Wieland Andreas, Denzel Markus, Schmidt Erika, Kochanek Stefan, Kreppel Florian, Reimann Jörg, Schirmbeck Reinhold
Department of Internal Medicine I, University of Ulm, Robert Koch Strasse 8, 89081 Ulm, Germany.
J Mol Med (Berl). 2008 Sep;86(9):1067-79. doi: 10.1007/s00109-008-0371-x. Epub 2008 Jun 13.
Heat shock proteins (Hsp) of the Hsp70/90 families facilitate cellular immune responses to antigenic peptides or proteins bound to them and have therefore been used as vaccine vehicles. We developed an expression system in which chimeric proteins with an Hsp-capturing, viral J domain fused to diverse antigen-encoding sequences form stable complexes with eukaryotic (Hsp70, Hsp73) or bacterial (DnaK) stress proteins and accumulate to high steady-state levels. J domains from different species (viruses/SV40, bacteria/Chlamydia trachomatis or plants/Arabidopsis thaliana) efficiently capture murine or human stress proteins in this system, thus making different J domains available for vaccine production. A novel expression and purification method was developed to produce native Hsp/antigen complexes in transfectants. These purified Hsp/antigen complexes efficiently elicited antigen-specific CD8 T cell responses in mice when delivered as vaccines without adjuvants. In situ complex formation of antigen with Hsp was critical for CD8 T cell priming. Because the described expression system supports the flexible design of multivalent vaccines, it is an attractive strategy to elicit CD8 T cell responses either to recombinant proteins or to selected antigenic domains of these molecules.
热休克蛋白70/90家族的热休克蛋白(Hsp)可促进细胞对与其结合的抗原肽或蛋白质的免疫反应,因此已被用作疫苗载体。我们开发了一种表达系统,其中具有捕获Hsp功能的病毒J结构域与不同的抗原编码序列融合形成的嵌合蛋白,可与真核(Hsp70、Hsp73)或细菌(DnaK)应激蛋白形成稳定复合物,并积累至高稳态水平。来自不同物种(病毒/SV40、细菌/沙眼衣原体或植物/拟南芥)的J结构域可在该系统中有效捕获小鼠或人类应激蛋白,从而使不同的J结构域可用于疫苗生产。我们开发了一种新颖的表达和纯化方法,用于在转染细胞中产生天然的Hsp/抗原复合物。这些纯化的Hsp/抗原复合物在作为无佐剂疫苗递送时,能在小鼠中有效引发抗原特异性CD8 T细胞反应。抗原与Hsp的原位复合物形成对于CD8 T细胞启动至关重要。由于所描述的表达系统支持多价疫苗的灵活设计,因此它是一种引发针对重组蛋白或这些分子选定抗原结构域的CD8 T细胞反应的有吸引力的策略。