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家蚕质型多角体病毒 NSP8 与 BmAgo2 相互作用抑制 RNA 干扰并增强病毒增殖。

Interaction between Bombyx mori Cytoplasmic Polyhedrosis Virus NSP8 and BmAgo2 Inhibits RNA Interference and Enhances Virus Proliferation.

机构信息

School of Biology and Basic Medical Sciences, Soochow University, Suzhou, Jiangsu, China.

Department of Zoology, Hansraj College, University of Delhi, Delhi, India.

出版信息

Microbiol Spectr. 2023 Aug 17;11(4):e0493822. doi: 10.1128/spectrum.04938-22. Epub 2023 Jun 21.

Abstract

Some insect viruses encode suppressors of RNA interference (RNAi) to counteract the antiviral RNAi pathway. However, it is unknown whether Bombyx mori cytoplasmic polyhedrosis virus (BmCPV) encodes an RNAi suppressor. In this study, the presence of viral small interfering RNA (vsiRNA) in BmN cells infected with BmCPV was confirmed by small RNA sequencing. The Dual-Luciferase reporter test demonstrated that BmCPV infection may prevent firefly luciferase (Luc) gene silencing caused by particular short RNA. It was also established that the inhibition relied on the nonstructural protein NSP8, which suggests that NSP8 was a possible RNAi suppressor. In cultured BmN cells, the expressions of viral structural protein 1 () and NSP9 were triggered by overexpression of , suggesting that BmCPV proliferation was enhanced by NSP8. A pulldown assay was conducted with BmCPV genomic double-stranded RNA (dsRNA) labeled with biotin. The mass spectral detection of NSP8 in the pulldown complex suggests that NSP8 is capable of direct binding to BmCPV genomic dsRNA. The colocalization of NSP8 and Argonaute 2 (BmAgo2) was detected by an immunofluorescence assay, leading to the hypothesis that NSP8 interacts with BmAgo2. Coimmunoprecipitation further supported the present investigation. Moreover, vasa intronic protein, a component of RNA-induced silencing complex (RISC), could be detected in the coprecipitation complex of NSP8 by mass spectrum analysis. NSP8 and the mRNA decapping protein (Dcp2) were also discovered to colocalize to processing bodies (P bodies) for RNAi-mediated gene silencing in Saccharomyces cerevisiae. These findings revealed that by interacting with BmAgo2 and suppressing RNAi, NSP8 promoted BmCPV growth. It has been reported that the RNAi pathway is inhibited by binding RNAi suppressors encoded by some insect-specific viruses belonging to , , or to dsRNAs to protect dsRNAs from being cut by Dicer-2. However, it is unknown whether BmCPV, belonging to , encodes an RNAi suppressor. In this study, we found that nonstructural protein NSP8 encoded by BmCPV inhibits small interfering RNA (siRNA)-induced RNAi and that NSP8, as an RNAi suppressor, can bind to viral dsRNAs and interact with BmAgo2. Moreover, vasa intronic protein, a component of RISC, was found to interact with NSP8. Heterologously expressed NSP8 and Dcp2 were colocalized to P bodies in yeast. These results indicated that NSP8 promoted BmCPV proliferation by binding itself to BmCPV genomic dsRNAs and interacting with BmAgo2 through suppression of siRNA-induced RNAi. Our findings deepen our understanding of the game between BmCPV and silkworm in regulating viral infection.

摘要

一些昆虫病毒编码 RNA 干扰(RNAi)抑制剂,以对抗抗病毒 RNAi 途径。然而,目前尚不清楚家蚕细胞质多角体病毒(BmCPV)是否编码 RNAi 抑制剂。在本研究中,通过小 RNA 测序证实了感染 BmCPV 的 BmN 细胞中存在病毒小干扰 RNA(vsiRNA)。双荧光素酶报告试验表明,BmCPV 感染可能会阻止特定短 RNA 引起的萤火虫荧光素(Luc)基因沉默。还确定了抑制作用依赖于非结构蛋白 NSP8,这表明 NSP8 可能是一种 RNAi 抑制剂。在培养的 BmN 细胞中,通过过表达 ,诱导病毒结构蛋白 1()和 NSP9 的表达,表明 NSP8 增强了 BmCPV 的增殖。用生物素标记的 BmCPV 基因组双链 RNA(dsRNA)进行下拉测定。在下拉复合物中检测到 NSP8 的质谱检测表明,NSP8 能够直接结合 BmCPV 基因组 dsRNA。通过免疫荧光测定检测到 NSP8 和 Argonaute 2(BmAgo2)的共定位,导致假设 NSP8 与 BmAgo2 相互作用。共免疫沉淀进一步支持了本研究。此外,通过质谱分析,在 NSP8 的共沉淀复合物中可以检测到 RNA 诱导沉默复合物(RISC)的组成部分 vasa 内含子蛋白。还发现 NSP8 和脱帽酶蛋白(Dcp2)在酿酒酵母的处理体(P 体)中也共定位,用于 RNAi 介导的基因沉默。这些发现表明,NSP8 通过与 BmAgo2 相互作用和抑制 RNAi,促进 BmCPV 的生长。据报道,属于 、 或 的一些昆虫特异性病毒编码的 RNAi 途径被抑制,通过与 dsRNA 结合来保护 dsRNA 免受 Dicer-2 的切割。然而,目前尚不清楚属于 的 BmCPV 是否编码 RNAi 抑制剂。在本研究中,我们发现 BmCPV 编码的非结构蛋白 NSP8 抑制小干扰 RNA(siRNA)诱导的 RNAi,并且 NSP8 作为一种 RNAi 抑制剂,可以与病毒 dsRNA 结合,并与 BmAgo2 相互作用。此外,还发现 RNA 诱导沉默复合物(RISC)的组成部分 vasa 内含子蛋白与 NSP8 相互作用。异源表达的 NSP8 和 Dcp2 在酵母中定位于 P 体。这些结果表明,NSP8 通过自身与 BmCPV 基因组 dsRNA 结合,并通过抑制 siRNA 诱导的 RNAi 与 BmAgo2 相互作用,促进 BmCPV 的增殖。我们的研究结果加深了我们对 BmCPV 与家蚕在调节病毒感染方面的相互作用的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b33/10434170/37c2b302b1d4/spectrum.04938-22-f001.jpg

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