首页> 美国卫生研究院文献>Infection and Immunity >A New Generation of Stable Nonantibiotic Low-Copy-Number Plasmids Improves Immune Responses to Foreign Antigens in Salmonella enterica Serovar Typhi Live Vectors
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A New Generation of Stable Nonantibiotic Low-Copy-Number Plasmids Improves Immune Responses to Foreign Antigens in Salmonella enterica Serovar Typhi Live Vectors

机译:新一代稳定的非抗生素的低拷贝数的质粒可改善肠炎沙门氏菌伤寒沙门氏菌活载体中对外源抗原的免疫反应

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摘要

We hypothesized that adequately engineered attenuated Salmonella enterica serovar Typhi strains can serve as multivalent mucosal live vector vaccines to immunize against unrelated human pathogens. Toward this ultimate goal, we have developed a novel genetic stabilization system for antigen-expressing plasmids, engineered to encode the single-stranded binding protein (SSB), an essential protein involved in DNA metabolism which was deleted from the live vector chromosome. We utilized full-length protective antigen (PA83) of anthrax toxin from Bacillus anthracis as a foreign antigen and expressed PA83 as a fusion with the ClyA export protein, which allows export of ClyA-PA83 to the surface of S. Typhi live vectors. A series of SSB-encoding multicopy expression plasmids were introduced into reengineered S. Typhi strains previously tested in clinical trials, i.e., CVD 908-htrA and its less attenuated parent CVD 908. Immunogenicity was examined using a mouse model of intranasal immunization with live vector, followed by parenteral boosting with purified PA83. PA-specific antibody responses markedly improved as the copy number of the SSB-encoding plasmids decreased, and this effect was dramatically enhanced when the foreign antigen was delivered by the less attenuated live vector CVD 908ssb. These results suggest that antibody responses to antigens delivered by S. Typhi live vectors are inversely related to the metabolic burden imposed by expression of the foreign antigen and that these responses can be improved when antigens are expressed from low-copy-number plasmids and exported out of the cytoplasm of less attenuated live vectors.
机译:我们假设经过充分工程设计的减毒肠炎沙门氏菌鼠伤寒沙门氏菌菌株可以作为多价粘膜活载体疫苗来针对不相关的人类病原体进行免疫。为了实现这一最终目标,我们为表达抗原的质粒开发了一种新型的基因稳定系统,该系统经过工程设计以编码单链结合蛋白(SSB),SSB是参与DNA代谢的必需蛋白,已从活载体染色体中删除。我们利用炭疽芽孢杆菌炭疽毒素的全长保护性抗原(PA83)作为外源抗原,并将PA83表达为与ClyA出口蛋白融合,从而允许ClyA-PA83出口到伤寒沙门氏菌活载体的表面。将一系列编码SSB的多拷贝表达质粒引入先前在临床试验中测试过的重组S. Typhi菌株,即CVD 908-htrA及其减毒程度较弱的亲本CVD908。使用带有活载体的鼻内免疫小鼠模型检查了免疫原性,然后用纯净的PA83加强肠胃外。当SSB编码质粒的拷贝数减少时,PA特异性抗体反应显着改善,当外源抗原通过减毒程度较小的活载体CVD 908ssb递送时,这种效果显着增强。这些结果表明,对鼠伤寒沙门氏菌活载体递送的抗原的抗体反应与外源抗原表达所施加的代谢负担成反比,并且当从低拷贝数质粒表达抗原并输出时,可以改善这些反应。减毒活载体细胞质的数量。

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