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Development of a reverse genetics system to generate a recombinant Ebola virus Makona expressing a green fluorescent protein

机译:开发产生绿色荧光蛋白的重组埃博拉病毒Makona的反向遗传学系统

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Previous studies have demonstrated the potential application of reverse genetics technology in studying a broad range of aspects of viral biology, including gene regulation, protein function, cell entry, and pathogenesis. Here, we describe a highly efficient reverse genetics system used to generate recombinant Ebola virus (EBOV) based on a recent isolate from a human patient infected during the 2014-2015 outbreak in Western Africa. We also rescued a recombinant EBOV expressing a fluorescent reporter protein from a cleaved VP40 protein fusion. Using this virus and an inexpensive method to quantitate the expression of the foreign gene, we demonstrate its potential usefulness as a tool for screening antiviral compounds and measuring neutralizing antibodies. Published by Elsevier Inc.
机译:先前的研究表明,逆向遗传学技术在研究病毒生物学的广泛领域方面具有潜在的应用前景,包括基因调控,蛋白质功能,细胞进入和发病机理。在这里,我们描述了一种高效的逆向遗传学系统,该系统用于根据2014年至2015年西非疫情感染的一名人类患者的最新分离株,产生重组埃博拉病毒(EBOV)。我们还从裂解的VP40蛋白融合物中拯救了表达荧光报告蛋白的重组EBOV。使用这种病毒和一种廉价的方法来量化外源基因的表达,我们证明了其作为筛选抗病毒化合物和测量中和抗体的工具的潜在有用性。由Elsevier Inc.发布

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