Rousseau Claire, Morand Thomas, Haas Gabrielle, Lauret Emilie, Kuhn Lauriane, Chicher Johana, Hammann Philippe, Meignin Carine
Université de Strasbourg, M3i CNRS UPR9022, Strasbourg, France.
Plateforme Protéomique Strasbourg-Esplanade, Université de Strasbourg, CNRS UAR1589, Strasbourg, France.
PLoS Pathog. 2025 May 7;21(5):e1013093. doi: 10.1371/journal.ppat.1013093. eCollection 2025 May.
RNA interference has a major role in the control of viral infection in insects. It is initialized by the sensing of double stranded RNA (dsRNA) by the RNAse III enzyme Dicer-2. Many in vitro studies have helped understand how Dicer-2 discriminates between different dsRNA substrate termini, however it is unclear whether the same mechanisms are at work in vivo, and notably during recognition of viral dsRNA. Indeed, although Dicer-2 associates with several dsRNA-binding proteins (dsRBPs) that can modify its specificity for a substrate, it remains unknown how Dicer-2 is able to recognize the protected termini of viral dsRNAs. In order to study how the ribonucleoprotein network of Dicer-2 impacts antiviral immunity, we used an IP-MS approach to identify in vivo interactants of different versions of GFP::Dicer-2 in transgenic lines. We provide a global overview of the partners of Dicer-2 in vivo, and reveal how this interactome is modulated by different factors such as viral infection and/or different point mutations inactivating the helicase or RNase III domains of GFP::Dicer-2. Our analysis uncovers several previously unknown Dicer-2 interactants associated with RNA granules, i.e., Me31B, Rump, eIF4E1, eIF4G1, Rin and Syncrip. Functional characterization of the candidates, both in cells and in vivo, reveals pro- and antiviral factors in the context of an infection by the picorna-like DCV virus. This work highlights protein complexes assembled around Dicer-2 in vivo, and provides a resource to investigate their contribution to antiviral RNAi and related pathways.
RNA干扰在昆虫病毒感染的控制中起着重要作用。它由RNA酶III Dicer-2对双链RNA(dsRNA)的感知启动。许多体外研究有助于理解Dicer-2如何区分不同的dsRNA底物末端,然而尚不清楚相同的机制在体内是否起作用,特别是在识别病毒dsRNA期间。实际上,尽管Dicer-2与几种可以改变其对底物特异性的dsRNA结合蛋白(dsRBPs)相关联,但仍不清楚Dicer-2如何能够识别病毒dsRNA的受保护末端。为了研究Dicer-2的核糖核蛋白网络如何影响抗病毒免疫,我们使用免疫沉淀-质谱(IP-MS)方法来鉴定转基因品系中不同版本的GFP::Dicer-2的体内相互作用蛋白。我们提供了Dicer-2在体内相互作用蛋白的全局概述,并揭示了这种相互作用组如何受到不同因素的调节,如病毒感染和/或使GFP::Dicer-2的解旋酶或RNase III结构域失活的不同点突变。我们的分析发现了几个与RNA颗粒相关的先前未知的Dicer-2相互作用蛋白,即Me31B、Rump、eIF4E1、eIF4G1、Rin和Syncrip。对这些候选蛋白在细胞和体内的功能表征揭示了在感染类微小核糖核酸病毒DCV病毒的背景下的促病毒和抗病毒因子。这项工作突出了体内围绕Dicer-2组装的蛋白质复合物,并提供了一个资源来研究它们对抗病毒RNA干扰及相关途径的贡献。