Comparative Dynamics Enables Discovery of Embedded Bacterial Ferredoxin Domains in Large Redox Enzymes. [PDF]
Siess JA, Nanda V.
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ZBTB16 upregulation maintains copper homeostasis to support esophageal tumor progression. [PDF]
Wang J, Yang B, Peng S, Yang B.
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Corrigendum: Ferredoxin reductase is critical for p53-dependent tumor suppression via iron regulatory protein 2. [PDF]
Zhang Y +11 more
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An intronic variant in Ferredoxin Reductase (FDXR) creates a cryptic exon in Quarter Horses with Equine Juvenile Spinocerebellar Ataxia. [PDF]
Brown BN +13 more
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Rieske Oxygenases: Powerful Models for Understanding Nature's Orchestration of Electron Transfer and Oxidative Chemistry. [PDF]
Miao H, Schmidt S.
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Potential for aerobic hydrocarbon oxidation in archaea. [PDF]
Leu AO +3 more
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Unveiling a novel broad-host-range cyanomyovirus cross-infecting Prochlorococcus and Synechococcus. [PDF]
Wei S +7 more
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Key role of hydrogen in regulating hydrogenases and the reductive TCA cycle in a thermophilic, autotrophic sulfur-reducing bacterium. [PDF]
Kubik BC, Holden JF.
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On the emergence of metabolism: the evolution of proteins that powered life. [PDF]
Nanda V +11 more
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The interaction of ferredoxin with chloroplast ferredoxin-linked enzymes
Biochimica Et Biophysica Acta - Bioenergetics, 1986Ferredoxin, reduced by Photosystem I during oxygenic photosynthesis, then serves as the electron donor for the reduction of NADP+ [1], nitrite [2], and the reductive conversion of 2-oxoglutarate plus glutamine to glutamate [3]. Evidence exists thit two of these ferredoxin-dependent reductions, that of NADP+ (catalyzed by ferredoxin:NADP+ oxidoreductase,
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