Lnc557 promotes Bombyx mori nucleopolyhedrovirus replication by interacting with BmELAVL1 to enhance its stability and expression

IF 4.2 1区 农林科学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Pesticide Biochemistry and Physiology Pub Date : 2024-07-25 DOI:10.1016/j.pestbp.2024.106046
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Abstract

Bombyx mori nucleopolyhedrovirus (BmNPV) is a major pathogen that threatens the growth and sustainability of the sericultural industry. Currently, accumulated studies showed that long non-coding RNAs (lncRNAs) play important roles in the genesis and progression of various viruses and host-pathogens interactions. However, the functions and regulatory mechanisms of lncRNAs in insect-virus interaction are still limited. In this study, transcriptome sequencing and ribosome profiling sequencing (Ribo-seq) were performed in the BmNPV-infected midgut and control tissue, and a total of 9 differentially expressed (DE) lncRNAs and 27 small ORFs (sORFs) with micropeptide coding potential were identified. Among them, lncRNA XR_001139971.3 (lnc557) is verified to be significantly up-regulated upon BmNPV infection and may have the potential to encode a small peptide (ORF-674). The subcellular localization experiment showed that lnc557 was expressed in the cytoplasm. Overexpression of lnc557 promotes BmNPV replication and vice versa. By combining RNA pull-down, mass spectrometry, protein truncation and RNA immunoprecipitation (RIP) assays, we confirmed that lnc557 can bind to the RRM-5 domain of BmELAVL1 protein. Subsequently, we found that lnc557 could promote the expression of BmELAVL1 by enhancing the stability of BmELAVL1. Further, enhancing the expression of BmELAVL1 can promote the proliferation of BmNPV, while knockdown shows the opposite effect. Our data suggest that lnc557-mediated BmELAVL1 expression enhancement could play a positive role in BmNPV replication, which will provide a new insight into the molecular mechanism of interaction between Bombyx mori and virus.

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Lnc557 通过与 BmELAVL1 相互作用来提高其稳定性和表达量,从而促进沙蚕核多角体病毒的复制
核多角体病毒(BmNPV)是威胁养蚕业发展和可持续性的主要病原体。目前积累的研究表明,长非编码 RNA(lncRNA)在各种病毒的发生、发展以及宿主与病原体的相互作用中发挥着重要作用。然而,lncRNAs 在昆虫与病毒相互作用中的功能和调控机制仍然有限。本研究对感染BmNPV的中肠组织和对照组织进行了转录组测序和核糖体图谱测序(Ribo-seq),共鉴定出9个差异表达(DE)的lncRNA和27个具有微肽编码潜力的小ORFs(sORFs)。其中,lncRNA XR_001139971.3(lnc557)被证实在BmNPV感染时显著上调,并可能编码一种小肽(ORF-674)。亚细胞定位实验表明,lnc557 在细胞质中表达。过表达lnc557可促进BmNPV的复制,反之亦然。通过结合RNA牵引、质谱分析、蛋白截断和RNA免疫沉淀(RIP)实验,我们证实了lnc557能与BmELAVL1蛋白的RRM-5结构域结合。随后,我们发现lnc557可以通过增强BmELAVL1的稳定性来促进其表达。此外,提高 BmELAVL1 的表达可促进 BmNPV 的增殖,而敲除则显示出相反的效果。我们的数据表明,lnc557介导的BmELAVL1表达增强可在BmNPV复制过程中发挥积极作用,这将为了解病毒与BmNPV之间相互作用的分子机制提供新的视角。
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来源期刊
CiteScore
7.00
自引率
8.50%
发文量
238
审稿时长
4.2 months
期刊介绍: Pesticide Biochemistry and Physiology publishes original scientific articles pertaining to the mode of action of plant protection agents such as insecticides, fungicides, herbicides, and similar compounds, including nonlethal pest control agents, biosynthesis of pheromones, hormones, and plant resistance agents. Manuscripts may include a biochemical, physiological, or molecular study for an understanding of comparative toxicology or selective toxicity of both target and nontarget organisms. Particular interest will be given to studies on the molecular biology of pest control, toxicology, and pesticide resistance. Research Areas Emphasized Include the Biochemistry and Physiology of: • Comparative toxicity • Mode of action • Pathophysiology • Plant growth regulators • Resistance • Other effects of pesticides on both parasites and hosts.
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