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.
Abstract:
Chlamydiae sp. are obligate intracellular pathogens that cause a variety of diseases in humans. The adhesion of Chlamydiae to the eukaryotic host cell is a pivotal step in pathogenesis. The adhesin family of polymorphic membrane proteins (Pmp) in Chlamydia pneumoniae consists of 21 members. Pmp21 binds to the epidermal growth factor receptor (EGFR). Pmps contain large numbers of FXXN (where X is any amino acid) and GGA(I/L/V) motifs. At least two of these motifs are crucial for adhesion by certain Pmp21 fragments. Here we describe how the two FXXN motifs in Pmp21-D (D-Wt), a domain of Pmp21, influence its self-interaction, folding, and adhesive capacities. Refolded D-Wt molecules form oligomers with high sedimentation values (8-85 S). These oligomers take the form of elongated protofibrils, which exhibit Thioflavin T fluorescence, like the amyloid protein fragment β42. A mutant version of Pmp21-D (D-Mt), with FXXN motifs replaced by SXXV, shows a markedly reduced capacity to form oligomers. Secondary-structure assays revealed that monomers of both variants exist predominantly as random coils, whereas the oligomers form predominantly β-sheets. Adhesion studies revealed that oligomers of D-Wt (D-Wt-O) mediate significantly enhanced binding to human epithelial cells relative to D-Mt-O and monomeric protein species. Moreover, D-Wt-O binds EGFR more efficiently than D-Wt monomers. Importantly, pretreatment of human cells with D-Wt-O reduces infectivity upon subsequent challenge with C. pneumoniae more effectively than all other protein species. Hence, the FXXN motif in D-Wt induces the formation of β-sheet-rich oligomeric protofibrils, which are important for adhesion to, and subsequent infection of human cells.
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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