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An Antiviral Drug Screening Platform with a FRET Biosensor for Measurement of Arenavirus Z Assembly
Cell Structure and Function ( IF 1.5 ) Pub Date : 2020-12-25 , DOI: 10.1247/csf.20030
Tatsuaki Mizutani 1, 2 , Yusuke Ohba 3 , Satoshi Mizuta 4 , Jiro Yasuda 5, 6 , Shuzo Urata 5, 6
Affiliation  

The smallest arenavirus gene product, Z protein, plays critical roles in the virus life cycle. Z is the major driving force of budding and particle production because of a unique property that defines self-assembly. In addition to the roles in budding, Z also participates in the suppression of type I interferon production to evade host antiviral immunity. Therefore, Z and its assembled form are an attractive drug target for arenaviral hemorrhagic fever, such as Lassa fever. Here, we developed a biosensor that enabled the evaluation of the prototype arenavirus, lymphocytic choriomeningitis virus (LCMV), Z assembly using the principle of Förster resonance energy transfer (FRET). This FRET biosensor consisted of three tandem Z that were sandwiched between super-enhanced cyan-emitting fluorescent protein and variant of a yellow-emitting mutant of green fluorescent protein so that Z-Z intermolecular binding via the really interesting new gene finger domain increased the emission ratio. To identify novel anti-arenavirus compounds, the FRET biosensor was employed to screen the PathogenBox400 for inhibitors of Z assembly in a 96-well plate format. The assay performed well, with a Z’-factor of 0.89, and identified two compounds that decreased the emission ratio of the FRET biosensor in a dose-dependent manner. Of them, the compound, 5,6,7,8-tetrahydro-7-(benzyl)-pyrido[4',3':4,5]thieno[2,3-d]pyrimidin-2,4-diamine, was found to significantly inhibit LCMV propagation in infected cells. Thereby, the present study demonstrated that a novel FRET biosensor incorporating Z assembly built on FRET and named Zabton, was a valuable screening tool to identify anti-arenavirus compounds in the context of inhibition of Z assembly.



中文翻译:


具有 FRET 生物传感器的抗病毒药物筛选平台,用于测量沙粒病毒 Z 组装

最小的沙粒病毒基因产物 Z 蛋白在病毒生命周期中起着关键作用。Z 是萌芽和粒子产生的主要驱动力,因为它具有定义自组装的独特属性。除了在出芽中的作用外,Z 还参与抑制 I 型干扰素的产生以逃避宿主抗病毒免疫。因此,Z 及其组装形式是沙粒病毒性出血热(如拉沙热)的有吸引力的药物靶点。在这里,我们开发了一种生物传感器,可以使用 Förster 共振能量转移 (FRET) 原理对原型沙粒病毒、淋巴细胞脉络丛脑膜炎病毒 (LCMV)、Z 组装进行评估。该 FRET 生物传感器由三个串联的 Z 组成,它们夹在超增强的青色发射荧光蛋白和绿色荧光蛋白的黄色发射突变体的变体之间,因此 ZZ 通过真正有趣的新基因指状结构域的分子间结合增加了发射率。为了鉴定新的抗沙粒病毒化合物,FRET 生物传感器被用于在 96 孔板格式中筛选 PathogenBox400 中的 Z 组装抑制剂。该测定表现良好,Z' 因子为 0.89,并鉴定出两种以剂量依赖性方式降低 FRET 生物传感器发射率的化合物。其中,化合物5,6,7,8-四氢-7-(苄基)-吡啶并[4',3':4,5]噻吩并[2,3-d]嘧啶-2,4-二胺,发现显着抑制受感染细胞中的 LCMV 繁殖。从而,

更新日期:2020-12-28
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