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Viral RNA Intermediates as Targets for Detection and Discovery of Novel and Emerging Mosquito-Borne Viruses

机译:病毒RNA中间体作为检测和发现新型和新兴的蚊媒病毒的目标

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摘要

Mosquito-borne viruses encompass a range of virus families, comprising a number of significant human pathogens (e.g., dengue viruses, West Nile virus, Chikungunya virus). Virulent strains of these viruses are continually evolving and expanding their geographic range, thus rapid and sensitive screening assays are required to detect emerging viruses and monitor their prevalence and spread in mosquito populations. Double-stranded RNA (dsRNA) is produced during the replication of many of these viruses as either an intermediate in RNA replication (e.g., flaviviruses, togaviruses) or the double-stranded RNA genome (e.g., reoviruses). Detection and discovery of novel viruses from field and clinical samples usually relies on recognition of antigens or nucleotide sequences conserved within a virus genus or family. However, due to the wide antigenic and genetic variation within and between viral families, many novel or divergent species can be overlooked by these approaches. We have developed two monoclonal antibodies (mAbs) which show co-localised staining with proteins involved in viral RNA replication in immunofluorescence assay (IFA), suggesting specific reactivity to viral dsRNA. By assessing binding against a panel of synthetic dsRNA molecules, we have shown that these mAbs recognise dsRNA greater than 30 base pairs in length in a sequence-independent manner. IFA and enzyme-linked immunosorbent assay (ELISA) were employed to demonstrate detection of a panel of RNA viruses from several families, in a range of cell types. These mAbs, termed monoclonal antibodies to viral RNA intermediates in cells (MAVRIC), have now been incorporated into a high-throughput, economical ELISA-based screening system for the detection and discovery of viruses from mosquito populations. Our results have demonstrated that this simple system enables the efficient detection and isolation of a range of known and novel viruses in cells inoculated with field-caught mosquito samples, and represents a rapid, sequence-independent, and cost-effective approach to virus discovery.
机译:蚊媒病毒涵盖一系列病毒家族,包括许多重要的人类病原体(例如登革热病毒,西尼罗河病毒,基孔肯雅病毒)。这些病毒的毒株在不断发展并扩大其地理范围,因此需要快速而灵敏的筛选测定法来检测新兴病毒并监测其流行程度并在蚊子种群中传播。双链RNA(dsRNA)是在许多这些病毒的复制过程中产生的,既可以作为RNA复制的中间体(例如黄病毒,披膜病毒),也可以作为双链RNA基因组(例如呼肠孤病毒)。从野外和临床样本中检测和发现新型病毒通常取决于识别病毒属或家族中保守的抗原或核苷酸序列。但是,由于病毒家族内部和之间的广泛抗原和遗传变异,这些方法可能会忽略许多新颖的或趋异的物种。我们已经开发出两种单克隆抗体(mAb),与免疫荧光测定(IFA)中涉及病毒RNA复制的蛋白质共染色,表明与病毒dsRNA有特异性反应。通过评估与一组合成dsRNA分子的结合,我们显示这些mAb以序列独立的方式识别长度大于30个碱基对的dsRNA。使用IFA和酶联免疫吸附测定(ELISA)来证明检测了一系列细胞类型中来自多个家族的一组RNA病毒。这些被称为针对细胞中病毒RNA中间产物的单克隆抗体(MAVRIC)的单克隆抗体现已被掺入一种高通量,经济的基于ELISA的筛选系统中,用于检测和发现蚊子种群中的病毒。我们的结果表明,这种简单的系统能够有效地检测和分离接种野外捕获的蚊子样本的细胞中的一系列已知和新型病毒,并且代表了一种快速,独立于序列且具有成本效益的病毒发现方法。

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