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1.
J Biol Chem ; 274(5): 2978-87, 1999 Jan 29.
Artículo en Inglés | MEDLINE | ID: mdl-9915836

RESUMEN

In Azotobacter vinelandii, deletion of the fdxA gene, which encodes ferredoxin I (FdI), leads to activation of the expression of the fpr gene, which encodes NADPH-ferredoxin reductase (FPR). In order to investigate the relationship of these two proteins further, the interactions of the two purified proteins have been examined. AvFdI forms a specific 1:1 cross-linked complex with AvFPR through ionic interactions formed between the Lys residues of FPR and Asp/Glu residues of FdI. The Lys in FPR has been identified as Lys258, a residue that forms a salt bridge with one of the phosphate oxygens of FAD in the absence of FdI. UV-Vis and circular dichroism data show that on binding FdI, the spectrum of the FPR flavin is hyperchromatic and red-shifted, confirming the interaction region close to the FAD. Cytochrome c reductase assays and electron paramagnetic resonance data show that electron transfer between the two proteins is pH-dependent and that the [3Fe-4S]+ cluster of FdI is specifically reduced by NADPH via FPR, suggesting that the [3Fe-4S] cluster is near FAD in the complex. To further investigate the FPR:FdI interaction, the electrostatic potentials for each protein were calculated. Strongly negative regions around the [3Fe-4S] cluster of FdI are electrostatically complementary with a strongly positive region overlaying the FAD of FPR, centered on Lys258. These proposed interactions of FdI with FPR are consistent with cross-linking, peptide mapping, spectroscopic, and electron transfer data and strongly support the suggestion that the two proteins are physiological redox partners.


Asunto(s)
Azotobacter vinelandii/metabolismo , Ferredoxina-NADP Reductasa/metabolismo , Ferredoxinas/metabolismo , Secuencia de Aminoácidos , Anabaena , Dicroismo Circular , Espectroscopía de Resonancia por Spin del Electrón , Electroforesis en Gel de Poliacrilamida , Escherichia coli , Ácido Glutámico/metabolismo , Lisina/metabolismo , Modelos Moleculares , Datos de Secuencia Molecular , NADP/metabolismo , Conformación Proteica , Pseudomonas aeruginosa , Electricidad Estática
2.
Proc Natl Acad Sci U S A ; 91(4): 1290-3, 1994 Feb 15.
Artículo en Inglés | MEDLINE | ID: mdl-8108404

RESUMEN

The biological N2-fixation reaction is catalyzed by the enzyme nitrogenase. The metal cluster active site of this enzyme, the iron-molybdenum cofactor (FeMoco), can be studied either while bound within the MoFe protein component of nitrogenase or after it has been extracted into N-methylformamide. The two species are similar but not identical. For example, the addition of thiophenol or selenophenol to isolated FeMoco causes its rather broad S = 3/2 electron paramagnetic resonance signal to sharpen and more closely approach the signal exhibited by protein-bound FeMoco. The nature of this thiol/selenol binding site has been investigated by using Se-K edge extended x-ray absorption fine structure (EXAFS) to study selenophenol ligated to FeMoco, and the results are reported here. EXAFS data analysis at the ligand Se-K edge was performed with a set of software, GNXAS, that provides for direct calculation of the theoretical EXAFS signals and least-squares fits to the experimental data. Data analysis results show definitively that the selenol (and by inference thiol) binds to Fe at a distance of 2.4 A. In contrast, unacceptable fits are obtained with either Mo or S as the liganded atom (instead of Fe). These results provide quantitative details about an exchangeable thiol/selenol binding site on FeMoco in its isolated, solution state and establish an Fe atom as the site of this reaction. Furthermore, the utility of ligand-based EXAFS as a probe of coordination in polynuclear metal clusters is demonstrated.


Asunto(s)
Derivados del Benceno/química , Molibdoferredoxina/química , Compuestos de Organoselenio/química , Análisis Espectral/métodos , Azotobacter vinelandii/química , Derivados del Benceno/metabolismo , Análisis de Fourier , Molibdoferredoxina/metabolismo , Compuestos de Organoselenio/metabolismo , Potasio/química , Selenio/química , Estadística como Asunto , Rayos X
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