Copper-substituted forms of the wild type and C42A variant of rubredoxin,
Thapper, A., Rizzi A. C., Brondino C. D., Wedd A. G., Pais R. J., Maiti B. K., Moura I., Pauleta S. R., and Moura J. J. G.
, J Inorg Biochem, Volume 127, p.232-237, (2013)
Induced peroxidase activity of haem containing nitrate reductases revealed by protein film electrochemistry,
Coelho, C., Marangon J., Rodrigues D., Moura J. J. G., Romão M. J., Paes de Sousa P. M., and Correia dos Santos M. M.
, J Electroanal Chem, Volume 693, p.105-113, (2013)
Insights into the electrochemical behaviour of composite materials: Monovacant polyoxometalates porous metal-organic framework,
Paes de Sousa, P. M., Grazina R., Barbosa A. D. S., de Castro Baltazar, Moura J. J. G., Cunha-Silva L., and Salete S.
, Electrochim Acta, Volume 87, p.853-859, (2013)
Iron-sulfur centers: New roles for ancient metal sites,
Grazina, R., Pauleta S., Moura J. J. G., and Moura I.
, Comprehensive Inorganic Chemistry II, Vol. 3: Bioinorganic Fundamentals and Applications: Metals in Natural Living Systems and Metals in Toxicology and Medicine, Oxford, p.103-148, (2013)
Kinetic and structural studies of aldehyde oxidoreductase from Desulfovibrio gigas reveal a dithiolene-based chemistry for enzyme activation and inhibition by H2O2,
Marangon, J., Correia H. D., Brondino C. D., Moura J. J. G., Romao M. J., Gonzalez P. J., and Santos-Silva T.
, PLoS One, Volume 8, p.e83234, (2013)
Marinobacter hydrocarbonoclasticus is an aerobic denitrifier,
Pauleta, S. R., Ramos S., Pietsch M., Carreira C., Dell'Acqua S., and Moura I.
, EuroBIC 11, Granada, p.49-53, (2013)
Nitrite biosensing using cytochrome c nitrite reductase: Towards a disposable strip electrode,
C., Correia, M. Rodrigues, C.M. Silveira, J.J.G. Moura, E. Ochoteco, E. Jubete, and M.G. Almeida
, Biomedical Engineering Systems and Technologies, Communications in Computer and Information Science, DOI:10.1007/978-3-642-38256-7_3, p.41-51, (2013)
Nitrous Oxide Reductase,
Pauleta, S. R., Dell’Acqua S., and Moura I.
, Coord Chem Rev, Volume 257, p.332-249, (2013)
Nitrous Oxide Reductase,
Dell’Acqua, S., Pauleta S. R., Moura I., and Moura J. G.
, Encyclopedia of Metalloproteins - Copper, (2013)
Periplasmic nitrate reductases and formate dehydrogenases: Biological control of the chemical properties of Mo and W for fine tuning of reactivity, substrate specificity and metabolic role,
Gonzalez, P. J., Rivas M. G., Mota C. S., Brondino C. D., Moura I., and Moura J. J. G.
, Coord Chem Rev, Volume 257, p.315-331, (2013)
Rearrangement of Mo-Cu-S Cluster Reflects the Structural Instability of Orange Protein Cofactor,
Maiti, B. K., Avilés T., Carepo M. S., Moura I., S.R. Pauleta, and Moura J. J. G.
, Z Anorg Allg Chem, Volume 639, p.1361-1364, (2013)
The sulfur-shift: an activation mechanism for periplasmic nitrate reductase and formate dehydrogenase,
Cerqueira, N., Fernandes P., González P., Moura J. J. G., and Ramos M. J.
, Inorg Chem, Volume 52, p.10766-10772, (2013)
Superoxide reductase: different interaction modes with its two redox partners,
Almeida, R. A., Turano P., Moura I., Moura J. J. G., and Pauleta S. R.
, ChemBioChem, Volume 14, p.1858–1866, (2013)