Dissecting the energetics of the apoflavodoxin-FMN complex
about
A genetically encoded tag for correlated light and electron microscopy of intact cells, tissues, and organismsCrystal structure of oxidized flavodoxin, an essential protein in Helicobacter pyloriHow FMN binds to anabaena apoflavodoxin: a hydrophobic encounter at an open binding sitePseudosymmetry, high copy number and twinning complicate the structure determination ofDesulfovibrio desulfuricans(ATCC 29577) flavodoxinStructure of RdxA--an oxygen-insensitive nitroreductase essential for metronidazole activation in Helicobacter pyloriThe Structural and Functional Basis of Catalysis Mediated by NAD(P)H:acceptor Oxidoreductase (FerB) of Paracoccus denitrificansEvolutionarily divergent electron donor proteins interact with P450MT2 through the same helical domain but different contact pointsA double-deletion method to quantifying incremental binding energies in proteins from experiment: example of a destabilizing hydrogen bonding pair.Energetics of aliphatic deletions in protein coresMolecular determinants for FMN-binding in Desulfovibrio gigas flavoredoxin.Conformational dynamics of Escherichia coli flavodoxins in apo- and holo-states by solution NMR spectroscopy.The flavodoxin from Helicobacter pylori: structural determinants of thermostability and FMN cofactor binding.Direct examination of the relevance for folding, binding and electron transfer of a conserved protein folding intermediate.Folding of proteins with a flavodoxin-like architecture.A crystallographic study of Cys69Ala flavodoxin II from Azotobacter vinelandii: structural determinants of redox potentialActive site residues critical for flavin binding and 5,6-dimethylbenzimidazole biosynthesis in the flavin destructase enzyme BluB.Distant residues mediate picomolar binding affinity of a protein cofactor.Kinetic characterization of Vibrio cholerae ApbE: Substrate specificity and regulatory mechanisms.Reduction of aliphatic nitroesters and N-nitramines by Enterobacter cloacae PB2 pentaerythritol tetranitrate reductase: quantitative structure-activity relationships.An AAA protease FtsH can initiate proteolysis from internal sites of a model substrate, apo-flavodoxin.The Long and Short FlavodoxinsAnabaenaapoflavodoxin hydrogen exchange: On the stable exchange core of the α/β(21345) flavodoxin-like family
P2860
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P2860
Dissecting the energetics of the apoflavodoxin-FMN complex
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Dissecting the energetics of the apoflavodoxin-FMN complex
@ast
Dissecting the energetics of the apoflavodoxin-FMN complex
@en
Dissecting the energetics of the apoflavodoxin-FMN complex
@nl
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label
Dissecting the energetics of the apoflavodoxin-FMN complex
@ast
Dissecting the energetics of the apoflavodoxin-FMN complex
@en
Dissecting the energetics of the apoflavodoxin-FMN complex
@nl
prefLabel
Dissecting the energetics of the apoflavodoxin-FMN complex
@ast
Dissecting the energetics of the apoflavodoxin-FMN complex
@en
Dissecting the energetics of the apoflavodoxin-FMN complex
@nl
P2093
P2860
P356
P1476
Dissecting the energetics of the apoflavodoxin-FMN complex
@en
P2093
A Parody-Morreale
M El Harrous
P2860
P304
P356
10.1074/JBC.275.13.9518
P407
P577
2000-03-31T00:00:00Z