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GapA and CrmA coexpression is essential for Mycoplasma gallisepticum cytadherence and virulence
L Papazisi1, S Frasca, M Gladd
1Center of Excellence for Vaccine Research, The University of Connecticut, Storrs 06269, USA.
Abstract:
It was previously demonstrated that avirulent Mycoplasma gallisepticum strain R(high) (passage 164) is lacking three proteins that are expressed in its virulent progenitor, strain R(low) (passage 15). These proteins were identified as the cytadhesin molecule GapA, the putative cytadhesin-related molecule CrmA, and a component of a high-affinity transporter system, HatA. Complementation of R(high) with wild-type gapA restored expression in the transformant (GT5) but did not restore the cytadherence phenotype and maintained avirulence in chickens. These results suggested that CrmA might play an essential role in the M. gallisepticum cytadherence process. CrmA is encoded by the second gene in the gapA operon and shares significant sequence homology to the ORF6 gene of Mycoplasma pneumoniae, which has been shown to play an accessory role in the cytadherence process. Complementation of R(high) with wild-type crmA resulted in the transformant (SDCA) that lacked the cytadherence and virulence phenotype comparable to that found in R(high) and GT5. In contrast, complementation of R(high) with the entire wild-type gapA operon resulted in the transformant (GCA1) that restored cytadherence to the level found in wild-type R(low). In vivo pathogenesis trials revealed that GCA1 had regained virulence, causing airsacculitis in chickens. These results demonstrate that both GapA and CrmA are required for M. gallisepticum cytadherence and pathogenesis.
Insights
Mycoplasma gallisepticum requires both GapA and CrmA proteins for cytadherence and virulence. Restoring these proteins in avirulent strains re-establishes pathogenicity and disease in chickens.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Molecular Biology
Background:
- Avirulent Mycoplasma gallisepticum strain R(high) lacks three proteins found in its virulent progenitor, strain R(low).
- These proteins include the cytadhesin GapA, the related molecule CrmA, and HatA.
- Previous studies showed GapA complementation did not restore cytadherence or virulence.
Purpose of the Study:
- To investigate the roles of GapA and CrmA in Mycoplasma gallisepticum cytadherence and pathogenesis.
- To determine if CrmA is essential for cytadherence, as suggested by previous findings.
Main Methods:
- Complementation of avirulent R(high) strain with wild-type gapA, crmA, or the entire gapA operon.
- Phenotypic analysis of transformants for cytadherence.
- In vivo pathogenesis trials in chickens to assess virulence.
Main Results:
- Complementation with gapA alone (GT5) did not restore cytadherence or virulence.
- Complementation with crmA alone (SDCA) did not restore cytadherence or virulence.
- Complementation with the entire gapA operon (GCA1) restored both cytadherence and virulence, causing airsacculitis in chickens.
Conclusions:
- Both GapA and CrmA are essential for Mycoplasma gallisepticum cytadherence.
- The combined presence of GapA and CrmA is necessary for M. gallisepticum pathogenesis and virulence in chickens.