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Molecular characterisation of the Mycoplasma cynos haemagglutinin HapA
Saša Kastelic1, Ivanka Cizelj1, Mojca Narat1
1Department of Animal Science, Biotechnical Faculty, University of Ljubljana, Groblje 3, 1230 Domžale, Slovenia.
Abstract:
Mycoplasma (M.) cynos is a proven pathogen of dogs causing respiratory infections including pneumonia. We examined 19 M. cynos strains isolated from different organs of dogs in Austria, Denmark and Israel. All strains agglutinated mammalian and chicken erythrocytes. Using erythrocytes of chickens or dogs as specific ligands we isolated an approximately 65 kDa protein from cell-free supernatants of 3 M. cynos strains, which showed an apparent capacity for haemagglutination. The N-terminal sequence of a 25 kDa fragment of this protein was identified as NNEMTPKVTVEAKSMELLLSVEK. The identical amino acid sequence is encoded by the gene MCYN_0308 in the genome of M. cynos C142. This gene belongs to a family of some 20 genes which encode putative lipoproteins with proline-rich regions (PRR) in the first third of their molecules. We termed the 65 kDa haemagglutinin HapA and sequenced hapA gene homologues of 16 M. cynos strains. Analyses of hapA gene homologues revealed similar but not identical sequences, some having insertions and/or deletions in the PRR. We produced a recombinant HapA protein (rHapA) and also mouse monoclonal antibodies (mAbs) recognizing HapA. However, enzyme immunoassays using native M. cynos colonies and mAbs 5G2 or 3B7 showed variable expression of HapA in all M. cynos strains. This was further confirmed by Western blot analyses which showed different HapA quantities and also size-variation of HapA among strains. Analyses of cDNA of the expressed hapA genes showed that besides the hapA gene cultures of M. cynos (strains 105, 2002, 2297) can also express other forms of hap genes. In addition, in cloned cultures of strain 2297 altered HapA epitopes for mAbs 5G2 and 3B7 with distinct hapA gene mutations that resulted in altered HapA amino acid sequence were found. Most of the dogs examined had serum antibodies to rHapA. In conclusion, we characterized the M. cynos haemagglutinin HapA protein and encoding gene hapA, a factor involved in cytadherence to host cells and therefore important for M. cynos infection, and showed that expression of HapA is varied in M. cynos by two distinct mechanisms; differential gene expression and nucleic acid substitution within hapA homologues.
Insights
Mycoplasma cynos, a canine respiratory pathogen, utilizes a protein called HapA for host cell attachment. Its expression varies due to gene regulation and mutations, impacting canine infections.
Area of Science:
- Veterinary Microbiology
- Molecular Pathogenesis
- Canine Infectious Diseases
Background:
- Mycoplasma cynos is a significant canine respiratory pathogen.
- Understanding its virulence factors is crucial for disease control.
Purpose of the Study:
- To characterize the Mycoplasma cynos haemagglutinin (HapA) protein and its encoding gene.
- To investigate the mechanisms regulating HapA expression in M. cynos strains.
Main Methods:
- Isolation and characterization of M. cynos strains from dogs.
- Protein purification, N-terminal sequencing, and gene homologue analysis.
- Production of recombinant HapA (rHapA) and monoclonal antibodies (mAbs).
- Enzyme immunoassays, Western blot, and cDNA analysis to assess HapA expression.
Main Results:
- A 65 kDa haemagglutinin, HapA, was identified and its gene (hapA) characterized.
- HapA expression varied significantly among M. cynos strains in quantity and epitope accessibility.
- Mechanisms including differential gene expression and nucleic acid substitutions within hapA homologues were identified.
- Canine serum antibodies against rHapA were detected in most examined dogs.
Conclusions:
- HapA is a key cytadherence factor and virulence determinant in Mycoplasma cynos infections.
- Variable HapA expression, influenced by genetic mechanisms, likely plays a role in M. cynos pathogenesis.
- HapA represents a potential target for diagnostic and therapeutic strategies against canine mycoplasmosis.
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