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1999
Bursakov, SA, Brondino C, Dias JM, Carneiro C, Caldeira J, Duarte RO, Romao MJ, Moura I, Moura JJG.  1999.  Cross immunological reactions and spectroscopy study within nitrate reductase and other mononuclear Mo containing enzymes of the sulfate reducing bacteria. Journal of Inorganic Biochemistry. 74:86-86., Number 1-4 AbstractWebsite
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Dias, JM, Than ME, Humm A, Huber R, Bourenkov GP, Bartunik HD, Bursakov S, Calvete J, Caldeira J, Carneiro C, Moura JJG, Moura I, Romao MJ.  1999.  Crystal structure of the first dissimilatory nitrate reductase at 1.9 angstrom solved by MAD methods. Structure with Folding & Design. 7:65-79., Number 1 AbstractWebsite
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Dias, JM, Bursakov S, Carneiro C, Moura JJG, Moura I, Romao MJ.  1999.  Crystallization and preliminary X-ray analysis of a nitrate reductase from Desulfovibrio desulfuricans ATCC 27774. Acta Crystallographica Section D-Biological Crystallography. 55:877-879. AbstractWebsite
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Teixeira, S, Dias JM, Carvalho AL, Bourenkov G, Bartunik H, Almendra MJ, Moura I, Moura JJG, Romao MJ.  1999.  Crystallographic studies on a tungsten-containning formate dehydrogenase from Desulfovibrio gigas. Journal of Inorganic Biochemistry. 74:89-89., Number 1-4 AbstractWebsite
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Cunha, CA, Romao MJ, Sadeghi SJ, Valetti F, Gilardi G, Soares CM.  1999.  Effects of protein-protein interactions on electron transfer: docking and electron transfer calculations for complexes between flavodoxin and c-type cytochromes. Journal of Biological Inorganic Chemistry. 4:360-374., Number 3 AbstractWebsite
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Correia dos Santos, MM, Paes de Sousa PM, Simões Gonçalves ML, Lopes H, Moura I, Moura JJG.  1999.  Electrochemical studies on c-type cytochromes at microelectrodes. Journal of Electroanalytical Chemistry. 464:76-84., Number 1 AbstractWebsite
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Pina, F, Melo MJ, Maestri M, Passaniti P, Camaioni N, Balzani V.  1999.  Photo- and pH-Induced transformations of flavylium cation: "Write-lock-read-unlock-erase" cycles. European Journal of Organic Chemistry. :3199-3207., Number 11 AbstractWebsite
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Melo, MJ, Bracci S, Camaiti M, Chiantore O, Piacenti F.  1999.  Photodegradation of acrylic resins used in the conservation of stone. Polymer Degradation and Stability. 66:23-30., Number 1 AbstractWebsite
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Romao, MJ, Carvalho AL, Dias JM, Teixeira S, Bourenkov G, Bartunik H, Huber R, Maia L, Mira L.  1999.  Preliminary crystallographic studies of xanthine oxidase purified from rat liver. Journal of Inorganic Biochemistry. 74:281-281., Number 1-4 AbstractWebsite
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Laia, CAT, Costa SMB.  1999.  Probing the interface polarity of AOT reversed micelles using centro-symmetrical squaraine molecules. Physical Chemistry Chemical Physics. 1:4409-4416., Number 18 AbstractWebsite
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Chiarelli, MP, Wu HP, Antunes AM, Branco PS.  1999.  Product ion studies of some novel arylamine adducts of deoxyguanosine by matrix-assisted laser desorption/ionization and post-source decay. RAPID COMMUNICATIONS IN MASS SPECTROMETRY. 13:2004-2010., Number 20 Abstract
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Almendra, MJ, Brondino CD, Gavel O, Pereira AS, Tavares P, Bursakov S, Duarte R, Caldeira J, Moura JJG, Moura I.  1999.  Purification and characterization of a tungsten-containing formate dehydrogenase from Desulfovibrio gigas. Biochemistry. {38}:{16366-16372}., Number {49} Abstract

An air-stable formate dehydrogenase (FDH), an enzyme that catalyzes the oxidation of formate to carbon dioxide, was purified from the sulfate reducing organism Desulfovibrio gigas (D. gigas) NCIB 9332. D. gigas FDH is a heterodimeric protein [alpha (92 kDa) and beta (29 kDa) subunits] and contains 7 +/- 1 Fe/protein and 0.9 +/- 0.1 W/protein, Selenium was not detected. The UV/visible absorption spectrum of D, gigas FDH is typical of an iron-sulfur protein. Analysis of pterin nucleotides yielded a content of 1.3 +/- 0.1 guanine monophosphate/mol of enzyme, which suggests a tungsten coordination with two molybdopterin guanine dinucleotide cofactors. Both Mossbauer spectroscopy performed on D. gigas FDH grown in a medium enriched with Fe-57 and EPR studies performed in the native and fully reduced state of the protein confirmed the presence of two [4Fe-4S] clusters. Variable-temperature EPR studies showed the presence of two signals compatible with an atom in a d(1) configuration albeit with an unusual relaxation behavior as compared to the one generally observed for W(V) ions.

Coufal, DE, Tavares P, Pereira AS, Hyunh BH, Lippard SJ.  1999.  Reactions of nitric oxide with the reduced non-heme diiron center of the soluble methane monooxygenase hydroxylase. Biochemistry. {38}:{4504-4513}., Number {14} Abstract

The soluble methane monooxygenase system from Methylococcus capsulatus (Bath) catalyzes the oxidation of methane to methanol and water utilizing dioxygen at a non-heme, carboxylate-bridged diiron center housed in the hydroxylase (H) component. To probe the nature of the reductive activation of dioxygen in this system, reactions of an analogous molecule, nitric oxide, with the diiron(II) form of the enzyme (H-red) Were investigated by both continuous and discontinuous kinetics methodologies using optical, EPR, and Mossbauer spectroscopy. Reaction of NO with H-red affords a dinitrosyl species, designated H-dinitrosyl, with optical spectra (lambda(max) = 450 and 620 nm) and Mossbauer parameters (delta = 0.72 mm/s, Delta E-Q = 1.55 mm/s) similar to those of synthetic dinitrosyl analogues and of the dinitrosyl adduct of the reduced ribonucleotide reductase R2 (RNR-R2) protein. The H-dinitrosyl species models features of the H-peroxo intermediate formed in the analogous dioxygen reaction. In the presence of protein B, H-dinitrosyl builds up with approximately the same rate constant as H-peroxo (similar to 26 s(-1)) at 4 degrees C. In the absence of protein B, the kinetics of H-dinitrosyl formation were best fit with a biphasic A --> B --> C model, indicating the presence of an intermediate species between H-red and H-dinitrosyl. This result contrasts with the reaction of H-red with dioxygen, in which the H-peroxo intermediate forms in measurable quantities only in the presence of protein B. These findings suggest that protein B may alter the positioning but not the availability of coordination sites on iron for exogenous ligand binding and reactivity.

Ciampolini, M, Formica M, Fusi V, Saint-Mauricec A, Micheloni M, Nardi N, Pontellini R, Pina F, Romani P, Sabatini AM, Valtancoli B.  1999.  Selective lithium complexation by photoactive aza-cages bearing the anthracene function. European Journal of Inorganic Chemistry. :2261-2268., Number 12 AbstractWebsite
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Archer, M, Carvalho AL, Teixeira S, Moura I, Moura JJG, Rusnak F, Romao MJ.  1999.  Structural studies by X-ray diffraction on metal substituted desulforedoxin, a rubredoxin-type protein. Protein Science. 8:1536-1545., Number 7 AbstractWebsite
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1998
Santos, AGD, Klute W, Torode J, Bohm VPW, Cabrita E, Runsink J, Hoffmann RW.  1998.  Flexible molecules with defined shape. X. Synthesis and conformational study of 1,5-diaza-cis-decalin, SEP 1998. New Journal of Chemistry. 22:993-997., Number 9 Abstract

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Gavel, OY, Bursakov SA, Calvete JJ, George GN, Moura JJ, Moura I.  1998.  ATP sulfurylases from sulfate-reducing bacteria of the genus Desulfovibrio. A novel metalloprotein containing cobalt and zinc, Nov 17. Biochemistry. 37:16225-32., Number 46 AbstractWebsite

Adenosine triphosphate sulfurylase catalyzes the formation of adenosine 5'-phosphosulfate from adenosine triphosphate and sulfate. The enzyme plays a crucial role in sulfate activation, the key step for sulfate utilization, and has been purified from crude extracts of Desulfovibrio desulfuricans ATCC 27774 and Desulfovibrio gigas. Both proteins are homotrimers [141 kDa (3 x 47) for D. desulfuricans and 147 kDa (3 x 49) for D. gigas] and have been identified, for the first time, as metalloproteins containing cobalt and zinc. EXAFS reveals that either cobalt or zinc binds endogenously at presumably equivalent metal binding sites and is tetrahedrally coordinated to one nitrogen and three sulfur atoms. Furthermore, the electronic absorption spectra display charge-transfer bands at 335 and 370 nm consistent with sulfur coordination to cobalt, and as expected for a distorted tetrahedral cobalt geometry, d-d bands are observed at 625, 666, and 715 nm. This geometry is supported by the observation of high-spin Co2+ EPR signals at g approximately 6.5.

Costa, LM, Moura EM, Moura JJ, de Sousa M.  1998.  Iron compounds after erythrophagocytosis: chemical characterization and immunomodulatory effects, Jun 9. Biochem Biophys Res Commun. 247:159-65., Number 1 AbstractWebsite

In humans, the lymphomyeloid system has a fundamental role on iron metabolism promoting its recycling due to a continuous removal of effete red blood cells. Additionally, one of the most intriguing aspects of metalloporphyrins in biology is their effect on the immune system. However, the process of erythrocyte catabolism is still poorly understood and needs further research. In the present study, we attempt to investigate the nature and the possible physiologic role of Fe compounds released after erythrophagocytosis during the removal of red blood cells. Monocyte erythrophagocytosis in vitro experiments were done to characterize chemically the Fe compounds present inside the cells and in the culture supernatants. We tested the probable immunomodulatory functions of erythrophagocytosis products over lymphocyte cultures activated in vitro with T mitogens (alpha-CD3). Data obtained from atomic absorption spectroscopy confirmed the presence of Fe in the culture supernatants of monocyte cultures after erythrophagocytosis. Also, high-spin haem complexes derived from erythrocyte catabolism were detected by electron paramagnetic electronic resonance. Finally, in vitro activated lymphocyte proliferation experiments indicate the co-mitogenic properties of monocyte culture supernatants after red blood cells phagocytosis. Thus, the results of the present work provide evidence that culture monocyte supernatants after in vitro erythrophagocytosis contain Fe (III) high-spin haem complexes and show lymphocyte proliferation co-stimulatory properties.

Pettigrew, GW, Gilmour R, Goodhew CF, Hunter DJ, Devreese B, Van Beeumen J, Costa C, Prazeres S, Krippahl L, Palma PN, Moura I, Moura JJ.  1998.  The surface-charge asymmetry and dimerisation of cytochrome c550 from Paracoccus denitrificans--implications for the interaction with cytochrome c peroxidase, Dec 1. Eur J Biochem. 258:559-66., Number 2 AbstractWebsite

The implications of the dimeric state of cytochrome c550 for its binding to Paracoccus cytochrome c peroxidase and its delivery of the two electrons required to restore the active enzyme during catalysis have been investigated. The amino acid sequence of cytochrome c550 of Paracoccus denitrificans strain LMD 52.44 was determined and showed 21 differences from that of strain LMD 22.21. Based on the X-ray structure of the latter, a structure for the cytochrome c550 monomer from strain 52.44 is proposed and a dipole moment of 945 debye was calculated with an orientation close to the exposed haem edge. The behaviour of the cytochrome on molecular-exclusion chromatography is indicative of an ionic strength-dependent monomer (15 kDa)/dimer (30 kDa) equilibrium that can also be detected by 1H-NMR spectroscopy. The apparent mass of 50 kDa observed at very low ionic strength was consistent with the presence of a strongly asymmetric dimer. This was confirmed by cross-linking studies, which showed that a cross-linked species of mass 30 kDa on SDS behaved with an apparent mass of 50 kDa on molecular-exclusion chromatography. A programme which carried out and evaluated molecular docking of two monomers to give a dimer generated a most probable dimer in which the monomer dipoles lay almost antiparallel to each other. The resultant dipole moment of the dimer is therefore small. Although this finding calls into question the possibility of preorientation of a strongly asymmetrically charged cytochrome as it collides with a redox partner, the stoichiometry of complex formation with cytochrome c peroxidase as studied by 1H-NMR spectroscopy shows that it is the monomer that binds.

Kennedy, M, Yu L, Lima MJ, Ascenso CS, Czaja C, Moura I, Moura JJG, Rusnak F.  1998.  Metal binding to the tetrathiolate motif of desulforedoxin and related polypeptides, Dec. Journal of Biological Inorganic Chemistry. 3:643-649., Number 6 AbstractWebsite

Desulforedoxin and the N-terminus of desulfoferrodoxin share a 36 amino acid domain containing a (Cys-S)(4) metal binding site. Recombinant forms of desulforedoxin, an N-terminal fragment of desulfoferrodoxin, and two desulforedoxin mutant proteins were reconstituted with Fe3+ Cd2+, and Zn2+ and relative metal ion affinities assessed by proton titrations. Protons compete with metal for protein ligands, a process that can be followed by monitoring the optical spectrum of the metal-protein complex as a function of pH. For all polypeptides, Fe3+ bound with the highest affinity, whereas the affinity of Zn2+ was greater than Cd2+ in desulforedoxin and the N-terminal fragment of desulfoferrodoxin, but this order was reversed in desulforedoxin mutant proteins. Metal binding in both mutants was significantly impaired. Furthermore, the Fe3+ complex of both mutants underwent a time-dependent bleaching process which coincided with increased reactivity of cysteine residues to Ellman's reagent and concomitant metal dissociation. It is hypothesized that this results from an autoredox reaction in which Fe3+ is reduced to Fe2+ with attendant oxidation of ligand thiols.

Feio, MJ, Beech IB, Carepo M, Lopes JM, Cheung CW, Franco R, Guezennec J, Smith JR, Mitchell JI, Moura JJ, Lino AR.  1998.  Isolation and characterisation of a novel sulphate-reducing bacterium of the Desulfovibrio genus, Apr. Anaerobe. 4:117-30., Number 2 AbstractWebsite

A novel sulphate-reducing bacterium (Ind 1) was isolated from a biofilm removed from a severely corroded carbon steel structure in a marine environment. Light microscopy observations revealed that cells were Gram-negative, rod shaped and very motile. Partial 16S rRNA gene sequencing and analysis of the fatty acid profile demonstrated a strong similarity between the new species and members from the Desulfovibrio genus. This was confirmed by the results obtained following purification and characterisation of the key proteins involved in the sulphate-reduction pathway. Several metal-containing proteins, such as two periplasmic proteins: hydrogenase and cytochrome c3, and two cytoplasmic proteins: ferredoxin and sulphite reductase, were isolated and purified. The latter proved to be of the desulfoviridin type which is typical of the Desulfovibrio genus. The study of the remaining proteins revealed a high degree of similarity with the homologous proteins isolated from Desulfovibrio gigas. However, the position of the strain within the phylogenetic tree clearly indicates that the bacterium is closely related to Desulfovibrio gabonensis, and these three strains form a separate cluster in the delta subdivision of the Proteobacteria. On the basis of the results obtained, it is suggested that Ind 1 belongs to a new species of the genus Desulfovibrio, and the name Desulfovibrio indonensis is proposed.

Bencini, A, Bernardo MA, Bianchi A, Ciampolini M, Fusi V, Nardi N, Parola AJ, Pina F, Valtancoli B.  1998.  Modulation of the ligational properties of a new cylindrical macrotricycle by coupling of photochemical- and pH-switching properties, 1998. Journal of the Chemical Society-Perkin Transactions 2. :413-418. AbstractWebsite

The new cylindrical molecule L containing two tetraazamacrocyclic rings linked by two azobenzene pillars displays photoelastic properties, Light absorption at 366 nm gives rise to trans --> cis isomerization of the azobenzene moieties producing two isomers containing one or two cis-azobenzenes, respectively, The three trans-trans (E-E), trans-cis (E-Z) and cis-cis (Z-Z) isomers have been identified and characterized by H-1 NMR spectroscopy, allowing the dependence of their formation percentages with irradiation time to be determined, The sequence of photochemical reactions E-E --> E-Z --> Z-Z allows almost complete conversion of the E-E into the Z-Z isomer at 366 nm and 298 K, Both thermal (k = 1.75 x 10(-5) s(-1) at 313 K) and photo-induced (at 436 and 313 nm) back-isomerization reactions have been studied, The protonation constants of the three isomers in equimolar solutions of water-DMSO indicate a decreasing basicity in the order E-E > E-Z > Z-Z, in agreement with increasing electrostatic repulsion between the positive charges caused by a reduction in the separation between the protonation sites occurring upon Z --> E isomerization.

Louro, RO, Catarino T, Salgueiro CA, Legall J, Turner DL, Xavier AV.  1998.  Molecular Basis for Energy Transduction: Mechanisms of Cooperativity in Multihaem Cytochromes. Biological Electron Transfer Chains: Genetics, Composition and Mode of Operation NATO ASI Series Volume 512. (Canters, G.W., Vijgenboom, E., Eds.).:209-223.: Springer Netherlands Abstract

Energy transduction through electron/proton cooperativity is at the heart of the metabolism of every living organism Nonetheless, the search for the structural bases sustaining these phenomena has been hindered by the fact that they are usually associated with complex transmembrane proteins of high molecular weight.

Saraiva, LM, Salgueiro CA, da Costa PN, Messias AC, Legall J, van Dongen WMAM, Xavier AV.  1998.  Replacement of Lysine 45 by Uncharged Residues Modulates the Redox-Bohr Effect in Tetraheme Cytochrome c3 of Desulfovibrio vulgaris (Hildenborough). Biochemistry. 37(35):12160-12165. AbstractWebsite

The structural basis for the pH dependence of the redox potential in the tetrahemic Desulfovibrio vulgaris (Hildenborough) cytochrome c3 was investigated by site-directed mutagenesis of charged residues in the vicinity of heme I. Mutation of lysine 45, located in the neighborhood of the propionates of heme I, by uncharged residues, namely threonine, glutamine and leucine, was performed. The replacement of a conserved charged residue, aspartate 7, present in the N-terminal region and near heme I was also attempted. The analysis of the redox interactions as well as the redox-Bohr behavior of the mutated cytochromes c3 allowed the conclusion that residue 45 has a functional role in the control of the pKa of the propionate groups of heme I and confirms the involvement of this residue in the redox-Bohr effect.

Laia, CAT, Lopez-Cornejo P, Costa SMB, d'Oliveira J, Martinho JMG.  1998.  Dynamic light scattering study of AOT microemulsions with nonaqueous polar additives in an oil continuous phase. Langmuir. 14:3531-3537., Number 13 AbstractWebsite
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