| Literature DB >> 19529772 |
Tom A Mendum1, Jane Newcombe, Celia L McNeilly, Johnjoe McFadden.
Abstract
Despite the introduction of conjugated polysaccharide vaccines for many of the Neisseria meningitidis serogroups, neisserial infections continue to cause septicaemia and meningitis across the world. This is in part due to the difficulties in developing a, cross-protective vaccine that is effective against all serogroups, including serogroup B meningococci. Although convalescent N. meningitidis patients develop a natural long-lasting cross-protective immunity, the antigens that mediate this response remain unknown. To help define the target of this protective immunity we identified the proteins recognized by IgG in sera from meningococcal patients by a combination of 2D protein gels, western blots and mass spectrometry. Although a number of outer membrane antigens were identified the majority of the antigens were cytoplasmic, with roles in cellular processes and metabolism. When recombinant proteins were expressed and used to raise sera in mice, none of the antigens elicited a positive SBA result, however flow cytometry did demonstrate that some, including the ribosomal protein, RplY were localised to the neisserial cell surface.Entities:
Mesh:
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Year: 2009 PMID: 19529772 PMCID: PMC2691954 DOI: 10.1371/journal.pone.0005940
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Details of patient sera.
| Patient | Strain | Patient History |
| 1 | C:NT:P1.5,2 | Severe septicaemia |
| 2 | nda | Mild septicaemia |
| 3 | B | Not known |
| 4 | nda | Severe septicaemia |
| 5 | B | Severe septicaemia |
| 6 | B | Mild septicaemia |
| 7 | B:4:P1.4 | Not known |
| 8 | B:4:NT | Not known |
| 9 | B:4:NT | Not known |
| 10 | B:NT:P1.9 | Not known |
| 11 | B:4:P1.4 | Not known |
| 12 | B:4:P1.4 | Not known |
| 13 | B:15:P1.7,16 | Not known |
| 14 | B:4:P1.4 | Not known |
| 15 | B:4:P1.4 | Not known |
| 16 | B:4:P1.4 | Not known |
| 17 | C | Not known |
| 18 | C | Not known |
| 19 | C | Not known |
| 20 | W135 | Not known |
| 21 | Y | Not known |
Figure 12D gels of total N. meningitidis proteins.
Total N. meningitidis proteins separated by 2D gel electrophoresis using (a) a non-linear pI 4–7 1st dimension and (b) a non-linear pI 6–9 1st dimension. Gels were silver stained and replica gels western blotted with patient sera. Spots that were recognised by one or more sera on western blots are circled. Spots whose identity was determined are numbered in black, those that remain unidentified in grey.
Figure 2An example western blot of a 2D gel of total protein.
Total N. meningitidis proteins separated by 2D gel electrophoresis using a non-linear pI 4–7 1st dimension, western blotted, and probed with convalescent sera from patient 3. Spots that were assigned protein identities are indicated. Spots with no protein legend have not been identified. Longer exposures of this blot revealed more spots (Table 2).
Identities of 2D gel spots that bind IgG from acute (Ac) and convalescent (Con) sera.
| Patient | 1 | 1 | 2 | 2 | 3 | 3 | 4 | 4 | 5 | 6 | 7–11 | 12–16 | 17–22 | |||
| Ac | Con | Ac | Con | Ac | Con | Ac | Con | Con | Con | Con | Con | Con | ||||
| SBA titers (L91543) | 2 | >512 | nt | >512 | nt | 128 | nt | 32 | >512 | >512 | 32 | >512 | >512 | |||
| Spot | Protein | Name | NMB | |||||||||||||
| 9 | RplL | 50S ribosomal protein L7/12 | 0131 | Y | Y | Y | Y | Y | Y | Y | Y | |||||
| 10 | Hypo | Hypothetical | 2015 | Y | Y | |||||||||||
| 21 | RplD | 50S ribosomal protein L4 | 0143 | Y | Y | Y | Y | |||||||||
| 26 | n/a | Opa900 | n/a | Y | Y | |||||||||||
| 27 | RmpM | OMP class 4 | 0382 | Y | Y | |||||||||||
| 31 | TufA | Elongation factor Tu | 0139 | Y | Y | |||||||||||
| 42 | FusA | Elongation factor G | 0138 | Y | Y | Y | Y | Y | Y | Y | ||||||
| 46 | DnaK | DnaK protein (hsp) | 0554 | Y | Y | |||||||||||
| 47 | LpdA | OMP p64k | 1344 | Y | Y | Y | ||||||||||
| 48 | LpdA | OMP p64k | 1344 | Y | Y | Y | ||||||||||
| 49 | LpdA | OMP p64k | 1344 | Y | Y | Y | Y | |||||||||
| 61 | RpsA | 30S ribosomal protein S1 | 1301 | Y | ||||||||||||
| 64 | GroEL | Hsp60 | 1972 | Y | Y | Y | ||||||||||
| 65 | GroEL | Hsp60 | 1972 | Y | Y | Y | Y | Y | Y | Y | ||||||
| 66 | GroEL | Hsp60 | 1972 | Y | Y | Y | ||||||||||
| 69 | Pta | Phosphate acetyltransferase | 0631 | Y | Y | |||||||||||
| 70 | Pta | Phosphate acetyltransferase | 0631 | Y | Y | |||||||||||
| 75 | AtpD | ATP synthase F1 beta chain | 1934 | Y | Y | |||||||||||
| 78 | FumB | Fumarate hydratase | 1613 | Y | Y | Y | ||||||||||
| 91 | SfcA | Malate oxidoreductase | 0671 | Y | ||||||||||||
| 92 | SfcA | Malate oxidoreductase | 0671 | Y | ||||||||||||
| 93 | HisD | Histidinol dehydrogenase | 1581 | Y | Y | Y | Y | Y | ||||||||
| 99 | TufA | Elongation factor Tu | 0139 | Y | Y | |||||||||||
| 103 | FtsZ | Cell division protein | 0427 | Y | ||||||||||||
| 105 | SucC | Succinyl coA synthase | 0959 | Y | ||||||||||||
| 106 | SucC | Succinyl coA synthase | 0959 | Y | ||||||||||||
| 116 | Tsf | Elongation Factor Ts | 2002 | Y | ||||||||||||
| 122 | Adk | Adenylate kinase | 0823 | Y | ||||||||||||
| 201 | AcnB | Aconitate hydratase 2 | 1572 | Y | ||||||||||||
| 202 | AcnB | Aconitate hydratase 2 | 1572 | Y | Y | |||||||||||
| 203 | AcnB | Aconitate hydratase 2 | 1572 | Y | Y | |||||||||||
| 204 | AcnB | Aconitate hydratase 2 | 1572 | Y | ||||||||||||
| 204 | AcnB | Aconitate hydratase 2 | 1572 | Y | ||||||||||||
| 205 | AcnB | Aconitate hydratase 2 | 1572 | Y | ||||||||||||
| 248 | PilT-2 | Pilin retraction protein | 0768 | Y | ||||||||||||
| 252 | CysK | Cysteine synthase | 0763 | Y | ||||||||||||
| 253 | RmpM | OMP class 4 | 0382 | Y | ||||||||||||
| 255 | GcvT | Glycine cleavage system T protein | 0574 | Y | ||||||||||||
| 260 | AdhP | Alcohol dehyrogenase | 0546 | Y | ||||||||||||
| 265 | AdhP | Alcohol dehyrogenase | 0546 | Y | Y | |||||||||||
| 266 | AdhP | Alcohol dehyrogenase | 0546 | Y | Y | |||||||||||
| 273 | RmpM | OMP class 4 | 0382 | Y | Y | |||||||||||
| 275 | RmpM | OMP class 4 | 0382 | Y | Y | |||||||||||
| 288 | FabI | Enoyl-reductase | 0336 | Y | Y | |||||||||||
| 314 | RplY | Ribosomal protein L25 | 0876 | Y | Y | |||||||||||
| 316 | EtfB | Flavoprotein, beta subunit | 2155 | Y | Y | Y | ||||||||||
| 318 | PilT-1 | Pilin retraction protein | 0052 | Y | Y | Y | ||||||||||
| 320 | RfaC | Heptosyltransferase I | 2156 | Y | Y | |||||||||||
| 320 | NagZ | Glycosyl hydrolase | 0530 | Y | ||||||||||||
| 326 | PorA | OMP PorA | 1429 | Y | Y | |||||||||||
| 329 | GuaB | IMP dehydrogenase | 1201 | Y | ||||||||||||
| 330 | GuaB | IMP dehydrogenase | 1201 | Y | ||||||||||||
| 336 | PorA | OMP PorA | 1429 | Y | ||||||||||||
| 377 | PorA | OMP PorA | 1429 | Y | ||||||||||||
| Unidentified proteins as referred to in | 12 | 50 | 79 | 22 | 22 | 229 | 79 | 43 | ||||||||
| 35 | 79 | 50 | 23 | 341 | 84 | 44 | ||||||||||
| 74 | 51 | 35 | 473 | 50 | ||||||||||||
| 56 | 50 | 63 | ||||||||||||||
| 57 | 51 | 67 | ||||||||||||||
| 58 | 56 | 79 | ||||||||||||||
| 61 | 57 | 110 | ||||||||||||||
| 177 | 58 | 118 | ||||||||||||||
| 79 | 119 | |||||||||||||||
| 177 | 229 | |||||||||||||||
| 181 | 272 | |||||||||||||||
| 283 | 343 | |||||||||||||||
| 362 | ||||||||||||||||
| 376 | ||||||||||||||||
nt – No titer. Some of the SBA assays of acute sera showed high levels of complement independent killing. This is possibly associated with the administration of antibiotics to the patients.
– Antigens that were also identified from western blots of OMV preparations.
Proteins that bound IgG from one or more of the patients sera.
| NMB | Name | Protein | Confirmed | Literature |
| 0052 | Pilin retraction protein | PilT-1 | nd | |
| 0131 | 50S ribosomal protein L7/L12 | RplL | Y | Evidence for a surface role in |
| Immunoreactive in | ||||
| Protective against | ||||
| Neisserial L7/12 shown to be immunogenic but with limited immunogenicity for T cells | ||||
| Identified on the surface of | ||||
| 0138 | Elongation factor G | FusA | Y |
|
| Proposed as a diagnostic antigen in | ||||
| Identified on the surface of | ||||
| 0139 | Elongation factor Tu | TufA | Y | Fibronectin binding in |
| Cell wall associated in | ||||
| Surface associated and associated with cell adhesion in | ||||
| Bovine IgG binds Ef-Tu on surface of | ||||
| Surface located virulence factor on | ||||
| Immunoreactive in | ||||
| 0143 | 50S ribosomal protein L4 | RplD | N | |
| 0336 | Enoyl reductase | FabI | Y | |
| 0382 | OMP class 4 | RmpM | Y | Well documented surface protein |
| 0427 | FtsZ | FtsZ | Y | Immunogen in convalescent |
| A structural homolog is antigenic in | ||||
| 0530 | Beta-hexosaminidase | NagZ | nd | |
| 0546 | Alcohol dehyrogenase | AdhP | nd | Immuno-reactive in patients with systemic candidiasis |
| 0554 | DnaK protein (hsp) | DnaK | nd | Immunoreactive and partially protective in mouse model for |
| Localized to the surface in | ||||
| Immunoreactive in | ||||
| 0574 | Glycine cleavage system T protein | GcvT | Y | |
| 0631 | Phosphate acetyltransferase | Pta | N | |
| 0671 | Malate oxidoreductase | SfcA | Y | Found in the immunoproteome of |
| Putative serodiagnostic with | ||||
| 0763 | Cysteine synthase | CysK | Y | Found in the immunoproteome of |
| 0768 | Pilin retraction protein | PilT-2 | Y | |
| 0823 | Adenylate kinase | Adk | Y | Identified on the surface of |
| 0876 | Ribosomal protein L25 | RplY | Y | Antigens found in patients with borreliosis |
| 0959 | Succinyl coA synthase | SucC | Y | |
| 1201 | IMP dehydrogenase | GuaB | Y | Immunoreactive and protective in mice infected with |
| 1301 | 30S ribosomal protein S1 | RpsA | Y | Immunoreactive in |
| 1344 | OMP p64k, PDH, E3 component | LpdA2 | Y | Outer membrane location in |
| Recognised by sera from convalescent neisserial patients | ||||
| 1429 | OMP PorA | PorA | nd | Well documented OMP |
| 1572 | Aconitate hydratase 2 | AcnB | Y | Immuno-reactive in patients with systemic candidiasis |
| 1581 | Histidinol dehydrogenase | HisD | Y | |
| 1613 | Fumarate hydrytase | FumB | nd | Found in the immunoproteome of |
| 1934 | ATP synthase F1 beta chain | AtpD | Y | |
| 1972 | Hsp60 | GroEL | Y | Conserved proteins that are immunogenic in many bacterial pathogens |
| 2002 | Elongation Factor Ts | Tsf | nd | Identified on the surface of |
| 2015 | Hypothetical | - | N | |
| 2155 | e transfer flavoprotein, beta subunit | EtfB | nd | |
| 2156 | Heptosyltransferase I | RfaC | nd | |
| n/a | Opa900(FAM18), not in MC58 | n/a | nd | Well documented OMP |
Recombinant proteins that were confirmed as binding their identifying sera are indicated (Y), those that failed to bind their identifying sera are indicated (N) and those that were not determined, either because no recombinant protein was generated or because no more sera was available are indicated (nd).
Figure 3Flow cytometry of live N. meningitidis stained with mouse sera immunised with recombinant proteins.
Flow cytometry data for live N. meningitidis cells stained with sera from mice immunised with PBS alone (black) or with recombinant proteins (grey), fHBP has been used as a positive control (Fig 3a). Values are means of fluorescence with standard deviations derived from triplicate experiments.