4.4 Article

Thiol Starvation Induces Redox-Mediated Dysregulation of Escherichia coli Biofilm Components

期刊

JOURNAL OF BACTERIOLOGY
卷 200, 期 1, 页码 -

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/JB.00389-17

关键词

cysteine auxotrophy; UPEC; curli; cellulose; extracellular matrix; amdinocillin; cysteine; exopolysaccharide; uropathogens

资金

  1. University of Michigan Rackham Dissertation Fellowship
  2. National Institutes of Health [R01 GM118651]
  3. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [R01GM118651] Funding Source: NIH RePORTER

向作者/读者索取更多资源

A hallmark of bacterial biofilms is the production of an extracellular matrix (ECM) that encases and protects the community from environmental stressors. Biofilm formation is an integral portion of the uropathogenic Escherichia coil (UPEC) life cycle. Approximately 2% of UPEC isolates are cysteine auxotrophs. Here, we investigated how cysteine homeostasis impacted UPEC UTI89 strain biofilm formation and, specifically, the production of the ECM components curli and cellulose. Cysteine auxotrophs produced less cellulose and slightly more curli compared to wild -type (VVT) strains, and cysteine auxotrophs formed smooth, nonrugose colonies. Cellulose production was restored in cysteine auxotrophs when YfiR was inactivated. YfiR is a redox-sensitive regulator of the diguanylate cyclase, YfiN. The production of curli, a temperature-regulated appendage, was independent of temperature in UTI89 cysteine auxotrophs. In a screen of UPEC isolates, we found that 60% of UPEC cysteine auxotrophs produced curli at 37 degrees C, but only 2% of cysteine prototrophic UPEC isolates produced curli at 37 degrees C. Interestingly, sublethal concentrations of amdinocillin and trimethoprim-sulfamethoxazole inhibited curli production, whereas strains auxotrophic for cysteine continued to produce curli even in the presence of amdinocillin and trimethoprim-sulfamethoxazole. The dysregulation of ECM components and resistance to amdinocillin in cysteine auxotrophs may be linked to hyperoxidation, since the addition of exogenous cysteine or glutathione restored WT biofilm phenotypes to mutants unable to produce cysteine and glutathione. IMPORTANCE Uropathogenic Escherichia coli (UPEC) bacteria are the predominant causative agent of urinary tract infections (UTIs). UTIs account for billions of dollars of financial burden annually to the health care industry in the United States. Biofilms are an important aspect of the UPEC pathogenesis cascade and for the establishment of chronic infections. Approximately 2% of UPEC isolates from UTIs are cysteine auxotrophs, yet there is relatively little known about the biofilm formation of UPEC cysteine auxotrophs. Here we show that cysteine auxotrophs have dysregulated biofilm components due to a change in the redox state of the periplasm. Additionally, we show the relationship between cysteine auxotrophs, biofilms, and antibiotics frequently used to treat UTIs.

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