Division of Virology, Department of Pathology, University of Cambridge, Addenbrooke's Hospital, Hills Road, Cambridge, UK.
Laboratory of Immunobiology, Department of Microbiology, Immunology and Parasitology, Universidade Federal de Santa Catarina, Florianópolis, Brazil.
Nucleic Acids Res. 2018 Jun 1;46(10):5269-5285. doi: 10.1093/nar/gky191.
Interferon-induced proteins with tetratricopeptide repeats (IFITs) are highly expressed during the cell-intrinsic immune response to viral infection. IFIT1 inhibits translation by binding directly to the 5' end of foreign RNAs, particularly those with non-self cap structures, precluding the recruitment of the cap-binding eukaryotic translation initiation factor 4F and ribosome recruitment. The presence of IFIT1 imposes a requirement on viruses that replicate in the cytoplasm to maintain mechanisms to avoid its restrictive effects. Interaction of different IFIT family members is well described, but little is known of the molecular basis of IFIT association or its impact on function. Here, we reconstituted different complexes of IFIT1, IFIT2 and IFIT3 in vitro, which enabled us to reveal critical aspects of IFIT complex assembly. IFIT1 and IFIT3 interact via a YxxxL motif present in the C-terminus of each protein. IFIT2 and IFIT3 homodimers dissociate to form a more stable heterodimer that also associates with IFIT1. We show for the first time that IFIT3 stabilizes IFIT1 protein expression, promotes IFIT1 binding to a cap0 Zika virus reporter mRNA and enhances IFIT1 translation inhibition. This work reveals molecular aspects of IFIT interaction and provides an important missing link between IFIT assembly and function.
干扰素诱导的具有四肽重复的蛋白质(IFITs)在细胞固有免疫反应中对病毒感染高度表达。IFIT1 通过直接结合外来 RNA 的 5' 端来抑制翻译,特别是那些具有非自身帽结构的 RNA,从而阻止帽结合真核翻译起始因子 4F 和核糖体的招募。IFIT1 的存在对在细胞质中复制的病毒提出了要求,需要维持机制来避免其限制作用。不同 IFIT 家族成员之间的相互作用已有很好的描述,但对 IFIT 结合的分子基础或其对功能的影响知之甚少。在这里,我们在体外重新构建了 IFIT1、IFIT2 和 IFIT3 的不同复合物,这使我们能够揭示 IFIT 复合物组装的关键方面。IFIT1 和 IFIT3 通过存在于每个蛋白质 C 末端的 YxxxL 基序相互作用。IFIT2 和 IFIT3 同源二聚体解离形成更稳定的异源二聚体,也与 IFIT1 结合。我们首次表明 IFIT3 稳定 IFIT1 蛋白表达,促进 IFIT1 与 cap0 寨卡病毒报告 mRNA 的结合,并增强 IFIT1 的翻译抑制作用。这项工作揭示了 IFIT 相互作用的分子方面,并为 IFIT 组装和功能之间提供了一个重要的缺失环节。