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Decoration of Outer Membrane Vesicles with Multiple Antigens by Using an Autotransporter Approach

机译:使用自动转运蛋白方法装饰具有多种抗原的外膜囊泡

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摘要

Outer membrane vesicles (OMVs) are spherical nanoparticles that naturally shed from Gram-negative bacteria. They are rich in immunostimulatory proteins and lipopolysaccharide but do not replicate, which increases their safety profile and renders them attractive vaccine vectors. By packaging foreign polypeptides in OMVs, specific immune responses can be raised toward heterologous antigens in the context of an intrinsic adjuvant. Antigens exposed at the vesicle surface have been suggested to elicit protection superior to that from antigens concealed inside OMVs, but hitherto robust methods for targeting heterologous proteins to the OMV surface have been lacking. We have exploited our previously developed hemoglobin protease (Hbp) autotransporter platform for display of heterologous polypeptides at the OMV surface. One, two, or three of the Mycobacterium tuberculosis antigens ESAT6, Ag85B, and Rv2660c were targeted to the surface of Escherichia coli OMVs upon fusion to Hbp. Furthermore, a hypervesiculating ΔtolR ΔtolA derivative of attenuated Salmonella enterica serovar Typhimurium SL3261 was generated, enabling efficient release and purification of OMVs decorated with multiple heterologous antigens, exemplified by the M. tuberculosis antigens and epitopes from Chlamydia trachomatis major outer membrane protein (MOMP). Also, we showed that delivery of Salmonella OMVs displaying Ag85B to antigen-presenting cells in vitro results in processing and presentation of an epitope that is functionally recognized by Ag85B-specific T cell hybridomas. In conclusion, the Hbp platform mediates efficient display of (multiple) heterologous antigens, individually or combined within one molecule, at the surface of OMVs. Detection of antigen-specific immune responses upon vesicle-mediated delivery demonstrated the potential of our system for vaccine development.
机译:外膜囊泡(OMV)是球形天然纳米颗粒,可从革兰氏阴性细菌中脱落。它们富含免疫刺激蛋白和脂多糖,但不能复制,这增加了它们的安全性,并使其成为有吸引力的疫苗载体。通过将外源多肽包装在OMV中,可以在内部佐剂的情况下针对异源抗原产生特异性免疫反应。已经提出了暴露于囊泡表面的抗原优于来自隐藏在OMV内部的抗原的保护作用,但是迄今缺乏将异源蛋白靶向OMV表面的有效方法。我们已经利用我们先前开发的血红蛋白蛋白酶(Hbp)自转运平台在OMV表面展示异源多肽。在与Hbp融合后,将一种,两种或三种结核分枝杆菌抗原ESAT6,Ag85B和Rv2660c靶向大肠杆菌OMV的表面。此外,产生了减毒肠炎沙门氏菌鼠伤寒沙门氏菌SL3261的超脉管化ΔtolRΔtolA衍生物,能够有效释放和纯化装饰有多种异源抗原的OMV,例如结核分枝杆菌抗原和沙眼衣原体主要外膜蛋白(MOMP)的表位。同样,我们显示出,将展示Ag85B的沙门氏菌OMV递送至体外的抗原呈递细胞会导致加工和呈递功能性表位,该表位可被Ag85B特异性T细胞杂交瘤识别。总之,Hbp平台介导了在OMV表面单独显示或结合在一个分子中的(多种)异源抗原的有效展示。在囊泡介导的递送中检测抗原特异性免疫反应证明了我们系统开发疫苗的潜力。

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