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Updated: Jun 25, 2026

Enrichment of Bacterial Lipoproteins and Preparation of N-terminal Lipopeptides for Structural Determination by Mass Spectrometry
Published on: May 21, 2018
Serum Resistance of Mycoplasma agalactiae Strains and Mutants Bearing Different Lipoprotein Profiles
Katja Sommer1, Saskia Kowald1, Rohini Chopra-Dewasthaly1
1Department of Pathobiology, Institute of Microbiology, University of Veterinary Medicine Vienna, 1210 Vienna, Austria.
Abstract:
In order to spread systemically, resistance against complement and other factors present in serum is an important trait in pathogenic bacteria. The variable proteins of Mycoplasma agalactiae (Vpmas) have been shown to affect differential adhesion, invasion and immune evasion, and undergo high-frequency phase-variation in expression. However, nothing is known about their involvement in M. agalactiae's serum susceptibility. To evaluate this, the PG2 strain, the GM139 strain and the six Vpma phase-locked mutants (PLMs, PLMU to PLMZ) were tested for their ability to survive in the presence of non-sensitized and sensitized sheep serum, as well as guinea pig complement. Additionally, the reactivity of the sensitized sheep serum was analysed on the strains via western blotting. Overall data demonstrate PG2 strain to be more susceptible to sheep serum compared to the GM139 strain bearing a different Vpma profile. Significant differences were also observed between the different PLMs, with PLMU and PLMX showing the highest serum susceptibility in serum, while the other PLMs expressing longer Vpma proteins were more resistant. The results are in good correlation with previous studies where shorter lipoprotein variants contributed to a higher susceptibility to complement. Since none of the tested strains and PLMs were susceptible to non-sensitized sheep serum, antibodies seem to play an important role in serum killing.
Insights
Mycoplasma agalactiae
Area of Science:
- Bacteriology
- Immunology
- Microbial Pathogenesis
Background:
- Pathogenic bacteria require serum resistance for systemic spread.
- Variable proteins of Mycoplasma agalactiae (Vpmas) influence adhesion, invasion, and immune evasion.
- The role of Vpmas in M. agalactiae serum susceptibility is unknown.
Purpose of the Study:
- To investigate the involvement of Vpmas in the serum susceptibility of Mycoplasma agalactiae.
- To determine how different Vpma expression profiles affect bacterial survival in serum and complement.
Main Methods:
- Tested survival of M. agalactiae strains (PG2, GM139) and Vpma phase-locked mutants (PLMs) in non-sensitized and sensitized sheep serum and guinea pig complement.
- Analyzed sensitized sheep serum reactivity against strains using Western blotting.
Main Results:
- PG2 strain showed higher serum susceptibility than GM139.
- Vpma phase-locked mutants exhibited varying serum susceptibility; PLMU and PLMX were most susceptible.
- Shorter Vpma variants correlated with increased complement susceptibility.
- No strains were susceptible to non-sensitized sheep serum, indicating antibody importance.
Conclusions:
- Vpma expression significantly impacts Mycoplasma agalactiae serum susceptibility.
- Antibodies play a crucial role in the serum-mediated killing of M. agalactiae.
- Understanding Vpma function aids in developing strategies against M. agalactiae infections.

