Ciencias,UNAM

Molecular evolution of peptide methionine sulfoxide reductases (MsrA and MsrB): on the early development of a mechanism that protects against oxidative damage

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dc.contributor.author Delaye, L
dc.contributor.author Becerra Bracho, Arturo Carlos ll
dc.contributor.author Orgel, LE
dc.contributor.author Lazcano Araujo Reyes, Antonio Eusebio
dc.date.accessioned 20130312T14:38:32Z
dc.date.available 20130312T14:38:32Z
dc.date.issued 2007
dc.identifier.citation Delaye, L., Becerra, A., Orgel, L. E., and Lazcano, A. 2007. Molecular evolution of peptide methionine sulfoxide reductases (MsrA and MsrB): on the early development of a mechanism that protects against oxidative damage. Journal of Molecular Evolution. 64: 15-32 en_US
dc.identifier.issn 14321432
dc.identifier.uri http://hdl.handle.net/11154/140291
dc.description.abstract Methionine sulfoxide reductases, enzymes that reverse the oxidation of methionine residues, have been described in a wide range of species. The reduction of the diastereoisomers of oxidized methionine is catalyzed by two different monomeric methionine sulfoxide reductases (MsrA and MsrB) and is best understood as an evolutionary response to high levels of oxygen either in the Earth's atmosphere or possibly in more localized environments. Phylogenetic analyses of these proteins suggest that their distribution is the outcome of a complex history including many paralogy and lateral gene transfer events. en_US
dc.language.iso en en_US
dc.title Molecular evolution of peptide methionine sulfoxide reductases (MsrA and MsrB): on the early development of a mechanism that protects against oxidative damage
dc.type Artículo de investigación en_US
dc.identifier.idprometeo 1281
dc.identifier.doi 10.1007/s0023900502812
dc.source.novolpages 64(1): 15-32
dc.subject.wos Biochemistry & Molecular Biology
dc.subject.wos Evolutionary Biology
dc.subject.wos Genetics & Heredity
dc.description.index WoS: SCI, SSCI o AHCI
dc.subject.keywords methionine sulfoxide reductases
dc.subject.keywords lateral gene transfer
dc.subject.keywords methionine oxidation
dc.relation.journal Journal of Molecular Evolution
dc.description.Departamento Departamento de Biología Evolutiva
dc.relation.Instadscription Facultad de Ciencias, UNAM

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