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缺血反应蛋白94(Irp94)通过自然杀伤细胞受体蛋白2/自然杀伤细胞2族成员D(NKR-P2/NKG2D)激活树突状细胞,使其成熟。

The ischemia-responsive protein 94 (Irp94) activates dendritic cells through NK cell receptor protein-2/NK group 2 member D (NKR-P2/NKG2D) leading to their maturation.

作者信息

Srivastava Raghvendra M, Varalakshmi Chavvakula, Khar Ashok

机构信息

Centre for Cellular and Molecular Biology, Hyderabad, India.

出版信息

J Immunol. 2008 Jan 15;180(2):1117-30. doi: 10.4049/jimmunol.180.2.1117.

DOI:10.4049/jimmunol.180.2.1117
PMID:18178852
Abstract

Tumor recognition and killing, the uptake of released immunogenic substrate, and the generation of immunity are crucial aspects of dendritic cell (DC)-mediated antitumor immune response. In the context of direct tumoricidal activity, we have recently shown NK cell receptor protein-2 (NKR-P2)/NK group 2 member D (NKG2D) as a potent activation receptor on rat DCs. The activation of DCs with agonistic anti-NKR-P2 mAb, the binding of soluble NKR-P2 to the AK-5 tumor, and DC maturation with fixed AK-5 cells led us to identify a putative NKR-P2 ligand on the AK-5 cell surface. In this study we have shown that the AK-5 tumor-derived ischemia-responsive protein-94 (Irp94, a 110 kDa Hsp family member) acts as a functional ligand for NKR-P2 on DCs and enhances Irp94-NKR-P2 interaction-dependent tumor cell apoptosis via NO. Surface expression of Irp94 was also found on tumors of diverse origin in addition to AK-5. Furthermore, the Th1-polarizing cytokine IL-12, produced from Irp94-ligated BMDCs, augments NK cell cytotoxicity. Irp94-NKR-P2 interaction drives the maturation of BMDCs by up-regulating MHC class II, CD86, and CD1a and also induces autologous T cell proliferation, which displays a crucial state of DCs for adaptive antitumor immune response. These functional properties of Irp94 reside in the COOH terminus subdomain but not in the NH2 terminus ATPase domain of Irp94. We also show the involvement of PI3K, ERK, protein kinase C, phosphatases, and NF-kappaB translocation as downstream mediators of DCs activation upon NKR-P2 ligation with Irp94. Our studies demonstrate for the first time a novel role of a 110-kDa heat shock protein (Irp94) as a ligand for NKR-P2 on DCs, which in turn executes both innate and adaptive immunity.

摘要

肿瘤识别与杀伤、释放的免疫原性底物的摄取以及免疫的产生是树突状细胞(DC)介导的抗肿瘤免疫反应的关键方面。在直接杀瘤活性方面,我们最近发现NK细胞受体蛋白-2(NKR-P2)/NK细胞亚群2成员D(NKG2D)是大鼠DC上一种有效的激活受体。用激动性抗NKR-P2单克隆抗体激活DC、可溶性NKR-P2与AK-5肿瘤的结合以及用固定的AK-5细胞使DC成熟,使我们在AK-5细胞表面鉴定出一种假定的NKR-P2配体。在本研究中,我们表明AK-5肿瘤来源的缺血反应蛋白-94(Irp94,一种110 kDa的热休克蛋白家族成员)作为DC上NKR-P2的功能性配体,并通过一氧化氮增强Irp94-NKR-P2相互作用依赖性的肿瘤细胞凋亡。除了AK-5肿瘤外,在多种来源的肿瘤上也发现了Irp94的表面表达。此外,由Irp94连接的骨髓来源DC产生的Th1极化细胞因子IL-12增强了NK细胞的细胞毒性。Irp94-NKR-P2相互作用通过上调MHC II类、CD86和CD1a驱动骨髓来源DC的成熟,还诱导自体T细胞增殖,这显示了DC在适应性抗肿瘤免疫反应中的关键状态。Irp94的这些功能特性存在于Irp94的COOH末端亚结构域中,而不存在于NH2末端ATP酶结构域中。我们还表明PI3K、ERK、蛋白激酶C、磷酸酶和NF-κB易位作为NKR-P2与Irp94连接后DC激活的下游介质参与其中。我们的研究首次证明了一种110 kDa热休克蛋白(Irp94)作为DC上NKR-P2配体的新作用,其反过来执行先天性和适应性免疫。

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