INSERM UMR-S 1124, Université Paris Descartes, 45 rue des Saints Pères, 75006 Paris, France.
Institute for Research in Immunology and Cancer, Québec, Canada.
Cytokine. 2020 May;129:155025. doi: 10.1016/j.cyto.2020.155025. Epub 2020 Feb 7.
Interferon (IFN) plays a central role in regulating host immune response to viral pathogens through the induction of IFN-Stimulated Genes (ISGs). IFN also enhances cellular SUMOylation and ISGylation, though the functional interplay between these modifications remains unclear. Here, we used a system-level approach to profile global changes in protein abundance in SUMO3-expressing cells stimulated by IFNα. These analyses revealed the stabilization of several ISG factors including SAMHD1, MxB, GBP1, GBP5, Tetherin/BST2 and members of IFITM, IFIT and IFI families. This process was correlated with enhanced IFNα-induced anti-HIV-1 and HSV-1 activities. Also IFNα upregulated protein ISGylation through increased abundance of E2 conjugating enzyme UBE2L6, and E3 ISG15 ligases TRIM25 and HERC5. Remarkably, TRIM25 depletion blocked SUMO3-dependent protein stabilization in response to IFNα. Our data identify a new mechanism by which SUMO3 regulates ISG product stability and reinforces the relevance of the SUMO pathway in controlling both the expression and functions of the restriction factors and IFN antiviral response.
干扰素 (IFN) 通过诱导 IFN 刺激基因 (ISGs) 在调节宿主对病毒病原体的免疫反应中发挥核心作用。IFN 还增强细胞的 SUMO 化和 ISG 化,但这些修饰之间的功能相互作用尚不清楚。在这里,我们使用系统水平的方法来分析 IFNα 刺激表达 SUMO3 的细胞中蛋白质丰度的全局变化。这些分析揭示了几种 ISG 因子的稳定性,包括 SAMHD1、MxB、GBP1、GBP5、Tetherin/BST2 和 IFITM、IFI 和 IFI 家族的成员。这一过程与增强的 IFNα 诱导的抗 HIV-1 和 HSV-1 活性相关。此外,IFNα 通过增加 E2 连接酶 UBE2L6 和 E3 ISG15 连接酶 TRIM25 和 HERC5 的丰度,上调蛋白 ISG 化。值得注意的是,TRIM25 的耗竭阻止了 IFNα 诱导的 SUMO3 依赖性蛋白稳定。我们的数据确定了 SUMO3 调节 ISG 产物稳定性的新机制,并强调了 SUMO 途径在控制限制因子的表达和功能以及 IFN 抗病毒反应中的相关性。