Structure of the Recombinant Neisseria gonorrhoeae Adhesin Complex Protein (rNg-ACP) and Generation of Murine Antibodies with Bactericidal Activity against Gonococci

被引:17
作者
Almonacid-Mendoza, Hannia Liliana [1 ]
Humbert, Marfa Victoria [1 ]
Dijokaite, Aiste [1 ]
Cleary, David W. [1 ]
Soo, Yiwen [1 ]
Hung, Miao-Chiu [1 ]
Orr, Christian M. [2 ,3 ,4 ]
Machelett, Moritz M. [5 ]
Tews, Ivo [5 ]
Christodoulides, Myron [1 ]
机构
[1] Univ Southampton, Fac Med, Neisseria Res Grp, Mol Microbiol,Acad Unit Clin & Expt Sci,Sir Henry, Southampton, Hants, England
[2] Univ Southampton, Fac Med, Antibody & Vaccine Grp, Canc Sci Unit, Southampton, Hants, England
[3] Univ Hamburg, Hamburg Ctr Ultrafast Imaging, Hamburg, Germany
[4] Univ Hamburg, Inst Nanostruct & Solid State Phys, Hamburg, Germany
[5] Univ Southampton, Biol Sci, Inst Life Sci, Southampton, Hants, England
基金
英国医学研究理事会; 英国惠康基金; 英国工程与自然科学研究理事会;
关键词
NGO1981; Neisseria gonorrhoeae; adhesin complex protein; bactericidal antibody; crystal structure; recombinant protein production; vaccine; OUTER-MEMBRANE PROTEIN; INFECTIVITY POTENTIATOR PROTEIN; IGG SUBCLASS PATTERN; IMMUNE-RESPONSE; VACCINE CANDIDATE; MENINGITIDIS; IMMUNIZATION; LIPOPOLYSACCHARIDE; SIALYLATION; MOUSE;
D O I
10.1128/mSphere.00331-18
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Neisseria gonorrhoeae (gonococcus [Ng]) is the causative organism of the sexually transmitted disease gonorrhoea, and no effective vaccine exists currently. In this study, the structure, biological properties, and vaccine potential of the Ng-adhesin complex protein (Ng-ACP) are presented. The crystal structure of recombinant Ng-ACP (rNg-ACP) protein was solved at 1.65 angstrom. Diversity and conservation of Ng-ACP were examined in different Neisseria species and gonococcal isolates (https://pubmlst.org/neisseria/database) in silico, and protein expression among 50 gonococcal strains in the Centers for Disease Control and Prevention/Food and Drug Administration (CDCP/FDA) AR Isolate Bank was examined by Western blotting. Murine antisera were raised to allele 10 (strain P9-17)-encoded rNg-ACP protein with different adjuvants and examined by enzyme-linked immunosorbent assay (ELISA), Western blotting, and a human serum bactericidal assay. Rabbit antiserum to rNg-ACP was tested for its ability to prevent Ng-ACP from inhibiting human lysozyme activity in vitro. Ng-ACP is structurally homologous to Neisseria meningitidis ACP and MliC/PliC lysozyme inhibitors. Gonococci expressed predominantly allele 10- and allele 6-encoded Ng-ACP (81% and 15% of isolates, respectively). Murine antisera were bactericidal (titers of 64 to 512, P < 0.05) for the homologous P9-17 strain and heterologous (allele 6) FA1090 strain. Rabbit anti-rNg-ACP serum prevented Ng-ACP from inhibiting human lysozyme with similar to 100% efficiency. Ng-ACP protein was expressed by all 50 gonococcal isolates examined with minor differences in the relative levels of expression. rNg-ACP is a potential vaccine candidate that induces antibodies that (i) are bactericidal and (ii) prevent the gonococcus from inhibiting the lytic activity of an innate defense molecule. IMPORTANCE Neisseria gonorrhoeae (gonococcus [Ng]) is the causative organism of the sexually transmitted disease gonorrhoea, and the organism is listed by the World Health Organization as a high-priority pathogen for research and development of new control measures, including vaccines. In this study, we demonstrated that the N. gonorrhoeae adhesin complex protein (Ng-ACP) was conserved and expressed by 50 gonococcal strains and that recombinant proteins induced antibodies in mice that killed the bacteria in vitro. We determined the structure of Ng-ACP by X-ray crystallography and investigated structural conservation with Neisseria meningitidis ACP and MliC/PliC proteins from other bacteria which act as inhibitors of the human innate defense molecule lysozyme. These findings are important and suggest that Ng-ACP could provide a potential dual target for tackling gonococcal infections.
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