Requirement of fur for the full induction of dps expression in salmonella enterica serovar typhimurium

  • Ah Young Yoo
  • , Sam Woong Kim
  • , Jong Earn Yu
  • , Young Hee Kim
  • , Jaeho Cha
  • , Jeong Il OH
  • , Seong Kug Eo
  • , John Hwa Lee
  • , Ho Young Kang*
  • *Corresponding author for this work

Research output: Contribution to journalJournal articlepeer-review

Abstract

The Dps protein, which is overexpressed in harsh environments, is known to play a critical role in the protection of DNA against oxidative stresses. In this study, the roles of Fur in the expression of the dps gene in Salmonella and the protection mechanisms against oxidative stress in Salmonella cells preexposed to iron-stress were investigated. Two putative Fur boxes were predicted within the promoter region of the S. typhimurium dps gene. The profile of dps expression performed by the LacZ reporter assay revealed growth-phase dependency regardless of iron-status under the culture conditions. The fur mutant, χ4659, evidenced a reduced level of β-galactosidase as compared to the wild-type strain. The results observed after the measurement of the Dps protein in various Salmonella regulatory mutants were consistent with the results acquired in the reporter assay. This evidence suggested that Fur performs a function as a subsidiary regulator in the expression of dps. The survival ability of Salmonella strains after exposure to oxidative stress demonstrated that the Dps protein performs a pivotal function in the survival of stationary-phase S. typhimurium against oxidative stress. Salmonella cells grown in iron-restricted condition required Dps for full protection against oxidative stress. The CK24 (Δdps) cells grown in iron-replete condition survived at a rate similar to that observed in the wild-type strain, thereby suggesting the induction of an unknown protection mechanism(s) other than Dps in this condition.

Original languageEnglish
Pages (from-to)1452-1459
Number of pages8
JournalJournal of Microbiology and Biotechnology
Volume17
Issue number9
StatePublished - 2007.09

Keywords

  • Dps
  • Fur
  • Iron metabolism
  • Oxidative stress
  • S. typhimurium

Quacquarelli Symonds(QS) Subject Topics

  • Biological Sciences

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