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Effective inhibition of mRNA accumulation and protein expression of H5N1 avian influenza virus NS1 gene in vitro by small interfering RNAs

机译:小干扰RNA有效抑制H5N1禽流感病毒NS1基因mRNA的积累和蛋白表达

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摘要

Avian influenza has emerged as a devastating disease and may cross species barrier and adapt to a new host, causing enormous economic loss and great public health threats, and non-structural protein 1 (NS1) is a multifunctional non-structural protein of avian influenza virus (AIV) that counters cellular antiviral activities and is a virulence factor. RNA interference (RNAi) provides a powerful promising approach to inhibit viral infection specifically. To explore the possibility of using RNAi as a strategy against AIV infection, after the fusion protein expression plasmids pNS1-enhanced green fluorescent protein (EGFP), which contain the EGFP reporter gene and AIV NS1 as silencing target, were constructed and NS1-EGFP fusion protein expressing HEK293 cell lines were established, four small interfering RNAs (siRNAs) targeting NS1 gene were designed, synthesized, and used to transfect the stable cell lines. Flow cytometry, real-time quantitative polymerase chain reaction, and Western blot were performed to assess the expression level of NS1. The results suggested that sequence-dependent specific siRNAs effectively inhibited mRNA accumulation and protein expression of AIV NS1 in vitro. These findings provide useful information for the development of RNAi-based prophylaxis and therapy for AIV infection.
机译:禽流感已成为毁灭性疾病,可能会越过物种壁垒并适应新的宿主,造成巨大的经济损失和巨大的公共卫生威胁,非结构蛋白1(NS1)是禽流感病毒的多功能非结构蛋白(AIV)对抗细胞的抗病毒活性,是一种致病因子。 RNA干扰(RNAi)提供了强大的有前途的方法来特异性抑制病毒感染。为了探索将RNAi用作抗AIV感染策略的可能性,构建了包含EGFP报告基因和AIV NS1作为沉默靶点的融合蛋白表达质粒pNS1增强型绿色荧光蛋白(EGFP),并进行了NS1-EGFP融合建立了可表达蛋白质的HEK293细胞系,设计,合成了四个靶向NS1基因的小干扰RNA(siRNA),并用于转染稳定的细胞系。流式细胞仪,实时定量聚合酶链反应和蛋白质印迹进行评估NS1的表达水平。结果表明,序列依赖性特异性siRNAs在体外可有效抑制AIV NS1的mRNA积累和蛋白表达。这些发现为开发基于RNAi的预防和治疗AIV感染提供了有用的信息。

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  • 来源
    《Folia Microbiologica》 |2013年第4期|335-342|共8页
  • 作者单位

    College of Agriculture Hainan Key Laboratory of Tropical Animal Reproduction Breeding and Epidemic Disease Research Animal Genetic Engineering Key Laboratory of Haikou Hainan University">(1);

    College of Agriculture Hainan Key Laboratory of Tropical Animal Reproduction Breeding and Epidemic Disease Research Animal Genetic Engineering Key Laboratory of Haikou Hainan University">(1);

    College of Agriculture Hainan Key Laboratory of Tropical Animal Reproduction Breeding and Epidemic Disease Research Animal Genetic Engineering Key Laboratory of Haikou Hainan University">(1);

    College of Agriculture Hainan Key Laboratory of Tropical Animal Reproduction Breeding and Epidemic Disease Research Animal Genetic Engineering Key Laboratory of Haikou Hainan University">(1);

    Key Laboratory of Animal Ecology and Conservation Biology National Research Center for Wildlife Born Diseases Institute of Zoology Chinese Academy of Sciences">(2);

    College of Life Sciences Huazhong Normal University">(3);

    College of Agriculture Hainan Key Laboratory of Tropical Animal Reproduction Breeding and Epidemic Disease Research Animal Genetic Engineering Key Laboratory of Haikou Hainan University">(1);

    College of Agriculture Hainan Key Laboratory of Tropical Animal Reproduction Breeding and Epidemic Disease Research Animal Genetic Engineering Key Laboratory of Haikou Hainan University">(1);

    College of Agriculture Hainan Key Laboratory of Tropical Animal Reproduction Breeding and Epidemic Disease Research Animal Genetic Engineering Key Laboratory of Haikou Hainan University">(1);

    College of Life Sciences Huazhong Normal University">(3);

    College of Life Sciences Huazhong Normal University">(3);

    Key Laboratory of Animal Ecology and Conservation Biology National Research Center for Wildlife Born Diseases Institute of Zoology Chinese Academy of Sciences">(2);

    College of Agriculture Hainan Key Laboratory of Tropical Animal Reproduction Breeding and Epidemic Disease Research Animal Genetic Engineering Key Laboratory of Haikou Hainan University">(1);

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