Regulation of SoxR, the superoxide-sensory regulator in Escherichia coli.

  • Lee Joon-Hee (School of Biological Sciences, Seoul National University) ;
  • Koo Mi-Sun (School of Biological Sciences, Seoul National University) ;
  • Yeo Won-Sik (School of Biological Sciences, Seoul National University) ;
  • Roe Jung-Hye (School of Biological Sciences, Seoul National University)
  • Published : 2000.10.01

Abstract

In order to find out SoxR-reducing system in E. coli, we generated Tn10-insertion mutants and screened for constitutive expression of SoxS in a soxS-lacZ fusion strain. One mutation was mapped in rseB, a gene in rseABC (Regulation of SigmaE) operon. The constitutive soxS-expressing phenotype was due to the polar effect on the downstream gene, rseC. RseC is likely to function as a component of SoxR reduction system because SoxR was kept in oxidized form to activate soxS expression in rseC mutant. RseC is an integral membrane protein with an N-terminal cysteine-rich domain in the cytoplasm. The functionally critical cysteines were determined by substitution mutagenesis. The truncated N-terminal domain of RseC reduced the soxS transcription by $50\%$ as judged by in vitro transcription assay. Currently RseC is believed to be a reducing factor for SoxR. However, the mechanism for the reduction needs further investigation.

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