FAD. It is also not due to unknown small molecules because the same spectrum appears when ETF is reconstituted from its guanidine-denatured subunits and FAD. A similar anomalous spectrum was observed for AMP-free pig ETF under acidic conditions, suggesting a common flavin environment between pig and M. elsdenii ETFs.
Author Sato, Kyosuke
Nishina, Yasuzo
Shiga, Kiyoshi
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  surname: Sato
  fullname: Sato, Kyosuke
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  givenname: Yasuzo
  surname: Nishina
  fullname: Nishina, Yasuzo
  organization: Department of Molecular Physiology, Graduate School of Medical Sciences, Kumamoto University, 1-1-1 Honjo, Kumamoto, Kumamoto, 860-8556
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  givenname: Kiyoshi
  surname: Shiga
  fullname: Shiga, Kiyoshi
  organization: Department of Molecular Physiology, Graduate School of Medical Sciences, Kumamoto University, 1-1-1 Honjo, Kumamoto, Kumamoto, 860-8556
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Snippet Electron-transferring flavoprotein (ETF), its redox partner flavoproteins, i.e., d-lactate dehydrogenase and butyryl-CoA dehydrogenase, and another well-known...
Electron-transferring flavoprotein (ETF), its redox partner flavoproteins, i.e., D-lactate dehydrogenase and butyryl-CoA dehydrogenase, and another well-known...
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SubjectTerms activity to flavin ratio
AFR
Amino Acid Sequence
BCD
Binding Sites
butyryl-CoA dehydrogenase
Chromatography, High Pressure Liquid
d-lactate dehydrogenase
dithiothreitol
dLDH
DTT
electron-transferring flavoprotein
Electron-Transferring Flavoproteins - chemistry
Electron-Transferring Flavoproteins - isolation & purification
Electron-Transferring Flavoproteins - metabolism
ETF
FAD
FAD binding
FAD release
flavin adenine dinucleotide
Flavin-Adenine Dinucleotide - metabolism
Key words: electron-transferring flavoprotein
Lasers
Light
Megasphaera elsdenii
Molecular Weight
Oxidation-Reduction
Spectrophotometry, Infrared
Spectrophotometry, Ultraviolet
unusual absorption spectrum
Veillonellaceae - chemistry
Title Purification of Electron-Transferring Flavoprotein from Megasphaera elsdenii and Binding of Additional FAD with an Unusual Absorption Spectrum
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