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HIV-1 促进 1 型 IFN JAK/STAT 途径的组成部分的降解,并阻断抗病毒 ISG 的诱导。

HIV-1 Promotes the Degradation of Components of the Type 1 IFN JAK/STAT Pathway and Blocks Anti-viral ISG Induction.

机构信息

Intracellular Immunology Group, School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College Dublin, Ireland.

Intracellular Immunology Group, School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College Dublin, Ireland; School of Medicine, Trinity College Dublin, Ireland; Department of GU Medicine and Infectious Diseases, St. James's Hospital, Dublin, Ireland.

出版信息

EBioMedicine. 2018 Apr;30:203-216. doi: 10.1016/j.ebiom.2018.03.006. Epub 2018 Mar 9.

Abstract

Anti-retroviral therapy successfully suppresses HIV-1 infection, but fails to provide a cure. During infection Type 1 IFNs normally play an essential role in viral clearance, but in vivo IFN-α only has a modest impact on HIV-1 infection, suggesting its possible targeting by HIV. Here, we report that the HIV protein, Vif, inhibits effective IFN-α signalling via degradation of essential JAK/STAT pathway components. We found that STAT1 and STAT3 are specifically reduced in HEK293T cells expressing Vif and that full length, infectious HIV-1 IIIB strain promotes their degradation in a Vif-dependent manner. HIV-1 IIIB infection of myeloid ThP-1 cells also reduced the IFN-α-mediated induction of the anti-viral gene, ISG15, but not MxA, revealing a functional consequence of this HIV-1-mediated immune evasion strategy. Interestingly, while total STAT levels were not reduced upon in vitro IIIB infection of primary human PBMCs, IFN-α-mediated phosphorylation of STAT1 and STAT3 and ISG induction were starkly reduced, with removal of Vif (IIIBΔVif), partially restoring pSTATs, ISG15 and MxB induction. Similarly, pSTAT1 and pSTAT3 expression and IFN-α-induced ISG15 were reduced in PBMCs from HIV-infected patients, compared to healthy controls. Furthermore, IFN-α pre-treatment of a CEM T lymphoblast cells significantly inhibited HIV infection/replication (measured by cellular p24), only in the absence of Vif (IIIBΔVif), but was unable to suppress full length IIIB infection. When analysing the mechanism by which Vif might target the JAK/STAT pathway, we found Vif interacts with both STAT1 and STAT3, (but not STAT2), and its expression promotes ubiquitination and MG132-sensitive, proteosomal degradation of both proteins. Vif's Elongin-Cullin-SOCS-box binding motif enables the formation of an active E3 ligase complex, which we found to be required for Vif's degradation of STAT1 and STAT3. In fact, the E3 ligase scaffold proteins, Cul5 and Rbx2, were also found to be essential for Vif-mediated proteasomal degradation of STAT1 and STAT3. These results reveal a target for HIV-1-Vif and demonstrate how HIV-1 impairs the anti-viral activity of Type 1 IFNs, possibly explaining why both endogenous and therapeutic IFN-α fail to activate more effective control over HIV infection.

摘要

抗逆转录病毒疗法成功抑制了 HIV-1 感染,但未能治愈。在感染过程中,I 型干扰素通常在病毒清除中发挥重要作用,但体内 IFN-α 对 HIV-1 感染的影响仅适度,表明其可能受到 HIV 的靶向作用。在这里,我们报告 HIV 蛋白 Vif 通过降解必需的 JAK/STAT 途径成分来抑制有效的 IFN-α 信号。我们发现,在表达 Vif 的 HEK293T 细胞中,STAT1 和 STAT3 特异性减少,全长、感染性 HIV-1 IIIB 株以 Vif 依赖的方式促进其降解。HIV-1 IIIB 感染髓样 ThP-1 细胞也降低了 IFN-α 介导的抗病毒基因 ISG15 的诱导,但不降低 MxA,揭示了这种 HIV-1 介导的免疫逃避策略的功能后果。有趣的是,虽然在体外 IIIB 感染原代人 PBMC 时总 STAT 水平没有降低,但 IFN-α 介导的 STAT1 和 STAT3 的磷酸化和 ISG 的诱导明显降低,而去除 Vif(IIIBΔVif)部分恢复了 pSTATs、ISG15 和 MxB 的诱导。同样,与健康对照相比,HIV 感染患者的 PBMC 中 pSTAT1 和 pSTAT3 的表达和 IFN-α 诱导的 ISG15 降低。此外,IFN-α 预处理 CEM T 淋巴母细胞显著抑制 HIV 感染/复制(通过细胞内 p24 测量),仅在不存在 Vif(IIIBΔVif)的情况下,但无法抑制全长 IIIB 感染。当分析 Vif 可能靶向 JAK/STAT 途径的机制时,我们发现 Vif 与 STAT1 和 STAT3 相互作用(但不与 STAT2 相互作用),其表达促进两种蛋白的泛素化和 MG132 敏感的蛋白酶体降解。Vif 的 Elongin-Cullin-SOCS 盒结合基序使形成活性 E3 连接酶复合物成为可能,我们发现该复合物是 Vif 降解 STAT1 和 STAT3 所必需的。事实上,E3 连接酶支架蛋白 Cul5 和 Rbx2 也被发现是 Vif 介导的 STAT1 和 STAT3 蛋白酶体降解所必需的。这些结果揭示了 HIV-1-Vif 的一个靶点,并证明了 HIV-1 如何损害 I 型干扰素的抗病毒活性,这可能解释了为什么内源性和治疗性 IFN-α 都不能更有效地激活对 HIV 感染的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a532/5952252/217a1b6c44b6/gr1.jpg

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