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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >A signaling polypeptide derived from an innate immune adaptor molecule can be harnessed as a new class of vaccine adjuvant.
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A signaling polypeptide derived from an innate immune adaptor molecule can be harnessed as a new class of vaccine adjuvant.

机译:源自先天免疫衔接子分子的信号多肽可被用作新型疫苗佐剂。

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摘要

Modulation of intracellular signaling using cell-permeable polypeptides is a promising technology for future clinical applications. To develop a novel approach to activate innate immune signaling by synthetic polypeptides, we characterized several different polypeptides derived from the caspase recruitment domain (CARD) of IFN-beta promoter stimulator 1, each of which localizes to a different subcellular compartment. Of particular interest was, N'-CARD, which consisted of the nuclear localization signal of histone H2B and the IFN-beta promoter stimulator 1CARD and which localized to the nucleus. This polypeptide led to a strong production of type I IFNs and molecular and genetic analyses showed that nuclear DNA helicase II is critically involved in this response. N'-CARD polypeptide fused to a protein transduction domain (N'-CARD-PTD) readily transmigrated from the outside to the inside of the cell and triggered innate immune signaling. Administration of N'-CARD-PTD polypeptide elicited production of type I IFNs, maturation of bone marrow-derived dendritic cells, and promotion of vaccine immunogenicity by enhancing Ag-specific Th1-type immune responses, thereby protecting mice from lethal influenza infection and from outgrowth of transplanted tumors in vivo. Thus, our results indicate that the N'-CARD-PTD polypeptide belongs to a new class of vaccine adjuvant that directly triggers intracellular signal transduction by a distinct mechanism from those engaged by conventional vaccine adjuvants, such as TLR ligands.
机译:使用细胞可渗透的多肽调节细胞内信号传导是未来临床应用的有前途的技术。为了开发一种通过合成多肽激活先天免疫信号转导的新方法,我们对几种不同的多肽进行了表征,这些多肽衍生自IFN-β启动子刺激物1的caspase募集域(CARD),每个多肽都位于一个不同的亚细胞区室。尤其令人感兴趣的是N'-CARD,它由组蛋白H2B和IFN-β启动子刺激物1CARD的核定位信号组成,并位于核内。该多肽导致I型干扰素的大量产生,分子和遗传分析表明核DNA解旋酶II关键参与了这一反应。与蛋白质转导结构域(N'-CARD-PTD)融合的N'-CARD多肽易于从细胞外部迁移到内部,并触发先天免疫信号传导。 N'-CARD-PTD多肽的给药引起I型干扰素的产生,骨髓源性树突状细胞的成熟,并通过增强Ag特异性Th1型免疫应答而促进疫苗的免疫原性,从而保护小鼠免受致命的流感感染和体内肿瘤的生长。因此,我们的结果表明,N'-CARD-PTD多肽属于一类新型的疫苗佐剂,它通过不同于常规疫苗佐剂(例如TLR配体)的机制直接触发细胞内信号转导。

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