Distinct properties underlie flavin-based electron bifurcation in a novel electron transfer flavoprotein FixAB from Rhodopseudomonas palustris

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منابع مشابه

Acyl-CoA dehydrogenases, electron transfer flavoprotein and electron transfer flavoprotein dehydrogenase.

Middleton, €3. & Bartlett, K. (1983) C’lin. C’him. A m 128,291-305 Pullman, M. ( 1973) Ancil. Hiodwrn. 54, 188198 Reeve, D. R. & Crozier, A. ( 1977) J . C‘hromufogr. 137,27 1-282 Skredc. S. & Bremer. J . ( 1970) Eitr. J . Hiochem. 14,465-472 Stanley. K. K. & Tubbx. P. K. ( 1974) FEHS Lrrr. 39.325-328 Stanley. K. K. & Tubbs. P. K. (1975) Uioclirm. J . 150,77-88 Stewart, H. B., Tubbs, P. K. & Sta...

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The mitochondrial electron-transfer flavoprotein (ETF) is a heterodimer containing only one FAD. In previous work on the structure-function relationships of ETF, its interaction with the general acyl-CoA dehydrogenase (GAD) was studied by chemical cross-linking with heterobifunctional reagents [D. J. Steenkamp (1987) Biochem. J. 243, 519-524]. GAD whose lysine residues were substituted with 3-(...

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TMADH (trimethylamine dehydrogenase) is a complex iron-sulphur flavoprotein that forms a soluble electron-transfer complex with ETF (electron-transferring flavoprotein). The mechanism of electron transfer between TMADH and ETF has been studied using stopped-flow kinetic and mutagenesis methods, and more recently by X-ray crystallography. Potentiometric methods have also been used to identify ke...

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Subunit structure of electron transfer flavoprotein.

The electron transfer flavoprotein from pig liver mitochondria is a 57,000-dalton electron transferase which links several primary flavoprotein dehydrogenases with the mitochondrial electron transport system. The protein was previously reported to be a dimer of apparently identical subunits. There are conflicting estimates in the literature regarding the FAD content of the protein. The results ...

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Flavin Electron Shuttles Dominate Extracellular Electron Transfer by Shewanella oneidensis

UNLABELLED Shewanella oneidensis strain MR-1 is widely studied for its ability to respire a diverse array of soluble and insoluble electron acceptors. The ability to breathe insoluble substrates is defined as extracellular electron transfer and can occur via direct contact or by electron shuttling in S. oneidensis. To determine the contribution of flavin electron shuttles in extracellular elect...

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ژورنال

عنوان ژورنال: Journal of Biological Chemistry

سال: 2018

ISSN: 0021-9258

DOI: 10.1074/jbc.ra117.000707