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Vaccine potential of meningococcal FrpB: studies on surface exposure and functional attributes of common epitopes
D A Ala'Aldeen1, H A Davies, S P Borriello
1Department of Microbiology, Queens Medical Centre, University Hospital, Nottingham, UK.
Abstract:
Neisseria meningitidis expresses several novel outer membrane proteins (OMPs) in vivo and when grown under iron limitation in vitro. One of the most prominent is a 70 kDa iron-regulated protein (FrpB). FrpB was purified by elution from SDS-polyacrylamide gels and rabbit polyclonal antiserum (R-70) was raised against it. R-70 was bactericidal against homologous, but not heterologous, strains in the presence of human complement. The bactericidal activity was retained when R-70 was adsorbed with formaldehyde-fixed iron-replete cells (i.e. not expressing FrpB), but lost when absorbed with fixed iron-restricted cells (which express FrpB). A murine monoclonal anti-FrpB antibody (mAb M70) was raised against a common epitope which showed complete cross-reaction on Western blots of OMPs from other serogroups and serotypes of N. meningitidis and some commensal Neisseriae species. However, it failed to kill the organism. Immunogold electron microscopy on ultrathin sections, using the R-70 antiserum adsorbed with fixed iron-replete cells, showed labelling on 40% of the cells, whereas the R-70 adsorbed with fixed iron-restricted cells and mAb M70 failed to label. However, none of these sera labelled whole cells, suggesting lack of surface accessibility. It appears that the highly conserved cross-reactive epitopes of FrpB only become exposed in the process of generating the antigen, whereas the surface-exposed epitopes recognized in killing assays are immunologically variable among different strains.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
Neisseria meningitidis iron-regulated protein FrpB has variable surface-exposed epitopes. While conserved epitopes are present, they are not accessible on the cell surface, impacting antibody effectiveness against meningococcal strains.
Area of Science:
- Microbiology
- Immunology
- Protein Chemistry
Background:
- Neisseria meningitidis expresses outer membrane proteins (OMPs) in vivo and under iron limitation.
- FrpB is a prominent 70 kDa iron-regulated protein (IRP) of N. meningitidis.
Purpose of the Study:
- To characterize the iron-regulated protein FrpB from Neisseria meningitidis.
- To investigate the immunogenicity and surface accessibility of FrpB epitopes.
Main Methods:
- Purification of FrpB and generation of rabbit polyclonal antiserum (R-70) and murine monoclonal antibody (mAb M70).
- Bactericidal assays with complement.
- Western blotting and immunogold electron microscopy.
Main Results:
- R-70 showed complement-dependent bactericidal activity against homologous strains, which was abolished by adsorption with iron-restricted cells expressing FrpB.
- mAb M70 recognized a conserved epitope but did not kill the bacteria.
- Electron microscopy indicated FrpB is not surface-accessible on whole cells, with labelling observed only after cell fixation.
Conclusions:
- Surface-exposed epitopes of FrpB are immunologically variable and crucial for bactericidal activity.
- Conserved FrpB epitopes are likely masked or not surface-exposed, limiting their utility in vaccine development.
- FrpB's variable surface epitopes contribute to N. meningitidis immune evasion strategies.