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1.
J Am Chem Soc ; 131(13): 4558-9, 2009 Apr 08.
Article in English | MEDLINE | ID: mdl-19334767

ABSTRACT

NifZ is a member of a series of proteins associated with the maturation of the nitrogenase MoFe protein. An MCD spectroscopic study was undertaken on the Delta nifB Delta nifZ MoFe protein generated in the absence of both NifZ and NifB (deletion of NifB generates an apo-MoFe protein lacking the FeMo cofactor). Results presented here show that, in the absence of NifZ, only one of the two P-clusters of the MoFe protein is matured to the ultimate [8Fe-7S] structure. The other P-cluster site in the protein contains a [4Fe-4S] cluster pair, representing a P-cluster precursor that is electronically identical to the analogous clusters observed in the Delta nifH MoFe protein. These results suggest that the MoFe protein is synthesized in a stepwise fashion where NifZ is specifically required for the formation of the second P-cluster.


Subject(s)
Azotobacter vinelandii/enzymology , Gene Deletion , Molybdoferredoxin/chemistry , Molybdoferredoxin/genetics , Azotobacter vinelandii/genetics , Bacterial Proteins/genetics , Circular Dichroism , Electrons , Genes, Bacterial , Magnetics , Metals/chemistry , Models, Molecular , Protein Conformation , Protein Multimerization
2.
Biochemistry ; 45(50): 15039-48, 2006 Dec 19.
Article in English | MEDLINE | ID: mdl-17154541

ABSTRACT

Deletion of nifB results in the formation of a variant nitrogenase MoFe protein (DeltanifB MoFe protein) that appears to contain two normal [8Fe-7S] P clusters. This protein can be reactivated to form the holo MoFe protein upon addition of isolated FeMo cofactor. In contrast, deletion of nifH results in a variant protein (DeltanifH MoFe protein) that appears to contain FeS clusters different from the normal P cluster, presumably representing precursors of the normal P cluster. The DeltanifH MoFe protein is not reconstituted to the holo MoFe protein with isolated FeMo cofactor. The EPR and EXAFS spectroscopic properties of FeS clusters in the DeltanifH MoFe protein clearly differ from those of the normal P cluster found in the DeltanifB MoFe protein and suggest the presence of [4Fe-4S]-like clusters. To further characterize the metal cluster structures in the DeltanifH MoFe protein, a variable-temperature, variable-field magnetic circular dichroism (VTVH-MCD) spectroscopic study has been undertaken on both the DeltanifB MoFe protein and the DeltanifH MoFe protein in both the dithionite-reduced and oxidized states. This study clearly shows that each half of the dithionite-reduced DeltanifH MoFe protein contains a [4Fe-4S]+ cluster paired with a diamagnetic [4Fe-4S]-like cluster. Upon oxidation, the VTVH-MCD spectrum of the DeltanifH MoFe protein reveals a paramagnetic, albeit EPR-silent system, suggesting an integer spin state. These results suggest that the DeltanifH MoFe protein contains a pair of neighboring, unusual [4Fe-4S]-like clusters, which are paramagnetic in their oxidized state.


Subject(s)
Azotobacter vinelandii/enzymology , Iron/chemistry , Molybdenum/chemistry , Molybdoferredoxin/chemistry , Sulfides/chemistry , Azotobacter vinelandii/genetics , Bacterial Proteins/genetics , Binding Sites , Circular Dichroism , Electron Spin Resonance Spectroscopy , Gene Deletion , Hot Temperature , Molybdoferredoxin/genetics , Oxidation-Reduction , Oxidoreductases/genetics
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