Svedova Martina, Masin Jiri, Fiser Radovan, Cerny Ondrej, Tomala Jakub, Freudenberg Marina, Tuckova Ludmila, Kovar Marek, Dadaglio Gilles, Adkins Irena, Sebo Peter
Institute of Microbiology of the ASCR, v.v.i., Prague; Czech Republic.
Faculty of Science, Charles University, Prague, Czech Republic.
Immunol Cell Biol. 2016 Apr;94(4):322-33. doi: 10.1038/icb.2015.87. Epub 2015 Oct 6.
The adenylate cyclase toxin-hemolysin (CyaA) of Bordetella pertussis is a bi-functional leukotoxin. It penetrates myeloid phagocytes expressing the complement receptor 3 and delivers into their cytosol its N-terminal adenylate cyclase enzyme domain (~400 residues). In parallel, ~1300 residue-long RTX hemolysin moiety of CyaA forms cation-selective pores and permeabilizes target cell membrane for efflux of cytosolic potassium ions. The non-enzymatic CyaA-AC(-) toxoid, has repeatedly been successfully exploited as an antigen delivery tool for stimulation of adaptive T-cell immune responses. We show that the pore-forming activity confers on the CyaA-AC(-) toxoid a capacity to trigger Toll-like receptor and inflammasome signaling-independent maturation of CD11b-expressing dendritic cells (DC). The DC maturation-inducing potency of mutant toxoid variants in vitro reflected their specifically enhanced or reduced pore-forming activity and K(+) efflux. The toxoid-induced in vitro phenotypic maturation of DC involved the activity of mitogen activated protein kinases p38 and JNK and comprised increased expression of maturation markers, interleukin 6, chemokines KC and LIX and granulocyte-colony-stimulating factor secretion, prostaglandin E2 production and enhancement of chemotactic migration of DC. Moreover, i.v. injected toxoids induced maturation of splenic DC in function of their cell-permeabilizing capacity. Similarly, the capacity of DC to stimulate CD8(+) and CD4(+) T-cell responses in vitro and in vivo was dependent on the pore-forming activity of CyaA-AC(-). This reveals a novel self-adjuvanting capacity of the CyaA-AC(-) toxoid that is currently under clinical evaluation as a tool for delivery of immunotherapeutic anti-cancer CD8(+) T-cell vaccines into DC.
百日咳博德特氏菌的腺苷酸环化酶毒素-溶血素(CyaA)是一种双功能白细胞毒素。它穿透表达补体受体3的髓样吞噬细胞,并将其N端腺苷酸环化酶酶结构域(约400个残基)递送至细胞溶胶中。同时,CyaA的约1300个残基长的RTX溶血素部分形成阳离子选择性孔,并使靶细胞膜通透,使细胞溶胶中的钾离子外流。非酶促CyaA-AC(-)类毒素已多次成功用作刺激适应性T细胞免疫反应的抗原递送工具。我们发现,成孔活性赋予CyaA-AC(-)类毒素触发Toll样受体和炎性小体信号非依赖性成熟表达CD11b的树突状细胞(DC)的能力。突变类毒素变体在体外诱导DC成熟的效力反映了它们特异性增强或降低的成孔活性和钾离子外流。类毒素诱导的DC体外表型成熟涉及丝裂原活化蛋白激酶p38和JNK的活性,包括成熟标志物、白细胞介素6、趋化因子KC和LIX表达增加以及粒细胞集落刺激因子分泌、前列腺素E2产生和DC趋化迁移增强。此外,静脉注射类毒素根据其细胞通透能力诱导脾DC成熟。同样,DC在体外和体内刺激CD8(+)和CD4(+)T细胞反应的能力取决于CyaA-AC(-)的成孔活性。这揭示了CyaA-AC(-)类毒素的一种新型自佐剂能力目前正在临床评估中,作为将免疫治疗性抗癌CD8(+)T细胞疫苗递送至DC的工具。