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Establishment of an Inducible HBV Stable Cell Line that Expresses cccDNA-dependent Epitope-tagged HBeAg for Screening of cccDNA Modulators

机译:表达cccDNA依赖的表位标记的HBeAg的诱导型HBV稳定细胞系的建立用于筛选cccDNA调节剂

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摘要

Hepatitis B virus (HBV) covalently closed circular (ccc) DNA is essential to the virus life cycle, its elimination during chronic infection is considered critical to a durable therapy but has not been achieved by current antivirals. Despite being essential, cccDNA has not been the major target of high throughput screening (HTS), largely because of the limitations of current HBV tissue culture systems, including the impracticality of detecting cccDNA itself. In response to this need, we have previously developed a proof-of-concept HepDE19 cell line in which the production of wildtype e antigen (HBeAg) is dependent upon cccDNA. However, the existing assay system is not ideal for HTS because the HBeAg ELISA cross reacts with a viral HBeAg homologue, which is the core antigen (HBcAg) expressed largely in a cccDNA-independent fashion in HepDE19 cells. To further improve the assay specificity, we report herein a “second-generation” cccDNA reporter cell line, termed HepBHAe82. In the similar principle of HepDE19 line, an in-frame HA epitope tag was introduced into the precore domain of HBeAg open reading frame in the transgene of HepBHAe82 cells without disrupting any cis-element critical for HBV replication and HBeAg secretion. A chemiluminescence ELISA assay (CLIA) for the detection of HA-tagged HBeAg with HA antibody serving as capture antibody and HBeAb serving as detection antibody has been developed to eliminate the confounding signal from HBcAg. The miniaturized HepBHAe82 cell based assay system exhibits high level of cccDNA-dependent HA-HBeAg production and high specific readout signals with low background. We have also established a HepHA-HBe4 cell line expressing transgene-dependent HA-HBeAg as a counter screen to identify HBeAg inhibitors. The HepBHAe82 system is amenable to antiviral HTS development, and can be used to identify host factors that regulate cccDNA metabolism and transcription.
机译:乙型肝炎病毒(HBV)共价闭合环状(ccc)DNA对病毒生命周期至关重要,在慢性感染过程中消除其被认为对持久治疗至关重要,但目前的抗病毒药物尚未实现。尽管至关重要,但cccDNA并不是高通量筛选(HTS)的主要目标,这在很大程度上是由于当前HBV组织培养系统的局限性,包括检测cccDNA本身的不实用性。为响应这一需求,我们先前已经开发了概念证明的HepDE19细胞系,其中野生型e抗原(HBeAg)的产生取决于cccDNA。但是,现有的检测系统对于HTS并不理想,因为HBeAg ELISA与病毒HBeAg同源物发生交叉反应,后者是在HepDE19细胞中以cccDNA非依赖性方式大量表达的核心抗原(HBcAg)。为了进一步提高测定的特异性,我们在此报告了称为“ HepBHAe82”的“第二代” cccDNA报告基因细胞系。按照HepDE19系的相似原理,将框内HA表位标签引入HepBHAe82细胞转基因中HBeAg开放阅读框的前核心域,而不会破坏任何对HBV复制和HBeAg分泌至关重要的顺式元件。为了消除HBcAg的混杂信号,已开发出一种化学发光ELISA分析(CLIA),以HA抗体作为捕获抗体,并以HBeAb作为检测抗体来检测带有HA标签的HBeAg。基于微型HepBHAe82细胞的检测系统显示高水平的cccDNA依赖性HA-HBeAg产生和高背景的低特异性读出信号。我们还建立了表达转基因依赖性HA-HBeAg的HepHA-HBe4细胞系,作为鉴定HBeAg抑制剂的反向筛选。 HepBHAe82系统适合抗病毒HTS的发展,可用于鉴定调节cccDNA代谢和转录的宿主因子。

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