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首页> 外文期刊>Genetics and Molecular Research >Drosha, DGCR8, and Dicer mRNAs are down-regulated in human cells infected with dengue virus 4, and play a role in viral pathogenesis
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Drosha, DGCR8, and Dicer mRNAs are down-regulated in human cells infected with dengue virus 4, and play a role in viral pathogenesis

机译:Drosha,DGCR8和Dicer mRNA在感染登革热病毒4的人类细胞中下调,并在病毒发病机理中起作用

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Dengue virus (DENV) and its four serotypes (DENV1-4) belong to the Flavivirus genus of the Flaviviridae family. DENV infection is a life-threatening disease, which results in up to 20,000 deaths each year. Viruses have been shown to encode trans-regulatory small RNAs, or microRNAs (miRNAs), which bind to messenger RNA and negatively regulate host or viral gene expression. During DENV infections, miRNAs interact with proteins in the RNAi pathway, and are processed by ribonucleases such as Dicer and Drosha. This study aims to investigate Drosha, DGCR8, and Dicer expression levels in human A-549 cells following DENV4 infection. DENV4 infected A-549 cells were collected daily for 5 days, and RNA was extracted to quantify viral load. Gene expression of Drosha, Dicer, and DGCR8 was determined using quantitative PCR (RT-qPCR). We found that DENV4 infection exhibited the highest viral load 3 days post-infection. Dicer, Drosha, and DGCR8 showed reduced expression following DENV4 infection as compared with negative controls. In addition, we hypothesize that reduced expression of DGCR8 may not only be related to miRNA biogenesis, but also other small RNAs. This study may change our understanding regarding the relationship between host cells and the dengue virus.
机译:登革热病毒(DENV)及其四种血清型(DENV1-4)属于黄病毒科的黄病毒属。 DENV感染是一种威胁生命的疾病,每年导致多达20,000人死亡。已显示病毒编码反式调控的小RNA或microRNA(miRNA),它们与信使RNA结合并负面调节宿主或病毒基因的表达。在DENV感染期间,miRNA与RNAi途径中的蛋白质相互作用,并被诸如Dicer和Drosha的核糖核酸酶加工。这项研究旨在调查DENV4感染后人A-549细胞中的Drosha,DGCR8和Dicer表达水平。每天收集受DENV4感染的A-549细胞5天,并提取RNA定量病毒载量。使用定量PCR(RT-qPCR)确定Drosha,Dicer和DGCR8的基因表达。我们发现,DENV4感染在感染后3天表现出最高的病毒载量。与阴性对照相比,Dicer,Drosha和DGCR8在DENV4感染后显示出降低的表达。此外,我们假设DGCR8的表达减少可能不仅与miRNA生物发生有关,而且还与其他小RNA有关。这项研究可能会改变我们对宿主细胞与登革热病毒之间关系的理解。

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