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2011
Paes de Sousa, P. M., D. Rodrigues, C. G. Timoteo, M. L. Simoes Goncalves, G. W. Pettigrew, I. Moura, J. J. Moura, and M. M. Correia Dos Santos. "Analysis of the activation mechanism of Pseudomonas stutzeri cytochrome c peroxidase through an electron transfer chain." J Biol Inorg Chem. 16 (2011): 881-8. AbstractWebsite

The activation mechanism of Pseudomonas stutzeri cytochrome c peroxidase (CCP) was probed through the mediated electrochemical catalysis by its physiological electron donor, P. stutzeri cytochrome c-551. A comparative study was carried out, by performing assays with the enzyme in the resting oxidized state as well as in the mixed-valence activated form, using cyclic voltammetry and a pyrolytic graphite membrane electrode. In the presence of both the enzyme and hydrogen peroxide, the peak-like signal of cytochrome c-551 is converted into a sigmoidal wave form characteristic of an E(r)C'(i) catalytic mechanism. An intermolecular electron transfer rate constant of (4 +/- 1) x 10(5) M(-1) s(-1) was estimated for both forms of the enzyme, as well as a similar Michaelis-Menten constant. These results show that neither the intermolecular electron transfer nor the catalytic activity is kinetically controlled by the activation mechanism of CCP in the case of the P. stutzeri enzyme. Direct enzyme catalysis using protein film voltammetry was unsuccessful for the analysis of the activation mechanism, since P. stutzeri CCP undergoes an undesirable interaction with the pyrolytic graphite surface. This interaction, previously reported for the Paracoccus pantotrophus CCP, induces the formation of a non-native conformation state of the electron-transferring haem, which has a redox potential 200 mV lower than that of the native state and maintains peroxidatic activity.

2009
Conrath, K., AS Pereira, C. E. Martins, C. G. Timoteo, P. Tavares, S. Spinelli, J. Kinne, C. Flaudrops, C. Cambillau, S. Muyldermans, I. Moura, J. J. Moura, M. Tegoni, and A. Desmyter. "Camelid nanobodies raised against an integral membrane enzyme, nitric oxide reductase." Protein Sci. 18 (2009): 619-28. AbstractWebsite

Nitric Oxide Reductase (NOR) is an integral membrane protein performing the reduction of NO to N(2)O. NOR is composed of two subunits: the large one (NorB) is a bundle of 12 transmembrane helices (TMH). It contains a b type heme and a binuclear iron site, which is believed to be the catalytic site, comprising a heme b and a non-hemic iron. The small subunit (NorC) harbors a cytochrome c and is attached to the membrane through a unique TMH. With the aim to perform structural and functional studies of NOR, we have immunized dromedaries with NOR and produced several antibody fragments of the heavy chain (VHHs, also known as nanobodies). These fragments have been used to develop a faster NOR purification procedure, to proceed to crystallization assays and to analyze the electron transfer of electron donors. BIAcore experiments have revealed that up to three VHHs can bind concomitantly to NOR with affinities in the nanomolar range. This is the first example of the use of VHHs with an integral membrane protein. Our results indicate that VHHs are able to recognize with high affinity distinct epitopes on this class of proteins, and can be used as versatile and valuable tool for purification, functional study and crystallization of integral membrane proteins.

2007
Martins, C. E., AS Pereira, P. Tavares, C. M. Cordas, F. Folgosa, C. G. Timoteo, S. G. Naik, and BH HUYNH. "Redox states of Nitric Oxide Reductase from Pseudomonas nautica: Kinetic and Spectroscopic characterization." J Biol Inorg Chem. 12 (2007): S83. Abstract
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2006
Cordas, C. M., AS Pereira, C. E. Martins, C. G. Timoteo, I. Moura, J. J. Moura, and P. Tavares. "Nitric oxide reductase: direct electrochemistry and electrocatalytic activity." Chembiochem. 7 (2006): 1878-81. AbstractWebsite
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2005
Martins, C. E., C. M. Cordas, C. G. Timoteo, P. Tavares, and AS Pereira. "Nitric oxide reductase from Pseudomonas nautica." Eur Biophys J. 34 (2005): 663. Abstract
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2003
Bonifacio, C., CA Cunha, A. Muller, C. G. Timoteo, JM Dias, I. Moura, and MJ Romao. "Crystallization and preliminary X-ray diffraction analysis of the di-haem cytochrome c peroxidase from Pseudomonas stutzeri." Acta crystallographica. 59 (2003): 345-7. AbstractWebsite

Crystals of cytochrome c peroxidase from Pseudomonas stutzeri were obtained using sodium citrate and PEG 8000 as precipitants. A complete data set was collected to a resolution of 1.6 A under cryogenic conditions using synchrotron radiation at the ESRF. The crystals belong to space group P2(1), with unit-cell parameters a = 69.29, b = 143.31, c = 76.83 A, beta = 100.78 degrees. Four CCP molecules were found in the asymmetric unit, corresponding to a pair of dimers related by local dyads. The crystal packing in the structure shows that the functional dimers can dimerize, as suggested by previous biochemical studies.