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Molecular Pathogenesis

Zinc Uptake Contributes to Motility and Provides a Competitive Advantage to Proteus mirabilis during Experimental Urinary Tract Infection

Greta R. Nielubowicz, Sara N. Smith, Harry L. T. Mobley
Greta R. Nielubowicz
Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, Michigan 48109
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Sara N. Smith
Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, Michigan 48109
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Harry L. T. Mobley
Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, Michigan 48109
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  • For correspondence: hmobley@umich.edu
DOI: 10.1128/IAI.01220-09
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ABSTRACT

Proteus mirabilis, a Gram-negative bacterium, represents a common cause of complicated urinary tract infections in catheterized patients or those with functional or anatomical abnormalities of the urinary tract. ZnuB, the membrane component of the high-affinity zinc (Zn2+) transport system ZnuACB, was previously shown to be recognized by sera from infected mice. Since this system has been shown to contribute to virulence in other pathogens, its role in Proteus mirabilis was investigated by constructing a strain with an insertionally interrupted copy of znuC. The znuC::Kan mutant was more sensitive to zinc limitation than the wild type, was outcompeted by the wild type in minimal medium, displayed reduced swimming and swarming motility, and produced less flaA transcript and flagellin protein. The production of flagellin and swarming motility were restored by complementation with znuCB in trans. Swarming motility was also restored by the addition of Zn2+ to the agar prior to inoculation; the addition of Fe2+ to the agar also partially restored the swarming motility of the znuC::Kan strain, but the addition of Co2+, Cu2+, or Ni2+ did not. ZnuC contributes to but is not required for virulence in the urinary tract; the znuC::Kan strain was outcompeted by the wild type during a cochallenge experiment but was able to colonize mice to levels similar to the wild-type level during independent challenge. Since we demonstrated a role for ZnuC in zinc transport, we hypothesize that there is limited zinc present in the urinary tract and P. mirabilis must scavenge this ion to colonize and persist in the host.

  • Copyright © 2010 American Society for Microbiology
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Zinc Uptake Contributes to Motility and Provides a Competitive Advantage to Proteus mirabilis during Experimental Urinary Tract Infection
Greta R. Nielubowicz, Sara N. Smith, Harry L. T. Mobley
Infection and Immunity May 2010, 78 (6) 2823-2833; DOI: 10.1128/IAI.01220-09

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Zinc Uptake Contributes to Motility and Provides a Competitive Advantage to Proteus mirabilis during Experimental Urinary Tract Infection
Greta R. Nielubowicz, Sara N. Smith, Harry L. T. Mobley
Infection and Immunity May 2010, 78 (6) 2823-2833; DOI: 10.1128/IAI.01220-09
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KEYWORDS

Locomotion
Proteus Infections
Proteus mirabilis
Urinary Tract Infections
zinc

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