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Rapid and Sensitive Detection of Retrovirus Entry by Using a Novel Luciferase-Based Content-Mixing Assay

机译:使用基于荧光素酶的新型内容混合测定法快速灵敏地检测逆转录病毒的进入

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摘要

We describe a novel assay that permits measurement of entry of murine leukemia virus and pseudotypes with greater sensitivity and more rapidly than previously possible. To achieve this, we encapsulated a sensitive reporter enzyme, luciferase, directly into fully infectious, intact viral particles. The enzyme is specifically targeted to the viral lumen, as a C-terminal fusion on the viral envelope protein. Only when the incorporated luciferase is released from the viral lumen and gains access to its substrates is light emitted and readily detected. When cells are perfused with luciferin, quantitative measurements of entry can be made in real time on live cells. Uniquely, the amount of cell-bound virus can be determined in the same assay by addition of detergent to expose the luciferase. We demonstrate that virus carrying a mutation in the fusion peptide binds normally to cells but is unable to infect them and gives no entry signal. Using this assay, we show that inhibitors of endosomal acidification inhibit signal from vesicular stomatitis virus pseudotypes but not murine leukemia virus, consistent with a pH-independent mode of entry for the latter virus. Additionally, the fusion kinetics are rapid, with a half-life of 25 min after a delay of 10 to 15 min. The future use of this assay will permit a detailed examination of the entry mechanism of viruses and provide a convenient platform to discover novel entry inhibitors. The design also permits packaging of potential therapeutic protein cargoes into functional virus particles and their specific delivery to cellular targets.
机译:我们描述了一种新颖的测定方法,它可以比以前的方法更灵敏,更迅速地测量鼠类白血病病毒和假型的进入。为了实现这一目标,我们将敏感的报告酶荧光素酶直接封装在完全具有感染力的完整病毒颗粒中。该酶作为病毒包膜蛋白的C端融合体,专门针对病毒管腔。仅当掺入的萤光素酶从病毒管腔释放并进入其底物时,才发出并容易检测到光。当用荧光素灌注细胞时,可以实时对活细胞进行进入的定量测量。独特地,可以在同一试验中通过添加去污剂以暴露荧光素酶的方法确定细胞结合病毒的量。我们证明在融合肽中携带突变的病毒通常与细胞结合,但无法感染它们,并且没有进入信号。使用该测定法,我们表明内体酸化抑制剂抑制了来自水疱性口炎病毒假型的信号,但不抑制鼠白血病病毒的信号,这与后者病毒的pH依赖性进入模式一致。此外,融合动力学迅速,延迟10至15分钟后,半衰期为25分钟。该测定法的未来使用将允许详细检查病毒的进入机制,并为发现新型进入抑制剂提供便利的平台。该设计还允许将潜在的治疗性蛋白质货物包装成功能性病毒颗粒,并将其特异性递送至细胞靶标。

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