Roeske Katarzyna, Stachowiak Radoslaw, Jagielski Tomasz, Kamiński Michal, Bielecki Jacek
Department of Applied Microbiology, Faculty of Biology, University of Warsaw, 02-096 Warsaw, Poland.
J Microbiol Biotechnol. 2018 Jan 28;28(1):122-135. doi: 10.4014/jmb.1706.06057.
Listeriolysin O (LLO), one of the most immunogenic proteins of and its main virulence factor, mediates bacterial escape from the phagosome of the infected cell. Thus, its expression in a nonpathogenic bacterial host may enable effective delivery of heterologous antigens to the host cell cytosol and lead to their processing predominantly through the cytosolic MHC class I presentation pathway. The aim of this project was to characterize the delivery of a model antigen, chicken egg ovalbumin (OVA), to the cytosol of dendritic cells by recombinant vegetative cells expressing LLO. Our work indicated that LLO produced by non-sporulating vegetative bacteria was able to support OVA epitope presentation by MHC I molecules on the surface of antigen presenting cells and consequently influence OVA-specific cytotoxic T cell activation. Additionally, it was proven that the genetic context of the epitope sequence is of great importance, as only the native full-sequence OVA fused to the N-terminal fragment of LLO was sufficient for effective epitope delivery and activation of CD8⁺ lymphocytes. These results demonstrate the necessity for further verification of the fusion antigen potency of enhancing the MHC I presentation, and they prove that LLO-producing may represent a novel and attractive candidate for a vaccine vector.
溶血素O(LLO)是李斯特菌最具免疫原性的蛋白之一,也是其主要毒力因子,介导细菌从被感染细胞的吞噬体中逃逸。因此,其在非致病性细菌宿主中的表达可能使异源抗原有效递送至宿主细胞胞质溶胶,并主要通过胞质溶胶中的MHC I类呈递途径对其进行加工处理。本项目的目的是通过表达LLO的重组营养细胞,将模型抗原鸡卵清蛋白(OVA)递送至树突状细胞的胞质溶胶中。我们的研究表明,非产孢营养细菌产生的LLO能够支持抗原呈递细胞表面的MHC I分子呈递OVA表位,从而影响OVA特异性细胞毒性T细胞的激活。此外,还证明了表位序列的基因背景非常重要,因为只有与LLO N端片段融合的天然全长OVA足以有效递呈表位并激活CD8⁺淋巴细胞。这些结果表明,有必要进一步验证融合抗原增强MHC I呈递的效力,并且证明产生LLO的李斯特菌可能是一种新型且有吸引力的疫苗载体候选物。