Analyses of the Regulatory Mechanism and Physiological Roles of Pseudomonas aeruginosa OhrR, a Transcription Regulator and a Sensor of Organic Hydroperoxides

Author:

Atichartpongkul Sopapan1,Fuangthong Mayuree12,Vattanaviboon Paiboon12,Mongkolsuk Skorn1345

Affiliation:

1. Laboratory of Biotechnology, Chulabhorn Research Institute

2. Chulabhorn Graduate Institute, Lak Si, Bangkok 10210, Thailand

3. Department of Biotechnology

4. Center for Emerging Bacterial Diseases, Faculty of Science, Mahidol University, Bangkok 10400, Thailand

5. Center for Environmental Health, Toxicology and Management of Chemicals, Bangkok, Thailand

Abstract

ABSTRACT ohrR encodes an organic hydroperoxide sensor and a transcriptional repressor that regulates organic hydroperoxide-inducible expression of a thiol peroxidase gene, ohr , and itself. OhrR binds directly to the operators and represses transcription of these genes. Exposure to an organic hydroperoxide leads to oxidation of OhrR and to subsequent structural changes that result in the loss of the repressor's ability to bind to the operators that allow expression of the target genes. Differential induction of ohrR and ohr by tert -butyl hydroperoxide suggests that factors such as the repressor's dissociation constants for different operators and the chemical nature of the inducer contribute to OhrR-dependent organic hydroperoxide-inducible gene expression. ohrR and ohr mutants show increased and decreased resistance to organic hydroproxides, respectively, compared to a parental strain. Moreover, the ohrR mutant had a reduced-virulence phenotype in the Pseudomonas aeruginosa - Caenorhabditis elegans pathogenicity model.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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