Institute of Preventive Veterinary Medicine, Sichuan Agricultural University, Chengdu, China.
ABLife BioBigData Institute, Wuhan, China.
Front Immunol. 2022 Jun 9;13:839677. doi: 10.3389/fimmu.2022.839677. eCollection 2022.
Host translation is generally modulated by viral infection, including (DHAV) infection. Previously, we reported that cellular protein synthesis in a cell model of duck embryo fibroblasts is significantly inhibited by DHAV infection but not viral proteins, suggesting that an important viral-host interaction occurs at the translational level. In this study, we aim to further understand the impact of DHAV virulence on cellular N6-methyladenosine (m6A) modification, which is essential to a wide variety of RNA biological processes, such as mRNA stabilization and translation. Using m6A antibody-based immunoprecipitation, m6A-seq, and LC-MS/MS, we observed that m6A-modified mRNA exists in both virulent and attenuated DHAV-infected duckling livers. Importantly, m6A levels in mRNA were much higher in attenuated DHAV-infected livers compared with virulent DHAV-infected livers, suggesting virulence-dependent regulation of m6A modification. Analysis of modification motifs indicated that GAAGAAG is the most enriched motif. Combined m6A-seq and RNA-seq data analysis indicated a generally positive correlation between m6A and mRNA expression levels in DHAV-infected duckling livers. GO analysis of genes with decreased or increased m6A levels showed that these genes were enriched in various terms, including oxidation-reduction processes and antiviral immune responses. Collectively, our work reveals DHAV virulence-dependent coordination between m6A modification and mRNA expression in duckling livers.
宿主翻译通常受病毒感染调节,包括(DHAV)感染。此前,我们报道了在鸭胚成纤维细胞的细胞模型中,细胞蛋白合成受到 DHAV 感染的显著抑制,但不受病毒蛋白的影响,这表明在翻译水平上发生了重要的病毒-宿主相互作用。在这项研究中,我们旨在进一步了解 DHAV 毒力对细胞 N6-甲基腺苷(m6A)修饰的影响,m6A 修饰对于各种 RNA 生物学过程至关重要,如 mRNA 稳定和翻译。使用 m6A 抗体免疫沉淀、m6A-seq 和 LC-MS/MS,我们观察到 m6A 修饰的 mRNA 存在于毒力和减毒 DHAV 感染的鸭肝脏中。重要的是,与毒力 DHAV 感染的肝脏相比,减毒 DHAV 感染的肝脏中 m6A 修饰的 mRNA 水平要高得多,这表明 m6A 修饰受毒力依赖性调节。修饰基序分析表明,GAAGAAG 是最丰富的基序。m6A-seq 和 RNA-seq 数据分析的结合表明,在 DHAV 感染的鸭肝脏中,m6A 与 mRNA 表达水平之间通常呈正相关。m6A 水平降低或升高的基因的 GO 分析表明,这些基因富集在各种术语中,包括氧化还原过程和抗病毒免疫反应。总之,我们的工作揭示了 DHAV 毒力在鸭肝脏中 m6A 修饰和 mRNA 表达之间的协调作用。