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颗粒酶 A 通过诱导 I 型 IFN 刺激 pDCs 促进适应性免疫。

Granzyme A Stimulates pDCs to Promote Adaptive Immunity via Induction of Type I IFN.

机构信息

Laboratory for Immunotherapy, RIKEN Center for Integrative Medical Sciences, Yokohama, Japan.

Laboratory for Protein Functional and Structural Biology, RIKEN Center for Biosystems Dynamics Research, Yokohama, Japan.

出版信息

Front Immunol. 2019 Jun 26;10:1450. doi: 10.3389/fimmu.2019.01450. eCollection 2019.

Abstract

Granzyme A (GzmA), together with perforin, are well-known for their cytotoxic activity against tumor or virus-infected cells. In addition to this cytotoxic function, GzmA stimulates several immune cell types and induces inflammation in the absence of perforin, however, its effect on the dendritic cell (DC) is unknown. In the current study, we showed that recombinant GzmA induced the phenotypic maturation of plasmacytoid DCs (pDCs) and conventional DCs (cDCs), but not their apoptosis. Particularly, GzmA made pDCs more functional, thus leading to production of type I interferon (IFN) via the TLR9-MyD88 pathway. We also demonstrated that GzmA binds TLR9 and co-localizes with it in endosomes. When co-administered with antigen, GzmA acted as a powerful adjuvant for eliciting antigen-specific cytotoxic CD8 T lymphocytes (CTLs) that protected mice from tumor challenge. The induction of CTL was completely abolished in XCR1 DC-depleted mice, whereas it was reduced to less than half in pDC-depleted or IFN-α/β receptor knockout mice. Thus, CTL cross-priming was dependent on XCR1cDC and also type I IFN, which was produced by GzmA-activated pDCs. These results indicate that GzmA -stimulated pDCs enhance the cross-priming activity of cDCs . We also showed that the adjuvant effect of GzmA is superior to CpG-ODN and LPS. Our findings highlight the ability of GzmA to bridge innate and adaptive immune responses via pDC help and suggest that GzmA may be useful as a vaccine adjuvant.

摘要

颗粒酶 A(GzmA)与穿孔素一起,因其对肿瘤或病毒感染细胞的细胞毒性作用而闻名。除了这种细胞毒性作用外,GzmA 还能刺激几种免疫细胞类型,并在没有穿孔素的情况下引发炎症,然而,它对树突状细胞(DC)的作用尚不清楚。在本研究中,我们表明重组 GzmA 诱导浆细胞样 DC(pDC)和经典 DC(cDC)的表型成熟,但不会诱导其凋亡。特别是,GzmA 使 pDC 更具功能,从而通过 TLR9-MyD88 途径导致 I 型干扰素(IFN)的产生。我们还证明 GzmA 与 TLR9 结合,并在内体中与 TLR9 共定位。当与抗原共同给药时,GzmA 作为一种强大的佐剂,可引发抗原特异性细胞毒性 CD8 T 淋巴细胞(CTL),从而保护小鼠免受肿瘤挑战。在 XCR1 DC 耗尽的小鼠中,CTL 的诱导完全被消除,而在 pDC 耗尽或 IFN-α/β受体敲除的小鼠中,CTL 的诱导减少到不到一半。因此,CTL 的交叉呈递依赖于 XCR1 cDC 和由 GzmA 激活的 pDC 产生的 I 型 IFN。这些结果表明,GzmA 刺激的 pDC 增强了 cDC 的交叉呈递活性。我们还表明,GzmA 的佐剂作用优于 CpG-ODN 和 LPS。我们的发现强调了 GzmA 通过 pDC 辅助桥接先天和适应性免疫反应的能力,并表明 GzmA 可能作为疫苗佐剂有用。

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