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首页> 外文期刊>International journal of medical microbiology: IJMM >Listeria monocytogenes as novel carrier system for the development of live vaccines
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Listeria monocytogenes as novel carrier system for the development of live vaccines

机译:单核细胞增生性李斯特菌是开发活疫苗的新型载体系统

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摘要

Listeria monocytogenes is a facultative intracellular bacterium that enters a variety of non-professional mammalian cells by triggered phagocytosis ("zipper mechanism") and replicates in the cytosol of the infected host cells. Therefore, it is a promising vaccine vector for the presentation of passenger antigens to the MHC class II and especially class I pathways. Here, we review recent progress made in our laboratory on the development of novel attenuated L. monocytogenes carrier strains for the delivery of heterologous antigens or antigen-encoding DNA and RNA to eukaryotic host cells. Based on the deletion of the chromosomal copy of the tryptophanyl-tRNA synthetase gene (trpS) and plasmid-based in trans complementation of the same, we were able to establish a balanced-lethal plasmid system in L. monocytogenes. Safety concerns in the antigen delivery in vivo were addressed by chromosomal deletion of genes in the basic branch of the aromatic amino acid pathway, resulting in safe, attenuated L. monocytogenes carrier strains. Furthermore, plasmid-based expression of a cytosolically expressed phage lysin resulted in a self-destructing carrier strain that has been successfully used for the delivery of antigens as well as antigen-encoding plasmid DNA and particularly mRNA, therefore overcoming bottlenecks that have been shown to exist for bacteria-mediated DNA delivery. (C) 2007 Published by Elsevier GmbH.
机译:单核细胞增生性李斯特菌是一种兼性的细胞内细菌,它通过触发吞噬作用(“拉链机制”)进入各种非专业哺乳动物细胞,并在受感染宿主细胞的细胞质中复制。因此,它是一种有前途的疫苗载体,用于将客运抗原呈递至II类MHC途径,尤其是I类途径。在这里,我们回顾了我们实验室在新型减毒单核细胞增生李斯特氏菌载体菌株(用于将异源抗原或编码抗原的DNA和RNA传递至真核宿主细胞)上的最新进展。基于色氨酸-tRNA合成酶基因(trpS)的染色体副本的删除和基于质粒的反式互补,我们能够在单核细胞增生李斯特氏菌中建立平衡致死质粒系统。通过芳香族氨基酸途径基本分支中基因的染色体缺失,解决了在体内抗原递送中的安全问题,从而产生了安全的,减毒的单核细胞增生李斯特菌载体菌株。此外,细胞质表达的噬菌体溶素的基于质粒的表达导致了自毁性载体菌株,该菌株已成功用于抗原以及编码抗原的质粒DNA尤其是mRNA的递送,因此克服了显示出的瓶颈存在于细菌介导的DNA传递中。 (C)2007由Elsevier GmbH发布。

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