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Effects of gE/gI deletions on the miRNA expression of PRV-infected PK-15 cells

机译:GE / GI缺失对PRV感染PK-15细胞miRNA表达的影响

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Pseudorabies virus (PRV) belongs to the Alphaherpesvirinae subfamily of Herpesviridae. PRV-induced pseudorabies is a highly contagious disease that has caused huge economic losses to the global swine industry. The PRV gE/gI gene deletion vaccine strain (Fa Delta gE/gI strain) constructed from the PRV Fa wild-type strain was shown to have a protective effect against infection. However, the interaction between PRV gE/gI genes and host miRNA needs further exploration, and little is known about the regulatory mechanisms of non-coding RNAs during PRV infection. miRNAs play a key regulatory role in viral infection and immune responses, so we analyzed the differential expression of miRNAs induced by the PRV Fa Delta gE/gI strain and Fa wild-type strain in the PK15 cell line. High-throughput sequencing reads were aligned to known Sus scrofa pre-miRNAs in the miRBase database. Target genes of differentially expressed miRNAs were predicted using the miRGen 3.0 database, then filtered miRNA target genes were subjected to Gene Ontology (GO) analysis and Search Tool for the Retrieval of Interacting Genes/ Proteins (STRING) analysis. Stem-loop quantitative real-time PCR was performed to confirm the accuracy of high-throughput sequencing data. In total, 387, 472, and 490 annotated and novel mature miRNAs were identified from PRV Fa Delta gE/gI strain-infected, Fa wild-type strain-infected, and non-infected PK-15 cells, respectively. Five PRV-encoded miRNAs were also identified. GO analysis showed that target genes of differentially expressed miRNAs in PRV Fa Delta gE/gI strain-infected and Fa wild-type strain-infected PK-15 cells were mainly involved in biological regulation and metabolic processes. STRING analysis showed that immune-related target genes of differentially expressed miRNAs in the Toll-like receptor signaling pathway, B cell receptor signaling pathway, T cell receptor signaling pathway, nuclear factor-kappa B signaling pathway, and transforming growth factor-beta signaling pathway were interrelated. This is the first report of the small RNA transcriptome in PRV mutant wild-type strain-infected and Fa Delta gE/gI strain-infected porcine cell lines. Our findings will contribute to the prevention and treatment of PRV mutant strains.
机译:伪毒性病毒(PRV)属于Herpesviridae的Alphaherpesvirinae亚家族。 PRV引起的伪论是一种高度传染性的疾病,导致了全球猪业的巨大经济损失。从PRV FA野生型菌株构成的PRVGE / GI基因缺失疫苗菌株(FA delta ge / gi菌株)对感染具有保护作用。然而,PRVGe / gi基因与宿主miRNA之间的相互作用需要进一步的探索,并且关于在PRV感染期间非编码RNA的调节机制很少。 MiRNA在病毒感染和免疫应答中发挥关键调节作用,因此我们分析了PK15细胞系PK15细胞系中PRV FA Delta Ge / Gi菌株和FA野生型应变诱导的miRNA的差异表达。高吞吐量测序读取与MiRBase数据库中的已知SUS Scrofa Pre-MiRNA对齐。使用Mirgen 3.0数据库预测差异表达miRNA的靶基因,然后对过滤的miRNA靶基因进行基因本体(GO)分析和搜索工具,用于检索相互作用基因/蛋白(串)分析。进行茎环定量实时PCR以确认高通量测序数据的准确性。总共387,472和490个注释和新的成熟miRNA分别从PRV Fa DeltaGe / Gi菌株感染,FA野生型应变感染和未感染的PK-15细胞中鉴定出来。还确定了五种PRV编码的miRNA。 GO分析表明,PRV FA Delta GE / GI菌株和FA野生型菌株PK-15细胞中差异表达miRNA的靶基因主要涉及生物调节和代谢过程。字符串分析表明,差异表达的差异表达MIRNA的免疫相关靶基因在Toll样受体信号通路中,B细胞受体信号传导途径,T细胞受体信号通路,核因子-Kappa信令途径和转化生长因子 - β信号通路。相互关联。这是PRV突变体野生型菌株和FA DELTA GE / GI菌株感染猪细胞系中的小RNA转录组的第一报告。我们的研究结果将有助于预防和治疗PRV突变菌株。

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