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Biomimetic Materials to Characterize Bacteria-host Interactions
Published on: November 16, 2015
Proteolytic processing of the Mycoplasma hyopneumoniae cilium adhesin
Steven P Djordjevic1, Stuart J Cordwell, Michael A Djordjevic
1New South Wales Agriculture, Elizabeth Macarthur Agricultural Institute, Camden, New South Wales 2570, Australian.
Abstract:
Mycoplasma hyopneumoniae is an economically significant swine pathogen that colonizes the respiratory ciliated epithelial cells. Cilium adherence is mediated by P97, a surface protein containing a repeating element (R1) that is responsible for binding. Here, we show that the cilium adhesin is proteolytically processed on the surface. Proteomic analysis of strain J proteins identified cleavage products of 22, 28, 66, and 94 kDa. N-terminal sequencing showed that the 66- and 94-kDa proteins possessed identical N termini and that the 66-kDa variant was generated by cleavage of the 28-kDa product from the C terminus. The 22-kDa product represented the N-terminal 195 amino acids of the cilium adhesin preprotein, confirming that the hydrophobic leader signal sequence is not cleaved during translocation across the membrane. Comparative studies of M. hyopneumoniae strain 232 showed that the major cleavage products of the cilium adhesin are similar, although P22 and P28 appear to be processed further in strain 232. Immunoblotting studies using antisera raised against peptide sequences within P22 and P66/P94 indicate that processing is complex, with cleavage occurring at different frequencies within multiple sites, and is strain specific. Immunogold electron microscopy showed that fragments containing the cilium-binding site remained associated with the cell surface whereas cleavage products not containing the R1 element were located elsewhere. Not all secreted proteins undergo multiple cleavage, however, as evidenced by the analysis of the P102 gene product. The ability of M. hyopneumoniae to selectively cleave its secreted proteins provides this pathogen with a remarkable capacity to alter its surface architecture.
Insights
Mycoplasma hyopneumoniae modifies its surface proteins through cleavage, affecting how it attaches to swine respiratory cells. This processing is strain-specific and impacts pathogen-host interactions.
Area of Science:
- Microbiology
- Molecular Biology
- Veterinary Science
Background:
- Mycoplasma hyopneumoniae is a major swine pathogen.
- It colonizes respiratory ciliated epithelial cells.
- Cilium adherence is mediated by the P97 surface protein with its R1 repeating element.
Purpose of the Study:
- To investigate the proteolytic processing of the P97 cilium adhesin.
- To understand how this processing affects M. hyopneumoniae surface architecture and host cell interaction.
Main Methods:
- Proteomic analysis of M. hyopneumoniae strain J and 232.
- N-terminal sequencing of protein fragments.
- Immunoblotting with specific antisera.
- Immunogold electron microscopy.
Main Results:
- Proteolytic cleavage of P97 produces fragments of 22, 28, 66, and 94 kDa.
- Processing is strain-specific, with strain 232 showing further processing of P22 and P28.
- Fragments containing the R1 binding site remain on the cell surface.
- Not all secreted proteins undergo extensive cleavage.
Conclusions:
- M. hyopneumoniae selectively cleaves its secreted proteins, including P97.
- This processing allows the pathogen to modify its surface architecture.
- Strain-specific processing suggests adaptation and variation in virulence mechanisms.
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