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IRF3 的激活有助于在针对 B16F10 肿瘤生长的免疫反应中 IFN-γ 和 ISG54 的表达。

Activation of IRF3 contributes to IFN-γ and ISG54 expression during the immune responses to B16F10 tumor growth.

机构信息

School of Biological Sciences, University of Nebraska-Lincoln, United States.

School of Biological Sciences, University of Nebraska-Lincoln, United States; Nebraska Center for Virology, University of Nebraska-Lincoln, United States.

出版信息

Int Immunopharmacol. 2017 Sep;50:121-129. doi: 10.1016/j.intimp.2017.06.016. Epub 2017 Jun 23.

Abstract

Interferon Regulatory Factor (IRF-3) has been shown to contribute to immune control of B16 melanoma tumor growth. We have shown previously that IRF-3 has a role in IFN-γ-induced expression of pro-apoptotic interferon stimulated gene 54 (ISG54) in macrophages and IFN-γ in T cells. To investigate the IRF3-IFN-γ-ISG54 nexus, we injected C57Bl/6 (B6) and IRF3KO mice s.c. with luciferase-producing B16-F10 tumor cells. Tumor growth as measured by luciferase levels was similar between B6 and IRF3KO mice at days 2 and 6, but was significantly greater at day 9 in IRF3KO mice compared with B6 mice. Transcription factor assays on splenic protein extracts after tumor inoculation revealed peak activation of IRF3 and IRF7 at day 6 in B6 tumor-bearing mice but not in IRF3KO tumor-bearing mice. Likewise, significant induction of IFN-γ occurred in spleens and tumors in B6 mice from days 6-9 but failed to occur in tumor-bearing IRF3KO mice. Previous reports from other labs showed that the anti-tumor properties of IFN-γ are the result of cell cycle arrest. Using B16F1 cells or B16F1 cells deficient in IFN-γ receptor (B16-IRFGRKO), we found that IFN-γ alone and in synergy with the TLR3/IRF3 agonists, poly I:C, decreased B16F1 cell growth in significant correlation with increased ISG54 expression. Moreover, IFN-γ alone increased expression of the cell cycle inhibitor, p27Kip while IFN-γ plus poly I:C increased cleaved Caspase-3 in B16 cells. Thus, it is likely that an IFN-γ/IRF3/ISG54 nexus can significantly contribute to tumor cell control during anti-tumor immune responses.

摘要

干扰素调节因子 (IRF-3) 已被证明有助于控制 B16 黑色素瘤肿瘤的生长。我们之前已经表明,IRF-3 在 IFN-γ 诱导的巨噬细胞中促凋亡干扰素刺激基因 54 (ISG54) 和 T 细胞中 IFN-γ 的表达中起作用。为了研究 IRF3-IFN-γ-ISG54 连接,我们将产生荧光素酶的 B16-F10 肿瘤细胞皮下注射到 C57Bl/6 (B6) 和 IRF3KO 小鼠中。通过荧光素酶水平测量的肿瘤生长在第 2 天和第 6 天在 B6 和 IRF3KO 小鼠之间相似,但在第 9 天 IRF3KO 小鼠的肿瘤生长明显大于 B6 小鼠。肿瘤接种后脾蛋白提取物的转录因子分析显示,在 B6 荷瘤小鼠中,IRF3 和 IRF7 在第 6 天达到峰值激活,但在 IRF3KO 荷瘤小鼠中则没有。同样,B6 小鼠的脾和肿瘤中从第 6 天到第 9 天显著诱导 IFN-γ,但在 IRF3KO 荷瘤小鼠中则没有发生。其他实验室的先前报道表明,IFN-γ 的抗肿瘤特性是细胞周期停滞的结果。使用 B16F1 细胞或缺乏 IFN-γ 受体的 B16F1 细胞 (B16-IRFGRKO),我们发现 IFN-γ 单独以及与 TLR3/IRF3 激动剂聚肌苷酸协同作用,可显著降低 B16F1 细胞的生长,与 ISG54 表达增加呈显著相关。此外,IFN-γ 单独增加细胞周期抑制剂 p27Kip 的表达,而 IFN-γ 加聚肌苷酸增加 B16 细胞中 cleaved Caspase-3 的表达。因此,IFN-γ/IRF3/ISG54 连接很可能在抗肿瘤免疫反应期间对肿瘤细胞的控制有重要贡献。

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本文引用的文献

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