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首页> 外文期刊>BMC Biotechnology >Combinatorial targeting of 2 different steps in adenoviral DNA replication by herpes simplex virus thymidine kinase and artificial microRNA expression for the inhibition of virus multiplication in the presence of ganciclovir
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Combinatorial targeting of 2 different steps in adenoviral DNA replication by herpes simplex virus thymidine kinase and artificial microRNA expression for the inhibition of virus multiplication in the presence of ganciclovir

机译:通过单纯疱疹病毒胸苷激酶和人工microRNA表达的组合靶向腺病毒DNA复制中的2个不同步骤,可在更昔洛韦存在时抑制病毒增殖

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Background Human adenoviruses are a frequent threat to immunocompromised patients, and disseminated disease is associated with severe morbidity and mortality. Current drugs are not capable of preventing all fatalities, thus indicating the need for alternative treatment strategies. Adenoviruses can be rendered susceptible to antiherpetic prodrugs such as ganciclovir (GCV), upon expression of the herpes simplex virus thymidine kinase (HSV-TK) gene in adenovirus-infected cells. Furthermore, adenoviruses are amenable to post-transcriptional gene silencing via small interfering RNAs ( siRNAs ) or artificial micro RNAs (amiRNAs). Results In this study, we combined these 2 approaches by constructing a combinatorial gene expression cassette that comprises the HSV-TK gene and multiple copies of an amiRNA directed against the mRNA encoding the adenoviral preterminal protein (pTP). HSV-TK gene expression was controlled by the adenoviral E4 promoter, which is activated in the presence of the adenoviral E1 gene products (i.e., when adenovirus is present in the cell). When inserted into a replication-deficient (E1-, E3-deleted) adenoviral vector, this cassette effectively inhibited the replication of wild-type adenovirus in vitro . The reduction rate mediated by the combinatorial approach was higher compared to that achieved by either of the 2 approaches alone, and these obvious additive effects became most pronounced when the GCV concentration was low. Conclusions The concept presented here has the potential to aid in the inhibition of wild-type adenovirus replication. Furthermore, the combinatorial expression cassette may constitute a safeguard to potentially control unintended replication of adenoviral vectors and to prevent immune responses provoked by them.
机译:背景技术人腺病毒是免疫受损患者的常见威胁,并且传播的疾病与严重的发病率和死亡率有关。当前的药物不能防止所有死亡,因此表明需要替代治疗策略。在单纯疱疹病毒胸苷激酶(HSV-TK)基因在腺病毒感染的细胞中表达后,可使腺病毒对更昔洛韦前药如更昔洛韦(GCV)敏感。此外,腺病毒可通过小干扰RNA(siRNA)或人工微RNA(amiRNA)进行转录后基因沉默。结果在这项研究中,我们通过构建包含HSV-TK基因和针对编码腺病毒前末端蛋白(pTP)的mRNA的amiRNA的多个副本的组合基因表达盒,结合了这两种方法。 HSV-TK基因的表达受腺病毒E4启动子控制,该启动子在腺病毒E1基因产物存在时(即细胞中存在腺病毒时)被激活。当插入到复制缺陷型(缺失E1,E3的)腺病毒载体中时,此盒可在体外有效抑制野生型腺病毒的复制。与单独使用两种方法相比,通过组合方法介导的还原率更高,并且当GCV浓度低时,这些明显的加性效应变得最为明显。结论这里提出的概念具有潜在的抑制野生型腺病毒复制的潜力。此外,组合表达盒可以构成保护措施,以潜在地控制腺病毒载体的意外复制并防止它们引起的免疫应答。

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