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猪繁殖与呼吸综合征病毒通过 SQSTM1/p62 依赖性选择性自噬降解 DDX10 来拮抗其抗病毒活性。

Porcine reproductive and respiratory syndrome virus degrades DDX10 via SQSTM1/p62-dependent selective autophagy to antagonize its antiviral activity.

机构信息

State Key Laboratory of Agricultural Microbiology, College of Veterinary Medicine, Huazhong Agricultural University, Wuhan null, China.

Key Laboratory of Preventive Veterinary Medicine in Hubei Province, the Cooperative Innovation Center for Sustainable Pig Production, Wuhan, Hubei, China.

出版信息

Autophagy. 2023 Aug;19(8):2257-2274. doi: 10.1080/15548627.2023.2179844. Epub 2023 Feb 27.

Abstract

Porcine reproductive and respiratory syndrome virus (PRRSV) is a typical immunosuppressive virus devastating the global swine industry. DEAD-box helicases (DDXs) are a family of ATP-dependent RNA helicases that are predominantly implicated in modulating cellular RNA metabolism. Meanwhile, a growing number of studies have suggested that some DDXs are associated with innate immunity and virus infection, so they are considered potential antiviral targets. Herein, we screened 40 DDXs and found that ectopic expression of DDX10 exhibited a significant anti-PRRSV effect, while DDX10 knockdown promoted PRRSV proliferation. Further analysis revealed that DDX10 positively regulates type I interferon production, which may contribute to its anti-PRRSV effect. Interestingly, PRRSV infection promoted DDX10 translocation from the nucleus to the cytoplasm for macroautophagic/autophagic degradation to block the antiviral effect of DDX10. By screening PRRSV-encoded proteins, we found that the viral envelope (E) protein interacted with DDX10. In line with the autophagic degradation of DDX10 during PRRSV infection, E protein could induce autophagy and reduce DDX10 expression in wild-type cells, but not in or knockout (KO) cells. When further screening the cargo receptors for autophagic degradation, we found that SQSTM1/p62 (sequestosome 1) interacted with both DDX10 and E protein, and E protein-mediated DDX10 degradation was almost entirely blocked in KO cells, demonstrating that E protein degrades DDX10 by promoting -mediated selective autophagy. Our study reveals a novel mechanism by which PRRSV escapes host antiviral innate immunity through selective autophagy, providing a new target for developing anti-PRRSV drugs. ACTB: actin beta; ATG: autophagy related; co-IP: co-immunoprecipitation; CQ: chloroquine; DDX10: DEAD-box helicase 10; E: envelope; EGFP: enhanced green fluorescent protein; hpi: hours post infection; hpt: hours post transfection; IFA: indirect immunofluorescence assay; IFN-I: type I IFN; IFNB/IFN-β: interferon beta; IRF3: interferon regulatory factor 3; ISGs: interferon-stimulated genes; KO: knockout; MAP1LC3B/LC3: microtubule associated protein 1 light chain 3 beta; mAb: monoclonal antibody; MOI: multiplicity of infection; NBR1: NBR1 autophagy cargo receptor; NFKB/NF-κB: nuclear factor kappa B; OPTN: optineurin; ORF: open reading frame; PRRSV: porcine reproductive and respiratory syndrome virus; SeV: sendai virus; siRNA: small interfering RNA; SQSTM1/p62: sequestosome 1; TCID: 50% tissue culture infective dose; WT: wild type.

摘要

猪繁殖与呼吸综合征病毒(PRRSV)是一种典型的免疫抑制性病毒,严重破坏了全球养猪业。 DEAD-box 解旋酶(DDXs)是一组依赖于 ATP 的 RNA 解旋酶,主要参与调节细胞 RNA 代谢。同时,越来越多的研究表明,一些 DDXs 与先天免疫和病毒感染有关,因此它们被认为是潜在的抗病毒靶点。在此,我们筛选了 40 个 DDXs,发现异位表达 DDX10 表现出显著的抗 PRRSV 作用,而 DDX10 敲低则促进了 PRRSV 的增殖。进一步分析表明,DDX10 可正向调节 I 型干扰素的产生,这可能有助于其抗 PRRSV 作用。有趣的是,PRRSV 感染促进了 DDX10 从细胞核到细胞质的易位,以进行巨自噬/自噬降解,从而阻断 DDX10 的抗病毒作用。通过筛选 PRRSV 编码的蛋白,我们发现病毒包膜(E)蛋白与 DDX10 相互作用。与 PRRSV 感染期间 DDX10 的自噬降解一致,E 蛋白可诱导自噬并降低野生型细胞中的 DDX10 表达,但在 或 敲除(KO)细胞中则不然。当进一步筛选自噬降解的货物受体时,我们发现 SQSTM1/p62(自噬体 1)与 DDX10 和 E 蛋白均相互作用,并且 E 蛋白介导的 DDX10 降解在 KO 细胞中几乎完全被阻断,表明 E 蛋白通过促进介导的选择性自噬来降解 DDX10。我们的研究揭示了 PRRSV 通过选择性自噬逃避宿主抗病毒先天免疫的新机制,为开发抗 PRRSV 药物提供了新的靶标。ACTB:肌动蛋白β;ATG:自噬相关;co-IP:免疫共沉淀;CQ:氯喹;DDX10:DEAD-box 解旋酶 10;E:包膜;EGFP:增强型绿色荧光蛋白;hpi:感染后小时;hpt:转染后小时;IFA:间接免疫荧光法;IFN-I:I 型干扰素;IFNB/IFN-β:干扰素β;IRF3:干扰素调节因子 3;ISGs:干扰素刺激基因;KO:敲除;MAP1LC3B/LC3:微管相关蛋白 1 轻链 3β;mAb:单克隆抗体;MOI:感染复数;NBR1:NBR1 自噬货物受体;NFKB/NF-κB:核因子 kappa B;OPTN:optineurin;ORF:开放阅读框;PRRSV:猪繁殖与呼吸综合征病毒;SeV:仙台病毒;siRNA:小干扰 RNA;SQSTM1/p62:自噬体 1;TCID:50%组织培养感染剂量;WT:野生型。

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