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Título: Catalytic Thr or ser Residue Modulates Structural Switches in 2-Cys Peroxiredoxin by Distinct Mechanisms
Autor: Tairum, C. A.
Santos, M. C.
Breyer, C. A.
Geyer, R. R.
Nieves Álvarez, Cecilia J.
Portillo-Ledesma, Stephanie
Ferrer-Sueta, Gerardo
Toledo, J. C. Jr
Toyama, M. H.
Augusto, Ohara
Netto, Luis E. S.
De Oliveira, M. A.
Tipo: Artículo
Palabras clave: 2-Cys Prx, Peroxiredoxin
Fecha de publicación: 2016
Resumen: Typical 2-Cys Peroxiredoxins (2-Cys Prxs) reduce hydroperoxides with extraordinary rates due to an active site composed of a catalytic triad, containing a peroxidatic cysteine (C P ), an Arg, and a Thr (or Ser). 2-Cys Prx are involved in processes such as cancer; neurodegeneration and host-pathogen interactions. During catalysis, 2-Cys Prxs switch between decamers and dimers. Analysis of 2-Cys Prx structures in the fully folded (but not locally unfolded) form revealed a highly conserved, non-conventional hydrogen bond (CH-π) between the catalytic triad Thr of a dimer with an aromatic residue of an adjacent dimer. In contrast, structures of 2-Cys Prxs with a Ser in place of the Thr do not display this CH-π bond. Chromatographic and structural data indicate that the Thr (but not Ser) destabilizes the decamer structure in the oxidized state probably through steric hindrance. As a general trend, mutations in a yeast 2-Cys Prx (Tsa1) favoring the dimeric state also displayed a decreased catalytic activity. Remarkably, yeast naturally contains Thr-Ser variants (Tsa1 and Tsa2, respectively) with distinct oligomeric stabilities in their disulfide states.
Editorial: Nature Publishing Group
EN: Scientific Reports, 2016, 6, art. no. 33133
Citación: Tairum, C.A., et al. Catalytic Thr or Ser Residue Modulates Structural Switches in 2-Cys Peroxiredoxin by Distinct Mechanisms. Scientific Reports, 2016, 6, art. nro. 33133. doi: 10.1038/srep33133
ISSN: 2045-2322
Aparece en las colecciones: Publicaciones académicas y científicas - Facultad de Ciencias

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