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2007
Santos-Silva, Teresa, Joao Miguel Dias, Alain Dolla, Marie-Claire Durand, Luisa L. Goncalves, Jorge Lampreia, Isabel Moura, and Maria Joao Romao. "Crystal structure of the 16 heme cytochrome from Desulfovibrio gigas: A glycosylated protein in a sulphate-reducing bacterium." JOURNAL OF MOLECULAR BIOLOGY. 370 (2007): 659-673. Abstract
Sulphate-reducing bacteria have a wide variety of periplasmic cytochromes involved in electron transfer from the periplasm to the cytoplasm. HmcA is a high molecular mass cytochrome of 550 amino acid residues that harbours 16 c-type heme groups. We report the crystal structure of HmcA isolated from the periplasm of Desulfovibrio gigas. Crystals were grown. using polyethylene glycol 8K and zinc acetate, and diffracted beyond 2.1 angstrom resolution. A multiple-wavelength anomalous dispersion experiment at the iron absorption edge enabled us to obtain good-quality phases for structure solution and model building. DgHmcA has a V-shape architecture, already observed in HmcA isolated from Desulfovibrio vulgaris Hildenborough. The presence of an oligosaccharide molecule covalently bound to an Asn residue was observed in the electron density maps of DgHmcA and confirmed by mass spectrometry. Three modified monosaccharides appear at the highly hydrophobic vertex, possibly acting as an anchor of the protein to the cytoplasmic membrane. (c) 2007 Elsevier Ltd. All rights reserved.
2003
Almeida, MG, S. Macieira, LL Goncalves, R. Huber, CA Cunha, MJ Romao, C. Costa, J. Lampreia, JJG Moura, and I. Moura. "The isolation and characterization of cytochrome c nitrite reductase subunits (NrfA and NrfH) from Desulfovibrio desulfuricans ATCC 27774 - Re-evaluation of the spectroscopic data and redox properties." EUROPEAN JOURNAL OF BIOCHEMISTRY. 270 (2003): 3904-3915. Abstract
The cytochrome c nitrite reductase is isolated from the membranes of the sulfate-reducing bacterium Desulfovibrio desulfuricans ATCC 27774 as a heterooligomeric complex composed by two subunits (61 kDa and 19 kDa) containing c-type hemes, encoded by the genes nrfA and nrfH, respectively. The extracted complex has in average a 2NrfA:1NrfH composition. The separation of ccNiR subunits from one another is accomplished by gel filtration chromatography in the presence of SDS. The amino-acid sequence and biochemical subunits characterization show that NrfA contains five hemes and NrfH four hemes. These considerations enabled the revision of a vast amount of existing spectroscopic data on the NrfHA complex that was not originally well interpreted due to the lack of knowledge on the heme content and the oligomeric enzyme status. Based on EPR and Mossbauer parameters and their correlation to structural information recently obtained from X-ray crystallography on the NrfA structure {[}Cunha, C. A., Macieira, S., Dias, J.M., Almeida, M.G., Goncalves, L. M. L., Costa, C., Lampreia, J., Huber, R., Moura, J. J. G., Moura, I. & Romano, M. (2003) J. Biol. Chem. 278, 17455-17465], we propose the full assignment of midpoint reduction potentials values to the individual hemes. NrfA contains the high-spin catalytic site (-80 mV) as well as a quite unusual high reduction potential (+150 mV)/low-spin bis-His coordinated heme, considered to be the site where electrons enter. In addition, the reassessment of the spectroscopic data allowed the first partial spectroscopic characterization of the NrfH subunit. The four NrfH hemes are all in a low-spin state (S = 1/2). One of them has a g(max) at 3.55, characteristic of bis-histidinyl iron ligands in a noncoplanar arrangement, and has a positive reduction potential.
Cunha, CA, S. Macieira, JM Dias, G. Almeida, LL Goncalves, C. Costa, J. Lampreia, R. Huber, JJG Moura, I. Moura, and MJ Romao. "Cytochrome c nitrite reductase from Desulfovibrio desulfuricans ATCC 27774 - The relevance of the two calcium sites in the structure of the catalytic subunit (NrfA)." JOURNAL OF BIOLOGICAL CHEMISTRY. 278 (2003): 17455-17465. Abstract
The gene encoding cytochrome c nitrite reductase (NrfA) from Desulfovibrio desulfuricans ATCC 27774 was sequenced and the crystal structure of the enzyme was determined to 2.3-Angstrom resolution. In comparison with homologous structures, it presents structural differences mainly located at the regions surrounding the putative substrate inlet and product outlet, and includes a well defined second calcium site with octahedral geometry, coordinated to propionates of hemes 3 and 4, and caged by a loop non-existent in the previous structures. The highly negative electrostatic potential in the environment around hemes 3 and 4 suggests that the main role of this calcium ion may not be electrostatic but structural, namely in the stabilization of the conformation of the additional loop that cages it and influences the solvent accessibility of heme 4. The NrfA active site is similar to that of peroxidases with a nearby calcium site at the heme distal side nearly in the same location as occurs in the class II and class III peroxidases. This fact suggests that the calcium ion at the distal side of the active site in the NrfA enzymes may have a similar physiological role to that reported for the peroxidases.
2001
Di Rocco, G., AS Pereira, SA Bursakov, OY Gavel, F. Rusnak, J. Lampreia, JJG Moura, and I. Moura. "Cloning of a novel Mo-Cu containing protein from Desulfovibrio.gigas." JOURNAL OF INORGANIC BIOCHEMISTRY. 86 (2001): 202.
Goncalves, LML, C. Cunha, G. Almeida, S. Macieira, C. Costa, J. Lampreia, MJ Romao, JJG Moura, and I. Moura. "Structural studies on Desulfovibrio desulfuricans ATCC 27774 multiheme nitrite reductase - characterization of the subunits." JOURNAL OF INORGANIC BIOCHEMISTRY. 86 (2001): 316.
2000
Dias, JM, CA Cunha, S. Teixeira, G. Almeida, C. Costa, J. Lampreia, JJG Moura, I. Moura, and MJ Romao. "Crystallization and preliminary X-ray analysis of a membrane-bound nitrite reductase from Desulfovibrio desulfuricans ATCC 27774." ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY. 56 (2000): 215-217. Abstract
{Nitrite reductase from the sulfate-reducing bacterium Desulfovibrio desulfuricans ATCC 27774 is a multihaem (type c) membrane-bound enzyme that catalyzes the dissimilatory conversion of nitrite to ammonia. Crystals of the oxidized form of this enzyme were obtained using PEG and CaCl2 as precipitants in the presence of 3-(decylmethylammonium)propane-1-sulfonate and belong to the space group P2(1)2(1)2(1), With unit-cell parameters a = 78.94
1997
Correia, JHRD, J. Lampreia, A. Matta, C. Mateus, J. Prates, J. Rosa, M. Correia, AD Correia, and C. Peixoto. "Myofibrillar and sarcoplasmic proteins and cathepsin D activity." FASEB JOURNAL. 11 (1997): 2134.
Correia, AD, JHRD Correia, J. Prates, C. Mateus, A. Matta, J. Rosa, M. Correia, J. Lampreia, and C. Peixoto. "Myofibrillar proteins and cathepsin D activity during different technologies and variations with time." FASEB JOURNAL. 11 (1997): 2133.
1996
Pereira, AS, R. Franco, MJ Feio, C. Pinto, J. Lampreia, MA Reis, J. Calvete, I. Moura, I. Beech, AR Lino, and JJG Moura. "Characterization of representative enzymes from a sulfate reducing bacterium implicated in the corrosion of steel." BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS. 221 (1996): 414-421. Abstract
This communication reports the isolation, purification and characterization of key enzymes involved in dissimilatory sulfate reduction of a sulfate reducing bacterium classified as Desulfovibrio desulfuricans subspecies desulfuricans New Jersey (NCIMB 8313) (Ddd NJ). The chosen strain, originally recovered from a corroding cast iron heat exchanger, was grown in large scale batch cultures. Physico-chemical and spectroscopic studies of the purified enzymes were carried out. These analyses revealed a high degree of similarity between proteins isolated from the DddNJ strain and the homologous proteins obtained from Desulfomicrobium baculatus Norway 4. In view of the results obtained, taxonomic reclassification of Desulfovibrio desulfuricans subspecies desulfuricans New Jersey (NCIMB 8313) into Desulfomicrobium baculatus (New Jersey) is proposed. (C) 1996 Academic Press, Inc.
1994
CALDEIRA, J., PN PALMA, M. REGALLA, J. Lampreia, J. Calvete, W. SCHAFER, J. LeGall, I. Moura, and JJG Moura. "PRIMARY SEQUENCE, OXIDATION-REDUCTION POTENTIALS AND TERTIARY-STRUCTURE PREDICTION OF DESULFOVIBRIO-DESULFURICANS ATCC-27774 FLAVODOXIN." EUROPEAN JOURNAL OF BIOCHEMISTRY. 220 (1994): 987-995. Abstract
Flavodoxin was isolated and purified from Desulfovibrio desulfuricans ATCC 27774, a sulfatereducing organism that can also utilize nitrate as an alternative electron acceptor. Mid-point oxidation-reduction potentials of this flavodoxin were determined by ultraviolet/visible and EPR methods coupled to potentiometric measurements and their pH dependence studied in detail. The redox potential E(2), for the couple oxidized/semiquinone forms at pH 6.7 and 25 degrees C is -40 mV, while the value for the semiquinone/hydroquinone forms (E(1)), at the same pH, -387 mV. E(2) varies linearly with pH, while E(1) is independent of pH at high values. However, at low pH (<7.0), this value is less negative, compatible with a redox-linked protonation of the flavodoxin hydroquinone. A comparative study is presented for Desulfovibrio salexigens NCIB 8403 flavodoxin {[}Moura, I., Moura, J. J. G., Bruschi, M. and LeGall, J. (1980) Biochim. Biophys. Acta 591, 1-8]. The complete primary amino acid sequence was obtained by automated Edman degradation from peptides obtained by chemical and enzymic procedures. The amino acid sequence was confirmed by FAB/MS. Using the previously determined tridimensional structure of Desulfovibrio vulgaris flavodoxin as a model {[}similarity, 48,6%; Watenpaugh, K. D., Sieker, L. C., Jensen, L. H., LeGall, J. and Dubourdieu M. (1972) Proc. Natl Acad. Sci. USA 69, 3185-3188], the tridimensional structure of D. desulfuricans ATCC 27774 flavodoxin was predicted using AMBER force-field calculations.