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Immunization with recombinant truncated Neisseria meningitidis-Macrophage Infectivity Potentiator (rT-Nm-MIP) protein induces murine antibodies that are cross-reactive and bactericidal for Neisseria gonorrhoeae

机译:重组截短的脑膜炎奈瑟氏球菌-巨噬细胞感染性增强剂(rT-Nm-MIP)蛋白的免疫诱导鼠类抗体对淋病奈瑟菌具有交叉反应和杀菌作用

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摘要

Neisseria meningitidis (Nm) and N. gonorrhoeae (Ng) express a Macrophage Infectivity Potentiator (MIP, NMB1567/NEIS1487) protein in their outer membrane (OM). In this study, we prepared independent batches of liposomes (n = 3) and liposomes + MonoPhosphoryl Lipid A (MPLA) (n = 3) containing recombinant truncated Nm-MIP protein encoded by Allele 2 (rT-Nm-MIP, amino acids 22–142), and used these to immunize mice. We tested the hypothesis that independent vaccine batches showed similar antigenicity, and that antisera could recognise both meningococcal and gonococcal MIP and induce cross-species bactericidal activity.The different batches of M2 rT-Nm-MIP-liposomes ± MPLA showed no significant (P > 0.05) batch-to-batch variation in antigenicity. Anti-rT-Nm-MIP sera reacted equally and specifically with Nm-MIP and Ng-MIP in OM and on live bacterial cell surfaces. Specificity was shown by no antiserum reactivity with Δmip bacteria. Using human complement/serum bactericidal assays, anti-M2 rT-Nm-MIP sera killed homologous meningococcal serogroup B (MenB) strains (median titres of 32–64 for anti-rT-Nm-MIP-liposome sera; 128–256 for anti-rT-Nm-MIP-liposome + MPLA sera) and heterologous M1 protein-expressing MenB strains (titres of 64 for anti rT-Nm-MIP-liposome sera; 128–256 for anti-rT-Nm-MIP-liposome + MPLA sera). Low-level killing (P < 0.05) was observed for a MenB isolate expressing M7 protein (titres 4–8), but MenB strains expressing M6 protein were not killed (titre < 4–8). Killing (P < 0.05) was observed against MenC and MenW bacteria expressing homologous M2 protein (titres of 8–16) but not against MenA or MenY bacteria (titres < 4–8).Antisera to M2 rT-Nm-MIP showed significant (P < 0.05) cross-bactericidal activity against gonococcal strain P9-17 (expressing M35 Ng-MIP, titres of 64–512) and strain 12CFX_T_003 (expressing M10 Ng-MIP, titres 8–16) but not against FA1090 (expressing M8 Ng-MIP).As an alternative to producing recombinant protein, we engineered successfully the Nm-OM to express M2 Truncated–Nm-MIP, but lipooligosaccharide-extraction with Na-DOC was contra-indicated. Our data suggest that a multi-component vaccine containing a select number of Nm- and Ng-MIP type proteins would be required to provide broad coverage of both pathogens.
机译:脑膜炎奈瑟氏菌(Nm)和淋病奈瑟氏球菌(Ng)在其外膜(OM)中表达巨噬细胞感染增强剂(MIP,NMB1567 / NEIS1487)蛋白。在这项研究中,我们制备了独立批次的脂质体(n = 3)和脂质体+单磷酸脂A(MPLA)(n = 3),其中含有由等位基因2(rT-Nm-MIP,氨基酸22)编码的重组截短的Nm-MIP蛋白。 –142),并用它们来免疫小鼠。我们检验了以下假设:独立的疫苗批次显示出相似的抗原性,并且抗血清可以识别脑膜炎球菌和淋球菌MIP并诱导跨物种的杀菌活性。 0.05)抗原性的批次间差异。抗rT-Nm-MIP血清在OM和活细菌细胞表面上均与Nm-MIP和Ng-MIP均等地发生特异性反应。通过与Δmip细菌无抗血清反应来显示特异性。使用人类补体/血清杀菌试验,抗M2 rT-Nm-MIP血清杀死了同源脑膜炎双球菌B群(MenB)菌株(抗rT-Nm-MIP-脂质体血清的中位滴度为32-64;抗-RT-Nm-MIP-脂质体血清的中位滴度为128-256 -rT-Nm-MIP-脂质体+ MPLA血清)和表达异源M1蛋白的MenB菌株(抗rT-Nm-MIP-脂质体血清滴度为64;抗-rT-Nm-MIP-脂质体+脂质体+128血清)。对于表达M7蛋白的MenB分离株(滴度4-8),观察到低水平的杀灭(P <0.05),但是表达M6蛋白的MenB菌株没有被杀死(滴度<4-8)。对表达同源M2蛋白的MenC和MenW细菌(滴度为8–16)观察到杀死(P <0.05),但对MenA或MenY细菌(滴度 4-8)未见杀死作用。对M2 rT-Nm-MIP的抗血清显示显着( P <0.05)对淋球菌P9-17菌株(表达M35 Ng-MIP,效价64-512)和菌株12CFX_T_003(表达M10 Ng-MIP,效价8-16)的交叉杀菌活性,但对FA1090(表达M8 Ng的杀菌力) -MIP)。作为生产重组蛋白的替代方法,我们成功设计了Nm-OM以表达M2截短的-Nm-MIP,但禁忌使用Na-DOC提取脂寡糖。我们的数据表明,将需要包含多种Nm-和Ng-MIP型蛋白的多组分疫苗来提供两种病原体的广泛覆盖。

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