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Updated: Feb 14, 2026

Super-resolution Imaging of Proteus mirabilis Biofilm by Expansion Microscopy
Published on: July 18, 2025
Pathogenesis of Proteus mirabilis Infection
Chelsie E Armbruster1,2, Harry L T Mobley1, Melanie M Pearson1
1Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, MI 48109.
Abstract:
Proteus mirabilis, a Gram-negative rod-shaped bacterium most noted for its swarming motility and urease activity, frequently causes catheter-associated urinary tract infections (CAUTIs) that are often polymicrobial. These infections may be accompanied by urolithiasis, the development of bladder or kidney stones due to alkalinization of urine from urease-catalyzed urea hydrolysis. Adherence of the bacterium to epithelial and catheter surfaces is mediated by 17 different fimbriae, most notably MR/P fimbriae. Repressors of motility are often encoded by these fimbrial operons. Motility is mediated by flagella encoded on a single contiguous 54-kb chromosomal sequence. On agar plates, P. mirabilis undergoes a morphological conversion to a filamentous swarmer cell expressing hundreds of flagella. When swarms from different strains meet, a line of demarcation, a "Dienes line," develops due to the killing action of each strain's type VI secretion system. During infection, histological damage is caused by cytotoxins including hemolysin and a variety of proteases, some autotransported. The pathogenesis of infection, including assessment of individual genes or global screens for virulence or fitness factors has been assessed in murine models of ascending urinary tract infections or CAUTIs using both single-species and polymicrobial models. Global gene expression studies performed in culture and in the murine model have revealed the unique metabolism of this bacterium. Vaccines, using MR/P fimbria and its adhesin, MrpH, have been shown to be efficacious in the murine model. A comprehensive review of factors associated with urinary tract infection is presented, encompassing both historical perspectives and current advances.
Insights
Proteus mirabilis causes urinary tract infections with swarming motility and urease. Vaccines targeting MR/P fimbria show promise in preventing these common catheter-associated infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Bacterial Pathogenesis
Background:
- Proteus mirabilis is a Gram-negative bacterium known for swarming motility and urease production.
- It frequently causes catheter-associated urinary tract infections (CAUTIs), often polymicrobial, leading to urolithiasis.
- Bacterial adherence is mediated by fimbriae, with MR/P fimbriae being notable.
Purpose of the Study:
- To comprehensively review the factors associated with urinary tract infections caused by P. mirabilis.
- To explore the pathogenesis, virulence factors, and unique metabolism of P. mirabilis.
- To assess the efficacy of potential vaccines against P. mirabilis infections.
Main Methods:
- Review of historical perspectives and current advances in P. mirabilis research.
- Assessment of virulence and fitness factors using murine models of ascending UTIs and CAUTIs.
- Global gene expression studies in culture and in vivo.
Main Results:
- P. mirabilis utilizes urease for urine alkalinization and stone formation.
- Swarming motility involves flagella, and Dienes lines form between strains due to type VI secretion systems.
- Cytotoxins like hemolysin and proteases contribute to histological damage.
Conclusions:
- P. mirabilis possesses diverse virulence mechanisms contributing to CAUTIs and urolithiasis.
- Understanding its unique metabolism and pathogenesis is crucial for developing effective treatments.
- Vaccines targeting MR/P fimbria and its adhesin MrpH demonstrate efficacy in preclinical models.
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