Characterization of VNFG, the δ Subunit of the vnf-Encoded Apodinitrogenase from Azotobacter vinelandii

The vnf -encoded apodinitrogenase (apodinitrogenase 2) from Azotobacter vinelandii is an α 2 β 2 δ 2 hexamer. The δ subunit (the VNFG protein) has been characterized in order to further delineate its function in the nitrogenase 2 enzyme system. Two species of VNFG were observed in cell-free extr...

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Veröffentlicht in:The Journal of biological chemistry 1997-02, Vol.272 (6), p.3758
Hauptverfasser: Ranjini Chatterjee, Paul W. Ludden, Vinod K. Shah
Format: Artikel
Sprache:eng
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Zusammenfassung:The vnf -encoded apodinitrogenase (apodinitrogenase 2) from Azotobacter vinelandii is an α 2 β 2 δ 2 hexamer. The δ subunit (the VNFG protein) has been characterized in order to further delineate its function in the nitrogenase 2 enzyme system. Two species of VNFG were observed in cell-free extracts resolved on anoxic native gels; one is composed of VNFG associated with the VNFDK polypeptides, and the other is a homodimer of the VNFG protein. Both species of VNFG are observed in extracts of A. vinelandii strains that accumulate dinitrogenase 2, whereas extracts of strains impaired in the biosynthetic pathway of the iron-vanadium cofactor (FeV-co) that accumulate apodinitrogenase 2 (a catalytically inactive form of dinitrogenase 2 that lacks FeV-co) exhibit only the VNFG dimer on native gels. FeV-co and nucleotide are required for the stable association of VNFG with the VNFDK polypeptides; this stable association can be correlated with the formation of active dinitrogenase 2. The iron-molybdenum cofactor was unable to replace FeV-co in promoting the stable association of VNFG with VNFDK. FeV-co specifically associates with the VNFG dimer in vitro to form a complex of unknown stoichiometry; combination of this VNFG-FeV-co species with apodinitrogenase 2 results in its reconstitution to dinitrogenase 2. The results presented here suggest that VNFG is required for processing apodinitrogenase 2 to functional dinitrogenase 2.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.272.6.3758