基于匹林的抗假单胞菌疫苗:最新发展和前景。

Behring Institute Mitteilungen Pub Date : 1997-02-01
H Hahn, P M Lane-Bell, L M Glasier, J F Nomellini, W H Bingle, W Paranchych, J Smit
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引用次数: 0

摘要

在铜绿假单胞菌(Pseudomonas aeruginosa, Pa)产生的几种粘附素中,4型菌毛促进了该细菌对上皮细胞的大部分粘附能力,是AB.Y/SnJ小鼠感染模型中的主要毒力因子。因此,针对pilin蛋白的二硫环(DSL)粘附结合域的疫苗应提供有效的保护,防止Pa的初始定植和感染。为了选择性地诱导粘附阻断抗体,选择pilin DSL结构域作为肽抗原,用于构建重组蛋白和活疫苗。虽然合成的肽载体蛋白偶联物提供了一些菌株特异性保护,但与N端或c端融合的pilin DSL肽嵌合蛋白不能产生小鼠保护性IgG滴度。pilin DSL肽与丝状噬菌体的次要外壳蛋白或外膜蛋白的表面暴露区域的完整融合导致肽分别在噬菌体颗粒和细菌细胞表面显示。然而,在免疫研究中,这两种活疫苗都不是有效的免疫原。月牙状茎杆菌的近晶s层结合了有效抗原表面展示系统的几个优点。单拷贝插入匹林肽的重组s层蛋白不会产生显著的IgG滴度,而多次串联插入同一肽可使小鼠血清IgG反应增加1000倍。从不同频率的pilin原型中插入多个DSL肽可能是重组交叉保护抗假单胞菌疫苗的一个有趣的替代方案。
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Pilin-based anti-Pseudomonas vaccines: latest developments and perspectives.

Among the several adhesins produced by Pseudomonas aeruginosa (Pa), the type-4 pilus promotes the majority of the adherence capability of the bacterium to epithelial cells and it is a major virulence factor in an AB.Y/SnJ mouse infection model. Vaccines targeting the disulfide loop (DSL) adherence binding domain of the pilin protein should therefore provide an effective protection against initial colonization and infection with Pa. To selectively elicit adherence blocking antibodies, the pilin DSL domain was chosen as peptide antigen for the construction of recombinant protein and live vaccines. While synthetic peptide-carrier protein conjugates provided some strain-specific protection, chimeric proteins with N- or C-terminally fused pilin DSL peptides did not engender protective IgG titers mice. Integral fusions of the pilin DSL peptide with the minor coat protein of filamentous phage or surface exposed regions of an outer membrane protein resulted in a display of the peptide on the surface of the phage particles and bacterial cells respectively. However, in immunization studies neither of these live vaccines were effective immunogens. The paracrystalline S-layer of Caulobacter crescentus combines several advantages of an effective antigen surface display system. Recombinant S-layer proteins with singlecopy insertions of a pilin peptide did not engender significant IgG titers, whereas multiple tandem insertions of the same peptide increased the serum IgG response in mice a thousand times. Multiple insertions of DSL peptides from different frequent pilin prototypes may be an interesting alternative for a recombinant cross-protective anti-Pseudomonas vaccine.

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