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1FTC

Y13C MUTANT OF AZOTOBACTER VINELANDII FDI

Summary for 1FTC
Entry DOI10.2210/pdb1ftc/pdb
DescriptorFERREDOXIN, IRON/SULFUR CLUSTER, FE3-S4 CLUSTER (3 entities in total)
Functional Keywordselectron transport, iron-sulfur
Biological sourceAzotobacter vinelandii
Total number of polymer chains2
Total formula weight25358.00
Authors
Kemper, M.A.,Lloyd, S.J.,Prasad, G.S.,Stout, C.D.,Fawcett, S.,Armstrong, F.A.,Burgess, B.K. (deposition date: 1997-01-08, release date: 1997-04-01, Last modification date: 2024-10-16)
Primary citationKemper, M.A.,Stout, C.D.,Lloyd, S.J.,Prasad, G.S.,Fawcett, S.E.,Armstrong, F.A.,Shen, B.,Burgess, B.K.
Y13C Azotobacter vinelandii ferredoxin I. A designed [Fe-S] ligand motif contains a cysteine persulfide.
J.Biol.Chem., 272:15620-15627, 1997
Cited by
PubMed Abstract: Ferredoxins that contain [4Fe-4S]2+/+ clusters often obtain three of their four cysteine ligands from a highly conserved CysXXCysXXCys sequence motif. Little is known about the in vivo assembly of these clusters and the role that this sequence motif plays in that process. In this study, we have used structure as a guide in attempts to direct the formation of a [4Fe-4S]2+/+ in the [3Fe-4S]+/0 location of native (7Fe) Azotobacter vinelandii ferredoxin I (AvFdI) by providing the correct three-dimensional orientation of cysteine ligands without introducing a CysXXCysXXCys motif. Tyr13 of AvFdI occupies the position of the fourth ligating cysteine in the homologous and structurally characterized 8Fe ferredoxin from Peptococcus aerogenes and a Y13C variant of AvFdI could be easily modeled as an 8Fe protein. However, characterization of purified Y13C FdI by UV-visible spectra, circular dichroism, electron paramagnetic resonance spectroscopies, and by x-ray crystallography revealed that the protein failed to use the introduced cysteine as a ligand and retained its [3Fe-4S]+/0 cluster. Further, electrochemical characterization showed that the redox potential and pH behavior of the cluster were unaffected by the substitution of Tyr by Cys. Although Y13C FdI is functional in vivo it does differ significantly from native FdI in that it is extremely unstable in the reduced state possibly due to increased solvent exposure of the [3Fe-4S]0 cluster. Surprisingly, the x-ray structure showed that the introduced cysteine was modified to become a persulfide. This modification may have occurred in vivo via the action of NifS, which is known to be expressed under the growth conditions used. It is interesting to note that neither of the two free cysteines present in FdI was modified. Thus, if NifS is involved in modifying the introduced cysteine there must be specificity to the reaction.
PubMed: 9188450
DOI: 10.1074/jbc.272.25.15620
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.35 Å)
Structure validation

237735

數據於2025-06-18公開中

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