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EBV 裂解复制的报告系统:青蒿琥酯这一广谱抗疱疹病毒药物的抗 EBV 活性。

A reporter system for Epstein-Barr virus (EBV) lytic replication: anti-EBV activity of the broad anti-herpesviral drug artesunate.

机构信息

Institute for Clinical and Molecular Virology, University of Erlangen-Nuremberg, Schlossgarten 4, 91054 Erlangen, Germany.

出版信息

J Virol Methods. 2011 May;173(2):334-9. doi: 10.1016/j.jviromet.2011.03.005. Epub 2011 Mar 17.

Abstract

Epstein-Barr virus (EBV) is associated with severe human diseases. Therapies with conventional anti-herpesviral drugs are mostly ineffective so that novel drugs are urgently needed. As cell culture-based evaluation systems are required, a GFP (green fluorescent protein) reporter system was generated, which was conceived for an easy quantitation of lytic EBV replication and the analysis of EBV drug sensitivity. A reporter construct was generated on the basis of an EBV plasmid mini-replicon which enabled an episomal maintenance and selection of stably transfected Raji and 293T cell clones. Controlled by the viral lytic origin of DNA replication (oriLyt), this reporter construct could be activated through experimental EBV infection or through chemically stimulated reactivation from EBV latency. Using this system, the sensitivity of EBV to the broad-spectrum anti-herpesviral drug artesunate could be demonstrated: (i) artesunate inhibits EBV in the low micromolar range, (ii) two different strains of EBV are equally artesunate-sensitive, (iii) inhibition is detectable similarly in EBV-infected epithelial cells or lymphocytes, and (iv) the mode of antiviral action is based on a block of viral immediate early protein synthesis. The data demonstrate the usefulness of this reporter system for the quantitation of EBV replication and for determining EBV drug sensitivity.

摘要

EB 病毒(EBV)与严重的人类疾病有关。使用传统的抗疱疹病毒药物治疗大多无效,因此急需新型药物。由于需要基于细胞培养的评估系统,因此生成了 GFP(绿色荧光蛋白)报告系统,该系统旨在轻松定量裂解 EBV 复制并分析 EBV 药物敏感性。该报告构建体是基于 EBV 质粒 mini 复制子生成的,该复制子能够实现 EBV episomal 的维持和稳定转染的 Raji 和 293T 细胞克隆的选择。受病毒裂解性 DNA 复制起点(oriLyt)的控制,该报告构建体可以通过实验性 EBV 感染或通过化学刺激从 EBV 潜伏期重新激活而被激活。使用该系统,可以证明 EBV 对广谱抗疱疹病毒药物青蒿琥酯的敏感性:(i)青蒿琥酯在低微摩尔范围内抑制 EBV,(ii)两种不同的 EBV 株对青蒿琥酯同样敏感,(iii)在 EBV 感染的上皮细胞或淋巴细胞中同样可以检测到抑制作用,以及(iv)抗病毒作用的模式基于病毒即刻早期蛋白合成的阻断。这些数据证明了该报告系统在定量 EBV 复制和确定 EBV 药物敏感性方面的有用性。

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