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先天核受体 IFI16 在体外人巨细胞病毒感染的早期向细胞质转移,并在晚期被包裹在出芽的病毒粒子中。

Innate nuclear sensor IFI16 translocates into the cytoplasm during the early stage of in vitro human cytomegalovirus infection and is entrapped in the egressing virions during the late stage.

机构信息

Department of Public Health and Pediatric Sciences, University of Turin, Turin, Italy.

Department of Public Health and Pediatric Sciences, University of Turin, Turin, Italy Department of Translational Medicine, University of Piemonte Orientale A. Avogadro, Novara, Italy.

出版信息

J Virol. 2014 Jun;88(12):6970-82. doi: 10.1128/JVI.00384-14. Epub 2014 Apr 2.

Abstract

UNLABELLED

Intrinsic immune mechanisms mediated by constitutively expressed proteins termed "restriction factors" provide frontline antiviral defense. We recently demonstrated that the DNA sensor IFI16 restricts human cytomegalovirus (HCMV) replication by downregulating viral early and late but not immediate-early mRNAs and their protein expression. We show here that at an early time point during the in vitro infection of low-passage-number human embryonic lung fibroblasts, IFI16 binds to HCMV DNA. However, during a later phase following infection, IFI16 is mislocalized to the cytoplasmic virus assembly complex (AC), where it colocalizes with viral structural proteins. Indeed, upon its binding to pUL97, IFI16 undergoes phosphorylation and relocalizes to the cytoplasm of HCMV-infected cells. ESCRT (endosomal sorting complex required for transport) machinery regulates the translocation of IFI16 into the virus AC by sorting and trafficking IFI16 into multivesicular bodies (MVB), as demonstrated by the interaction of IFI16 with two MVB markers: Vps4 and TGN46. Finally, IFI16 becomes incorporated into the newly assembled virions as demonstrated by Western blotting of purified virions and electron microscopy. Together, these results suggest that HCMV has evolved mechanisms to mislocalize and hijack IFI16, trapping it within mature virions. However, the significance of this IFI16 trapping following nuclear mislocalization remains to be established.

IMPORTANCE

Intracellular viral DNA sensors and restriction factors are critical components of host defense, which alarm and sensitize immune system against intruding pathogens. We have recently demonstrated that the DNA sensor IFI16 restricts human cytomegalovirus (HCMV) replication by downregulating viral early and late but not immediate-early mRNAs and their protein expression. However, viruses are known to evolve numerous strategies to cope and counteract such restriction factors and neutralize the first line of host defense mechanisms. Our findings describe that during early stages of infection, IFI16 successfully recognizes HCMV DNA. However, in late stages HCMV mislocalizes IFI16 into the cytoplasmic viral assembly complex and finally entraps the protein into mature virions. We clarify here the mechanisms HCMV relies to overcome intracellular viral restriction, which provides new insights about the relevance of DNA sensors during HCMV infection.

摘要

未标记

固有免疫机制由称为“限制因子”的组成型表达蛋白介导,为抗病毒提供第一道防线。我们最近证明,DNA 传感器 IFI16 通过下调病毒早期和晚期但不即刻早期 mRNA 及其蛋白表达来限制人巨细胞病毒 (HCMV) 的复制。我们在这里显示,在低传代数人胚肺成纤维细胞体外感染的早期时间点,IFI16 与 HCMV DNA 结合。然而,在感染后的后期阶段,IFI16 被错误定位到细胞质病毒组装复合物 (AC),在那里它与病毒结构蛋白共定位。事实上,在与 pUL97 结合后,IFI16 发生磷酸化并重新定位到 HCMV 感染细胞的细胞质中。ESCRT(内体分选复合物必需的运输)机制通过分选和运输 IFl16 进入多泡体 (MVB) 来调节 IFl16 向病毒 AC 的易位,这正如 IFl16 与两个 MVB 标记物:Vps4 和 TGN46 的相互作用所证明的那样。最后,如通过纯化病毒的 Western blot 和电子显微镜观察到的,IFI16 被纳入新组装的病毒粒子中。总之,这些结果表明,HCMV 已经进化出错误定位和劫持 IFl16 的机制,将其困在成熟的病毒粒子中。然而,核错误定位后这种 IFl16 捕获的意义仍有待确定。

重要性

细胞内病毒 DNA 传感器和限制因子是宿主防御的关键组成部分,它会警告和敏化免疫系统对抗入侵的病原体。我们最近证明,DNA 传感器 IFI16 通过下调病毒早期和晚期但不即刻早期 mRNA 及其蛋白表达来限制人巨细胞病毒 (HCMV) 的复制。然而,病毒已经进化出许多策略来应对和对抗这种限制因子,并中和宿主防御机制的第一道防线。我们的发现描述了在感染的早期阶段,IFI16 成功地识别 HCMV DNA。然而,在晚期阶段,HCMV 将 IFI16 错误定位到细胞质病毒组装复合物中,并最终将该蛋白捕获到成熟的病毒粒子中。我们在这里阐明了 HCMV 依赖的机制来克服细胞内病毒限制,这为 HCMV 感染期间 DNA 传感器的相关性提供了新的见解。

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