Frequency of factor H-binding protein modular groups and susceptibility to cross-reactive bactericidal activity in invasive meningococcal isolates

被引:71
作者
Pajon, Rolando [1 ]
Beernink, Peter T. [1 ]
Harrison, Lee H. [2 ]
Granoff, Dan M. [1 ]
机构
[1] Childrens Hosp Oakland Res Inst, Ctr Immunobiol & Vaccine Dev, Oakland, CA 94609 USA
[2] Univ Pittsburgh, Infect Dis Epidemiol Res Unit, Pittsburgh, PA USA
关键词
Neisseria meningitidis; Vaccine; Recombinant protein; Bactericidal activity; fHbp expression; Bioinformatic; MULTIPLE SEQUENCE ALIGNMENT; NEISSERIA-MENINGITIDIS; MONOCLONAL-ANTIBODIES; VACCINE CANDIDATES; PROTEOMIC ANALYSIS; B MENINGOCOCCUS; GENOME; VARIANTS; MUSCLE;
D O I
10.1016/j.vaccine.2009.12.027
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Meningococcal factor H-binding protein (fHbp) is a promising vaccine candidate that elicits serum bactericidal antibodies in humans. Based on sequence variability of the entire protein, fHbp has been divided into three variant groups or two sub-families. We recently reported that the fHbp architecture was modular, consisting of five variable segments, each encoded by genes from one of two lineages. Based on combinations of segments from different lineages, all 70 known fHbp sequence variants could be classified into one of six modular groups. In this study, we analyzed sequences of 172 new fHbp variants that were available from public databases. All but three variants could be classified into one of the six previously described modular groups. Among systematically collected invasive group B isolates from the U.S. and Europe, modular group I overall was most common (60%) but group IV (natural chimeras) accounted for 23% of UK isolates and <1% of U.S. isolates (P<0.0001). Mouse antisera to recombinant fHbp from each of the modular groups showed modular group-specific bactericidal activity against strains with low fHbp expression but had broader activity against strains with higher fHbp expression. Thus both modular group and relative expression of fHbp affected strain susceptibility to anti-fHbp bactericidal activity. The results confirmed the modular architecture of fHbp and underscored its importance for the design of broadly protective group B vaccines in different regions. (C) 2009 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2122 / 2129
页数:8
相关论文
共 33 条
[1]   Meningococcal Factor H-Binding Protein Variants Expressed by Epidemic Capsular Group A, W-135, and X Strains from Africa [J].
Beernink, P. T. ;
Caugant, D. A. ;
Welsch, J. A. ;
Koeberling, O. ;
Granoff, D. M. .
JOURNAL OF INFECTIOUS DISEASES, 2009, 199 (09) :1360-1368
[2]   Fine antigenic specificity and cooperative bactericidal activity of monoclonal antibodies directed at the meningococcal vaccine candidate factor H-binding protein [J].
Beernink, Peter T. ;
Welsch, Jo Anne ;
Bar-Lev, Michal ;
Koeberling, Oliver ;
Comanducci, Maurizio ;
Granoff, Dan M. .
INFECTION AND IMMUNITY, 2008, 76 (09) :4232-4240
[3]   Bactericidal antibody responses induced by meningococcal recombinant chimeric factor H-binding protein vaccines [J].
Beernink, Peter T. ;
Granoff, Dan M. .
INFECTION AND IMMUNITY, 2008, 76 (06) :2568-2575
[4]   Prevalence of factor H-binding protein variants and NadA among meningococcal group B isolates from the United States: Implications for the development of a multicomponent group B vaccine [J].
Beernink, Peter T. ;
Welsch, Jo Anne ;
Harrison, Lee H. ;
Leipus, Arunas ;
Kaplan, Sheldon L. ;
Granoff, Dan M. .
JOURNAL OF INFECTIOUS DISEASES, 2007, 195 (10) :1472-1479
[5]   The modular architecture of meningococcal factor H-binding protein [J].
Beernink, Peter T. ;
Granoff, Dan M. .
MICROBIOLOGY-SGM, 2009, 155 :2873-2883
[6]   Postgenomics of Neisseria meningitidis: an update [J].
Bernardini, Giulia ;
Braconi, Daniela ;
Lusini, Paola ;
Santucci, Annalisa .
EXPERT REVIEW OF PROTEOMICS, 2009, 6 (02) :135-143
[7]  
BREHONY C, 2007, FEMS MICROBIOL REV, V31, P26
[8]   Variation of the factor H-binding protein of Neisseria meningitidis [J].
Brehony, Carina ;
Wilson, Daniel J. ;
Maiden, Martin C. J. .
MICROBIOLOGY-SGM, 2009, 155 :4155-4169
[9]   MUSCLE: a multiple sequence alignment method with reduced time and space complexity [J].
Edgar, RC .
BMC BIOINFORMATICS, 2004, 5 (1) :1-19
[10]   MUSCLE: multiple sequence alignment with high accuracy and high throughput [J].
Edgar, RC .
NUCLEIC ACIDS RESEARCH, 2004, 32 (05) :1792-1797