Adhesion, invasion, and agglutination mediated by two trimeric autotransporters in the human uropathogen Proteus

Praveen Alamuri1, Martin Löwer, Jan A Hiss

  • 1Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, MI 48109-0620, USA.

Infection and Immunity
|September 1, 2010
PubMed

Insights

Proteus mirabilis uses trimeric autotransporters AipA and TaaP as afimbrial adhesins. These proteins mediate bacterial adhesion, invasion, and autoagglutination, enhancing virulence in urinary tract infections.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Structural Biology

Background:

  • Fimbriae are key virulence factors in Proteus mirabilis, mediating uroepithelial adhesion and invasion.
  • PMI2122 (AipA) and PMI2575 (TaaP) are identified as trimeric autotransporters with adhesin-like properties.

Purpose of the Study:

  • To characterize the structure and function of AipA and TaaP in Proteus mirabilis.
  • To investigate the role of these trimeric autotransporters in bacterial virulence, adhesion, and autoagglutination.

Main Methods:

  • Comparative protein modeling using Hia structure as a template.
  • Expression of recombinant AipA and TaaP in Escherichia coli.
  • Inactivation and complementation studies in P. mirabilis.
  • Murine model for virulence assessment.

Main Results:

  • AipA and TaaP form homotrimers, with homologous translocator domains to YadA and Hia.
  • E. coli expressing AipA or TaaP showed increased binding to extracellular matrix proteins.
  • aipA inactivation reduced P. mirabilis adhesion and invasion, which was restored upon complementation.
  • TaaP expression mediated autoagglutination, and taaP mutants showed reduced aggregation.

Conclusions:

  • AipA and TaaP are characterized as afimbrial surface adhesins and autoagglutinins in P. mirabilis.
  • These trimeric autotransporters contribute to P. mirabilis virulence by mediating adhesion, invasion, and autoagglutination.
  • Specific residues (Gly-247 in AipA, Gly-708 in TaaP) are crucial for trimerization and function.

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