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Vaccine potential of the Neisseria meningitidis 2086 lipoprotein
Leah D Fletcher1, Liesel Bernfield, Vicki Barniak
1Wyeth Vaccines Research, Pearl River, New York 10965, USA.
Abstract:
A novel antigen that induces cross-reactive bactericidal antibodies against a number of Neisseria meningitidis strains is described. This antigen, a approximately 28-kDa lipoprotein called LP2086, was first observed within a complex mixture of soluble outer membrane proteins (sOMPs) following a series of fractionation, protein purification, and proteomics steps. Approximately 95 different neisserial isolates tested positive by Western blotting and PCR screening methods for the presence of the protein and the gene encoding LP2086. The strains tested included isolates of N. meningitidis serogroups A, B, C, W135, and Y, Neisseria gonorrhoeae, and Neisseria lactamica. To better understand the microheterogeneity of this protein, the 2086 genes from 63 neisserial isolates were sequenced. Two different subfamilies of LP2086 were identified based on deduced amino acid sequence homology. A high degree of amino acid sequence similarity exists within each 2086 subfamily. The highest degree of genetic diversity was seen between the two subfamilies which share approximately 60 to 75% homology at the nucleic acid level. Flow cytometry (fluorescence-activated cell sorting) analyses and electron microscopy indicated that the LP2086 is localized on the outer surface of N. meningitidis. Antiserum produced against a single protein variant was capable of eliciting bactericidal activity against strains expressing different serosubtype antigens. Combining one recombinant lipidated 2086 (rLP2086) variant from each subfamily with two rPorA variants elicited bactericidal activity against all strains tested. The rLP2086 family of antigens are candidates worthy of further vaccine development.
Insights
A novel antigen, LP2086, induces bactericidal antibodies against Neisseria meningitidis. This lipoprotein, found on the bacterial surface, shows potential for developing new vaccines against meningococcal disease.
Area of Science:
- Microbiology
- Immunology
- Vaccine Development
Background:
- Neisseria meningitidis causes severe infections.
- Developing broad-spectrum vaccines remains a challenge.
- A novel antigen, LP2086, was identified.
Purpose of the Study:
- To characterize the novel antigen LP2086.
- To assess its potential as a vaccine candidate.
- To evaluate its cross-reactivity against Neisseria strains.
Main Methods:
- Protein purification and proteomics.
- Western blotting and PCR screening.
- Gene sequencing and amino acid homology analysis.
- Flow cytometry and electron microscopy.
- Antiserum production and bactericidal assays.
Main Results:
- LP2086 is a ~28-kDa lipoprotein on the Neisseria outer surface.
- Two LP2086 subfamilies were identified with distinct homology.
- Antiserum against one variant showed cross-reactive bactericidal activity.
- A combination vaccine including LP2086 variants showed broad efficacy.
Conclusions:
- LP2086 is a promising antigen for broad-spectrum Neisseria vaccines.
- Further development of LP2086-based vaccines is warranted.
- The identified subfamilies may inform vaccine design.
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