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Sensitive ADAR editing reporter in cancer cells enables high-throughput screening of small molecule libraries

机译:癌细胞中灵敏的ADAR编辑报告基因可实现小分子文库的高通量筛选

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摘要

Adenosine to inosine editing is common in the human transcriptome and changes of this essential activity is associated with disease. Children with ADAR1 mutations develop fatal Aicardi-Goutières syndrome characterized by aberrant interferon expression. In contrast, ADAR1 overexpression is associated with increased malignancy of breast, lung and liver cancer. ADAR1 silencing in breast cancer cells leads to increased apoptosis, suggesting an anti-apoptotic function that promotes cancer progression. Yet, suitable high-throughput editing assays are needed to efficiently screen chemical libraries for modifiers of ADAR1 activity. We describe the development of a bioluminescent reporter system that facilitates rapid and accurate determination of endogenous editing activity. The system is based on the highly sensitive and quantitative Nanoluciferase that is conditionally expressed upon reporter-transcript editing. Stably introduced into cancer cell lines, the system reports on elevated endogenous ADAR1 editing activity induced by interferon as well as knockdown of ADAR1 and ADAR2. In a single-well setup we used the reporter in HeLa cells to screen a small molecule library of 33 000 compounds. This yielded a primary hit rate of 0.9% at 70% inhibition of editing. Thus, we provide a key tool for high-throughput identification of modifiers of A-to-I editing activity in cancer cells.
机译:腺苷到肌苷的编辑在人类转录组中很常见,这种基本活性的改变与疾病有关。具有ADAR1突变的儿童会出现致命的Aicardi-Goutières综合征,其特征在于干扰素的异常表达。相反,ADAR1过表达与乳腺癌,肺癌和肝癌的恶性程度增高有关。乳腺癌细胞中的ADAR1沉默导致凋亡增加,表明抗凋亡功能促进了癌症的进展。然而,需要合适的高通量编辑测定法来有效地筛选化学文库中的ADAR1活性修饰剂。我们描述了生物发光报告系统的发展,该系统有助于快速准确地确定内源编辑活动。该系统基于高度敏感和定量的纳米荧光素酶,该荧光素酶在编辑记者笔录时有条件表达。该系统稳定地引入癌细胞系,报告了干扰素诱导的内源性ADAR1编辑活性升高以及ADAR1和ADAR2的敲低。在单孔设置中,我们在HeLa细胞中使用了报告基因,筛选了包含33000种化合物的小分子文库。在编辑抑制为70%的情况下,原始命中率为0.9%。因此,我们提供了关键工具,可高通量鉴定癌细胞中A至I编辑活性修饰因子。

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