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Integrative analysis of differentially expressed microRNAs of pulmonary alveolar macrophages from piglets during H1N1 swine influenza A virus infection

机译:甲型H1N1猪流感病毒感染期间仔猪肺泡巨噬细胞差异表达microRNA的整合分析

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H1N1 swine influenza A virus (H1N1 SwIV) is one key subtype of influenza viruses with pandemic potential. MicroRNAs (miRNAs) are endogenous small RNA molecules that regulate gene expression. MiRNAs relevant with H1N1 SwIV have rarely been reported. To understand the biological functions of miRNAs during H1N1 SwIV infection, this study profiled differentially expressed (DE) miRNAs in pulmonary alveolar macrophages from piglets during the H1N1 SwIV infection using a deep sequencing approach, which was validated by quantitative real-time PCR. Compared to control group, 70 and 16 DE miRNAs were respectively identified on post-infection day (PID) 4 and PID 7. 56 DE miRNAs were identified between PID 4 and PID 7. Our results suggest that most host miRNAs are down-regulated to defend the H1N1 SwIV infection during the acute phase of swine influenza whereas their expression levels gradually return to normal during the recovery phase to avoid the occurrence of too severe porcine lung damage. In addition, targets of DE miRNAs were also obtained, for which bioinformatics analyses were performed. Our results would be useful for investigating the functions and regulatory mechanisms of miRNAs in human influenza because pig serves as an excellent animal model to study the pathogenesis of human influenza.
机译:H1N1猪A型流感病毒(H1N1 SwIV)是具有大流行潜力的流感病毒的一种重要亚型。微小RNA(miRNA)是调节基因表达的内源性小RNA分子。与H1N1 SwIV相关的miRNA鲜有报道。为了了解H1N1 SwIV感染期间miRNA的生物学功能,本研究使用深度测序方法对H1N1 SwIV感染期间仔猪肺泡巨噬细胞中的差异表达(DE)miRNA进行了分析,该方法已通过定量实时PCR验证。与对照组相比,在感染后第4天和PID 7分别鉴定出70和16个DE miRNA。在PID 4和PID 7之间鉴定出56个DE miRNA。我们的结果表明,大多数宿主miRNA被下调至在猪流感的急性期可以抵抗H1N1 SwIV感染,而在恢复期它们的表达水平逐渐恢复正常,以避免发生猪肺部严重损伤。此外,还获得了DE miRNA的靶标,并对其进行了生物信息学分析。我们的结果对于研究miRNA在人类流感中的功能和调控机制将是有用的,因为猪是研究人类流感发病机理的优秀动物模型。

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