Your browser doesn't support javascript.
loading
UV-radiation-induced formation of DNA bipyrimidine photoproducts in Bacillus subtilis endospores and their repair during germination
Moeller, Ralf; Douki, Thierry; Cadet, Jean; Stackebrandt, Erko; Nicholson, Wayne L; Rettberg, Petra; Reitz, Günther; Horneck, Gerda.
Afiliação
  • Moeller, Ralf; German Aerospace Center. Institute of Aerospace Medicine. Radiation Biology Division. Cologne. Germany
  • Douki, Thierry; UMR-E3 (CEA/UJF). Service of Inorganic and Biological Chemistry. France
  • Cadet, Jean; UMR-E3 (CEA/UJF). Service of Inorganic and Biological Chemistry. France
  • Stackebrandt, Erko; German Collection of Microorganisms and Cell Cultures GmbH. Braunschweig. Germany
  • Nicholson, Wayne L; University of Florida. Department of Microbiology and Cell Science. Space Life Sciences Laboratory. Kennedy Space Center. USA
  • Rettberg, Petra; German Aerospace Center. Institute of Aerospace Medicine. Radiation Biology Division. Cologne. Germany
  • Reitz, Günther; German Aerospace Center. Institute of Aerospace Medicine. Radiation Biology Division. Cologne. Germany
  • Horneck, Gerda; German Aerospace Center. Institute of Aerospace Medicine. Radiation Biology Division. Cologne. Germany
Int. microbiol ; 10(1): 39-46, mar. 2007. tab, graf
Artigo em En | IBECS | ID: ibc-054986
Biblioteca responsável: ES1.1
Localização: ES1.1 - BNCS
ABSTRACT
The spore photoproduct (SP) is the main DNA lesion after UV-C irradiation, and its repair is crucial for the resistance of spores to UV. The aims of the present study were to assess the formation and repair of bipyrimidine photoproducts in spore DNA of various Bacillus subtilis strains using a sensitive HPLC tandem mass spectrometry assay. Strains deficient in nucleotide excision repair, spore photoproduct lyase, homologous recombination (recA), and with wild-type repair capability were investigated. Additionally, one strain deficient in the formation of major small, acid-soluble spore proteins (SASPs) was tested. In all SASP wild-type strains, UV-C irradiation generated almost exclusively SP (>95 %) but also a few by-photoproducts. In the major SASP-deficient strain, SP and by-photoproducts were generated in equal quantities. The status time of 60 min, >75% of the SP was repaired in wild-type strains and in the SASP-deficient strain, while half of the photoinduced SP was removed in the recA-deficient strain. SP-lyase-deficient spores repaired 20% of the SP produced. Thus, SP lyase, with respect to nucleotide excision repair, has a remarkable impact on the removal of SP upon spore germination (AU)
RESUMEN
No disponible
Assuntos
Buscar no Google
Coleções: Bases de dados nacionais / Espanha Base de dados: IBECS Assunto principal: Raios Ultravioleta / Bacilos Gram-Positivos Formadores de Endosporo Idioma: Inglês Revista: Int. microbiol Ano de publicação: 2007 Tipo de documento: Artigo Instituição/País de afiliação: German Aerospace Center/Germany / German Collection of Microorganisms and Cell Cultures GmbH/Germany / UJF)+France / University of Florida/USA
Buscar no Google
Coleções: Bases de dados nacionais / Espanha Base de dados: IBECS Assunto principal: Raios Ultravioleta / Bacilos Gram-Positivos Formadores de Endosporo Idioma: Inglês Revista: Int. microbiol Ano de publicação: 2007 Tipo de documento: Artigo Instituição/País de afiliação: German Aerospace Center/Germany / German Collection of Microorganisms and Cell Cultures GmbH/Germany / UJF)+France / University of Florida/USA
...