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Updated: Aug 14, 2026

Biomimetic Materials to Characterize Bacteria-host Interactions
Published on: November 16, 2015
Two domains within the Mycoplasma hyopneumoniae cilium adhesin bind heparin
Cheryl Jenkins1, Jody L Wilton, F Chris Minion
1Microbiology and Immunology, Elizabeth Macarthur Agricultural Institute, PMB 8, Camden, New South Wales 2570, Australia.
Abstract:
Mycoplasma hyopneumoniae is the causative agent of porcine enzootic pneumonia, a chronic and economically significant respiratory disease that affects swine production worldwide. M. hyopneumoniae adheres to and adversely affects the function of ciliated epithelial cells of the respiratory tract, and the cilium adhesin (Mhp183, P97) is intricately but not exclusively involved in this process. Although binding of pathogenic bacteria to glycosaminoglycans is a recognized step in pathogenesis, knowledge of glycosaminoglycan-binding proteins in M. hyopneumoniae is lacking. However, heparin and other sulfated polysaccharides are known to block the binding of M. hyopneumoniae to purified swine respiratory cilia. In this study, four regions within the cilium adhesin were examined for the ability to bind heparin. Cilium adhesin fragments comprising 653 amino acids of the N terminus and 301 amino acids of the C terminus (containing two repeat regions, R1 and R2) were cloned and expressed. These fragments bound heparin in a dose-dependent and saturable manner with physiologically significant binding affinities of 0.27 +/- 0.02 microM and 1.89 +/- 0.33 microM, respectively. Heparin binding of both fragments was strongly inhibited by the sulfated polysaccharides fucoidan and mucin but not by chondroitin sulfate B. When the C-terminal repeat regions R1 and R2 were cloned separately and expressed, heparin-binding activity was lost, suggesting that both regions are required for heparin binding. The ability of the cilium adhesin to bind heparin indicates that this molecule plays a multifunctional role in the adherence of M. hyopneumoniae to host respiratory surfaces and therefore has important implications with respect to the pathogenesis of this organism.
Insights
Mycoplasma hyopneumoniae uses its cilium adhesin to bind heparin, a key step in causing swine respiratory disease. This binding requires specific regions of the adhesin, impacting pathogen adherence and disease development.
Area of Science:
- Veterinary Microbiology
- Molecular Pathogenesis
- Swine Health
Background:
- Mycoplasma hyopneumoniae causes economically significant porcine enzootic pneumonia.
- The cilium adhesin (P97) is involved in M. hyopneumoniae adherence to respiratory cells.
- Glycosaminoglycan-binding proteins in M. hyopneumoniae are not well understood.
Purpose of the Study:
- To investigate the heparin-binding ability of the M. hyopneumoniae cilium adhesin.
- To identify regions within the cilium adhesin responsible for heparin binding.
- To understand the role of heparin binding in M. hyopneumoniae pathogenesis.
Main Methods:
- Cloning and expression of N-terminal and C-terminal fragments of the cilium adhesin.
- Heparin-binding assays using expressed protein fragments.
- Inhibition studies with sulfated polysaccharides (fucoidan, mucin, chondroitin sulfate B).
- Analysis of heparin-binding activity of separate C-terminal repeat regions (R1 and R2).
Main Results:
- Expressed N-terminal (653 aa) and C-terminal (301 aa) fragments of the cilium adhesin bound heparin with significant affinities (0.27 µM and 1.89 µM).
- Heparin binding was inhibited by fucoidan and mucin, but not chondroitin sulfate B.
- Separate expression of C-terminal repeat regions R1 and R2 resulted in loss of heparin-binding activity.
Conclusions:
- The M. hyopneumoniae cilium adhesin possesses heparin-binding capabilities.
- Both N-terminal and C-terminal regions, particularly the repeat regions R1 and R2, are crucial for heparin binding.
- Heparin binding is a multifunctional aspect of M. hyopneumoniae adherence, influencing its pathogenesis in swine.
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