The Chlamydia pneumoniae Adhesin Pmp21 Forms Oligomers with Adhesive Properties

Sören E T Luczak1, Sander H J Smits2, Christina Decker3

  • 1From the Institute of Functional Microbial Genomics.

Insights

The FXXN motif in Chlamydia pneumoniae Pmp21 is crucial for forming beta-sheet rich oligomers. These oligomers enhance bacterial adhesion to human cells and reduce infection by promoting binding to EGFR.

Area of Science:

  • Microbiology
  • Cell Biology
  • Protein Biochemistry

Background:

  • Chlamydiae are obligate intracellular pathogens causing human diseases.
  • Host cell adhesion is critical for Chlamydia pathogenesis.
  • Polymorphic membrane proteins (Pmp) are key adhesins in Chlamydia pneumoniae.

Purpose of the Study:

  • To investigate the role of FXXN motifs in Pmp21-D (D-Wt) on its self-interaction, folding, and adhesion.
  • To understand how these motifs influence oligomer formation and function.

Main Methods:

  • Site-directed mutagenesis to create FXXN-deficient Pmp21-D (D-Mt).
  • Sedimentation analysis to study oligomer formation.
  • Thioflavin T fluorescence assay to detect amyloid-like structures.
  • Circular dichroism spectroscopy for secondary structure analysis.
  • Cell adhesion assays and infection inhibition studies.

Main Results:

  • Refolded D-Wt formed beta-sheet rich oligomeric protofibrils, exhibiting Thioflavin T fluorescence.
  • A D-Mt mutant with FXXN motifs replaced showed reduced oligomerization.
  • D-Wt oligomers (D-Wt-O) demonstrated enhanced binding to human epithelial cells and EGFR compared to monomers or D-Mt oligomers.
  • D-Wt-O pretreatment significantly reduced subsequent C. pneumoniae infection.

Conclusions:

  • The FXXN motif in Pmp21-D is essential for inducing beta-sheet rich oligomeric protofibril formation.
  • These oligomers are critical for Chlamydia pneumoniae adhesion to host cells via EGFR.
  • Oligomerization of Pmp21 is a key mechanism for enhancing bacterial infectivity.

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