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Sequence-Specific Biosensors Report Drug-Induced Changes in Epigenetic Silencing in Living Cells

机译:特定序列的生物传感器报告了药物诱导的活细胞表观遗传沉默的变化

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Treatment with demethylating drugs can induce demethylation and reactivation of abnormally silenced tumor suppressor genes in cancer cells, but it can also induce potentially deleterious loss of methylation of repetitive elements. To enable the observation of unwanted drug effects related to loss of methylation of repetitive DNA, we have developed a novel biosensor capable of reporting changes in DNA accessibility via luminescence, in living cells. The biosensor design comprises two independent modules, each with a polydactyl zinc finger domain fused to a half intein and to a split-luciferase domain that can be joined by conditional protein splicing after binding to adjacent DNA targets. We show that an artificial zinc finger design specifically targeting DNA sequences near the promoter region of the L1PA2 subfamily of Line-1 retroelements is able to generate luminescent signals, reporting loss of epigenetic silencing and increased DNA accessibility of retroelements in human cells treated with the demethylating drugs decitabine or 5-azacytidine.
机译:用去甲基化药物治疗可以诱导癌细胞中异常沉默的抑癌基因的去甲基化和重新激活,但是它也可能引起重复元素甲基化的潜在有害损失。为了能够观察到与重复DNA甲基化损失有关的有害药物作用,我们开发了一种新型生物传感器,能够通过活细胞报告通过发光的DNA可及性的变化。生物传感器的设计包括两个独立的模块,每个模块都具有一个聚半乳糖锌指结构域,该结构域与一个半蛋白和一个分裂荧光素酶结构域融合,在与相邻的DNA靶点结合后可以通过条件蛋白剪接而连接在一起。我们表明,专门针对Line-1逆转录因子L1PA2亚家族的启动子区域附近的DNA序列的人工锌指设计能够产生发光信号,报告表观遗传沉默的损失和经脱甲基处理的人类细胞中逆转录因子的DNA可及性增加药物地西他滨或5-氮杂胞苷。

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